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簡介:蘇州大學(xué)本科生畢業(yè)設(shè)計(論文)1THEMENTALSTATEREQUIREMENTFORACCOMPLICELIABILITYINAMERICANCRIMINALLAWDUETOTHEINCONSISTENCYBETWEENTHEPLAINLANGUAGEOFSTATESACCOMPLICELIABILITYLEGISLATIONANDITSRESPECTIVEINTERPRETATIONINTHESTATECOURTS,MANYSTATESACCOMPLICELAWSPRESENTACONFUSEDPICTUREINTERMSOFTHELAWSSTANCEONACCOMPLICELIABILITYNOASPECTOFTHISLAWISMORECOMPLEXTHANTHATRELATINGTOTHEMENTALSTATEREQUIREMENTFORACCOMPLICELIABILITYNEVERTHELESS,IFONEENGAGESINACURSORYEXAMINATIONOFTHELEGALLITERATURE,CASELAW,ANDSTATELEGISLATIONCONCERNINGTHEMENTALSTATEREQUIREMENTFORACCOMPLICELIABILITY,ESSENTIALLYTHREEAPPROACHESSURFACETHESEAPPROACHESDIFFERINTHEDEGREETOWHICHTHEYHOLDANINDIVIDUALCULPABLEFORTHECONDUCTOFANOTHERFIRST,THEREISTHEPERSPECTIVEWHICHISPARTICULARLYPOPULARINTHEACADEMICCOMMUNITYTHATFAVORSAVERYLIMITED,NARROWAPPROACHWHEREBYACCOMPLICELIABILITYISDEPENDENTUPONAFINDINGTHATANACCUSEDS“PURPOSEWASTOENCOURAGEORASSISTANOTHERINTHECOMMISSIONOFACRIME“MEANWHILE,ASECONDPERSPECTIVEWHICHTHEMODELPENALCODEFOLLOWSTOSOMEEXTENT2TOLERATESAMOREEXPANSIVEAPPROACHWHEREBYANACCOMPLICESLIABILITYTURNSONWHETHERTHEACCOMPLICEHARBOREDTHEMENTALSTATEREQUIREDOFTHESUBSTANTIVECRIMEALLEGEDLYAIDEDORABETTEDTHEFIRSTAPPROACH,ASSERTSTHATANINDIVIDUALSHOULDONLYBELIABLEFORTHEACTSOFAPRINCIPALIFTHATINDIVIDUALACTEDWITHTHESPECIFICINTENTTOPROMOTEORASSISTTHEPRINCIPALSCOMMISSIONOFTHECRIMETHISTHEORYHOLDSTHATAMENTALSTATEOFKNOWLEDGEORRECKLESSNESSONTHEPARTOFANALLEGEDACCOMPLICEISINSUFFICIENTTOHOLDTHEALLEGEDACCOMPLICECULPABLEJURISDICTIONSFOLLOWINGTHISAPPROACHWILLONLYHOLDANALLEGEDACCOMPLICELIABLEFORTHECRIMESTHATTHEALLEGEDACCOMPLICEINTENDEDAPERPETRATORCOMMITALSO,IFTHEPERPETRATORCOMMITSASECONDARYCRIMEINPURSUANCEOFTHEINTENDEDCRIME,THEACCOMPLICEISNOTLIABLEFORTHESECONDARYCRIMEUNLESSTHEACCOMPLICEINTENDEDTOPROMOTEORFACILITATETHISOFFENSEASWELLSOLONGASTHEALLEGEDACCOMPLICEINTENDEDTOSOMEHOWASSISTORENCOURAGETHEPRINCIPALSCRIMINALITY,THEACCOMPLICEISLIABLEEVENIFTHESUBSTANTIVECRIMEONLYREQUIRESRECKLESSNESSORNEGLIGENCEONTHEPARTOFTHEPRINCIPALTHUS,IFALOANSHISGUNTOBKNOWINGBINTENDSTOUSEITTOSHOOTHISNEIGHBORSBARKINGDOG,AWOULDNOTBEANACCOMPLICETOBSACTUNLESSHEHIMSELFINTENDSTHATBSNEIGHBORSDOGBESHOTLIKEWISE,IFXGIVESTHEKEYSOFHERCARTOY,WHOISINTOXICATED,KNOWINGY蘇州大學(xué)本科生畢業(yè)設(shè)計(論文)3THATDONOTDISTINGUISHBETWEENCONDUCTANDRESULTORIENTEDCRIMESWILLHOLDANINDIVIDUALLIABLEFORTHECONDUCTOFANOTHERASLONGASTHEINDIVIDUALPOSSESSEDTHESTATUTORILYPRESCRIBEDMENTALSTATEFORTHESUBSTANTIVECRIMETHETHIRDAPPROACH,WHICHTHISARTICLEREFERSTOASCATEGORY1I1,ISTHEMOSTEXPANSIVEOFTHEAPPROACHESSTATESFOLLOWINGTHISAPPROACHWILLHOLDANACTORLIABLEFORALLTHENATURALANDPROBABLECONSEQUENCESOFTHEINTENDEDCRIMEALTHOUGHSOMEJURISDICTIONSMAYNOTUSETHISEXACTLANGUAGE,THESESTATESREJECTTHENECESSITYOFPROVINGTHEACCOMPLICEHADEITHERTHESPECIFICINTENTREQUIREDBYTHECATEGORYIAPPROACHORTHESTATUTORILYPRESCRIBEDMENTALSTATEMANDATEDBYTHECATEGORYIIAPPROACHTHEREFORE,IFTHEPRINCIPALCOMMITTEDASECONDARYCRIMEINTHECOURSEOFCARRYINGOUTTHETARGETCRIMEEVENIFTHEACCOMPLICEHADNOWAYOFKNOWINGORANTICIPATINGTHATANINCIDENTALORSECONDARYCRIMEWOULDOCCUR,ACOURTWILLNONETHELESSCONVICTTHEACCOMPLICEOFTHEINCIDENTALCRIMEIFTHECOURTDETERMINESITTOBEANATURALANDPROBABLECONSEQUENCEOFTHEINTENDEDCRIMENOWTHEHYPOTHETICALABOVEBECOMEREALLYINTERESTINGASSUMEAFTERBSHOOTSHISNEIGHBORSBARKINGDOGWITHASGUN,THENEIGHBOR,C,BECOMESANGRYANDENGAGESBINAPHYSICALALTERCATIONDURINGWHICHBSHOOTSANDINJURESCIFWEAGREETHEALTERCATIONANDRESULTANTINJURYSUFFEREDBYCARENATURALANDPROBABLECONSEQUENCESOFASARMINGBWHILEKNOWINGOFBSINTENTIONS,AWOULDBELIABLEASANACCOMPLICEFORBSBATTERYOFCINTHEEXAMPLEWHEREXGIVESHERKEYSTOTHEINTOXICATEDYWHICHITSELFISAVIOLATIONOFTHESTATESMOTORVEHICLECODE,NOWASSUMEYNOTONLYRECKLESSLYBECOMESINVOLVEDINAFATALVEHICLECRASHBUTALSOTHATYCOLLIDESWITHAGASOLINETRUCK,WHICHEXPLODESANDCAUSESANEARBYBUILDINGTOCATCHFIREIFWEAGREETHATWHENXGIVESTHEINTOXICATEDYTHEKEYSTOHERCARSHESHOULDBEHELDACCOUNTABLEFORALLNATURALANDPROBABLECONSEQUENCES,ITISARGUABLETHATXISLIABLENOTONLYFORRECKLESSHOMICIDEIFYISINVOLVEDINAFATALCOLLISIONWHILEDRIVINGXSCARBUTALSOFORCRIMINALDAMAGETOPROPERTYORPERHAPSARSONOR,WORSEYET,IFAFIREFIGHTERORBUILDINGOCCUPANTDIESINTHEFIRE,ITMIGHTEVENBEASSERTEDTHATXISLIABLEFORMANSLAUGHTERMEMBERSOFTHEACADEMICCOMMUNITY,INCLUDINGPROFESSORSWAYNELAFAVE,JOSHUADRESSIER,ANDAUDREYROGERS,HAVESTRONGLYCRITICIZEDTHECATEGORYIIIAPPROACHBECAUSEITHOLDSANINDIVIDUALTOTHESAMECULPABILITYASAPRINCIPALFORACRIMETHECOMMISSIONOFWHICHTHEACCOMPLICEHADNOKNOWLEDGEOFORINTENTTO
下載積分: 10 賞幣
上傳時間:2024-03-16
頁數(shù): 10
大小: 0.07(MB)
子文件數(shù):
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簡介:ELECTROLYTICTREATMENTOFBEERBREWERYWASTEWATERKRISHNANVIJAYARAGHAVAN,DESAAHMAD,ANDRENNYLESADEPARTMENTOFBIOLOGICALCOD,64MG/LBIOCHEMICALOXYGENDEMANDBOD5,30MG/LTOTALORGANICCARBONTOC,40MG/LRESIDUALTOTALCHLORINE,162MG/LTURBIDITY,20NTUNEPHELOMETRICTURBIDITYUNITSAMMONIANITROGENNH3N,BELOWTHEDETECTABLELIMITANDTEMPERATURE,40°CTHEENERGYREQUIREMENTSWEREDETERMINEDTOBE56AND39W/L,WHILETREATING24LOFBEERBREWERYWASTEWATERWITHSODIUMCHLORIDECONCENTRATIONSOF2AND3ANDATACURRENTDENSITYOF745MA/CM2THEOBSERVEDENERGYDIFFERENCEWASDUETOTHEIMPROVEDCONDUCTIVITYATHIGHSODIUMCHLORIDECONTENTSTHECOSTINCURREDINTREATING1M3OFBEERBREWERYWASTEWATERWASDETERMINEDTOBERM8,WHENTHEELECTROLYTICREACTORWASOPERATEDATACURRENTDENSITYOF745MA/CM2ANDTHESODIUMCHLORIDECONTENTWAS31INTRODUCTIONBECAUSETHECONVENTIONALMETHODOFBEERBREWERYWASTEWATERTREATMENTISBASEDONBIOLOGICALMETHODS,ITNATURALLYLEADSTOLONGERHYDRAULICRETENTIONTIMEANDISSUBJECTTOFAILURESDUETOSHOCKLOADINGANDIMPROPERMAINTENANCEMOREOVER,THEBIODEGRADATIONOFFLAVONOIDSPRESENTINTHEBREWERYREQUIRESSPECIFICBACTERIALSTRAINSTOACHIEVEHIGHERREMOVALEFFICIENCIESTHEELECTROCHEMICALMETHODOFTREATMENTISWELLSUITEDFORDEGRADINGBIOREFRACTORYORGANICPOLLUTANTS,BECAUSEITISPOSSIBLETOACHIEVEPARTIALORCOMPLETEDECOMPOSITIONOFTHEORGANICSUBSTANCETHEELECTROCHEMICALMETHODSOFTREATMENTAREFAVORED,BECAUSETHEYARENEITHERSUBJECTTOFAILURESDUETOVARIATIONINWASTEWATERSTRENGTHNORDUETOTHEPRESENCEOFTOXICSUBSTANCESANDREQUIRELESSHYDRAULICRETENTIONTIMETHEINSITUGENERATIONOFHYPOCHLOROUSACIDINWASTEWATERTREATMENTISADVANTAGEOUS,BECAUSEAQUEOUSSOLUTIONSOFSODIUMHYPOCHLORITEAREMUCHSAFERTOUSETHANCHLORINEGASINTHECASEOFCHLORINEORCHLORINECONTAININGCHEMICALS,THESTORAGEANDTRANSPORTATIONCOSTSAREGREAT,BECAUSEOFTHEREQUIREMENTOFHAVINGSAFETYEQUIPMENTPRESENT,TOTACKLEANYMISHAPTHEELECTROCHEMICALMETHODOFWASTETREATMENTCAMEINTOEXISTENCEWHENITWASFIRSTUSEDTOTREATSEWAGEGENERATEDONBOARDBYSHIPS,BYMIXINGSEWAGEANDSEAWATERINA31RATIOANDSUBJECTINGTHEMTOELECTROLYSIS1THEREAFTER,THEAPPLICATIONOFELECTROCHEMICALTREATMENTWASWIDELYRECEIVEDINTREATINGINDUSTRIALWASTEWATERSTHATARERICHINREFRACTORYORGANICSANDCHLORIDECONTENTELECTROCHEMICALOXIDATIONOFEFFLUENTSFROMTEXTILES,26OLIVEMILLS,7,8TANNERIES,911DISTILLERIES,12ANDSYNTANFACILITIES13HADBEENSUCCESSFULLYTREATEDTHEELECTROCHEMICALOXIDATIONOFSWINEMANURERESULTEDINTHESIMULTANEOUSREMOVALOFCHEMICALOXYGENDEMANDCODANDAMMONIANITROGENNH3N14THEELECTROCHEMICALOXIDATIONOFPHENOLANDCHLORINATEDPHENOLWASSTUDIEDUSINGPOROUSCARBONFELT,15BORONDOPEDDIAMOND,16RUTHENIUMMIXEDOXIDE,17DSA,ANDGRAPHITEFELTASELECTRODEMATERIAL18TOTHEBESTOFOURKNOWLEDGE,THEREARENOPUBLISHEDSCIENTIFICREPORTSTHATAREBASEDONINSITUHYPOCHLOROUSOXIDATIONFORBEERBREWERYWASTEWATERHENCE,INTHISARTICLE,ELECTROLYTICOXIDATIONBASEDONINSITUHYPOCHLOROUSACIDGENERATIONISBEINGPROPOSEDASAMETHODOFTREATMENTFORBEERBREWERYWASTEWATERTHEHYPOCHLOROUSACIDISGENERATEDUSINGAGRAPHITEANODEANDSTAINLESSSTEELSHEETASACATHODEINANUNDIVIDEDELECTROLYTICREACTORTHEBEERBREWERYWASTEWATERWASOBTAINEDFROMTHECARLSBERGBREWERYMALAYSIABERHAD2MATERIALANDMETHODS21BEERBREWERYWASTEWATERCHARACTERISTICSTHERAWBEERBREWERYWASTEWATERWASCOLLECTEDFROMTHECARLSBERGBREWERYMALAYSIABERHAD,ANDTHECHARACTERISTICSOFTHEWASTEWATERAREPRESENTEDINTABLE1THEBREWERYWASTEWATERWASPRESERVEDATATEMPERATUREOF4°C,BUTABOVETHEFREEZINGPOINT,TOPREVENTTHEWASTEWATERFROMUNDERGOINGBIODEGRADATIONDUETOMICROBIALACTION19THEPRESERVEDSAMPLEWASUTILIZEDWITHIN25DTHEREAFTER,FRESHSAMPLESWERECOLLECTEDFORFURTHEREXPERIMENTALPURPOSES22ELECTROLYTICREACTORSETUPTHEELECTROLYTICREACTORHADACIRCULARSHAPEWITHTHEFOLLOWINGDIMENSIONSANINNERDIAMETEROF300MMANDAHEIGHTOF450MM,WITHALIQUIDVOLUMEOF24L,ASSHOWNINFIGURE1AGRAPHITEROD270MMINLENGTHAND60MMINDIAMETERWASUSEDASANANODEPERFORATEDSTAINLESSSTEELSHEETS270MMLONG,50MMWIDE,ANDWITHATHICKNESSOF08MMWEREUSEDASCATHODESTWOSETSOFANODESANDCATHODESWEREUSEDDURINGTHEELECTROLYSISEACHSETOFGRAPHITETOWHOMCORRESPONDENCESHOULDBEADDRESSEDTEL0060389466416FAX0060389466425EMAILADDRESSVIJAYENGUPMEDUMYTABLE1CHARACTERISTICSOFRAWBEERBREWERYWASTEWATERPARAMETERVALUEPH8502CONCENTRATIONOFCOD2470MG/LCONCENTRATIONOFBOD1457MG/LCONCENTRATIONOFTOC820MG/LCONCENTRATIONOFTKN97MG/LCONCENTRATIONOFNH3N62MG/LCONCENTRATIONOFPHOSPHATE56MG/LCONCENTRATIONOFSUSPENDEDSOLIDS350MG/L6854INDENGCHEMRES2006,45,68546859101021/IE0604371CCC3350?2006AMERICANCHEMICALSOCIETYPUBLISHEDONWEB08/23/2006CURRENTDENSITYOF372AND745MA/CM2ANDFORSODIUMCHLORIDECONCENTRATIONSOF1,2,AND3FOREXAMPLE,ATACURRENTDENSITYOF372MA/CM2FORSODIUMCHLORIDECONTENTSOF1,2,AND3,ATTHEENDOF30MINOFELECTROLYSIS,THERESIDUALCODVALUESWERE1405,915,AND730MG/L,RESPECTIVELYINTHECASEOFELECTROLYSISATACURRENTDENSITY745MA/CM2FORTHEAFOREMENTIONEDSODIUMCHLORIDECONTENTSANDELECTROLYSISPERIOD,THERESIDUALCODVALUESWERE1130,470,AND360MG/L,RESPECTIVELYFURTHERINCREASESINTHEELECTROLYSISPERIODSHOWEDADECREASEINRESIDUALCODCONCENTRATION,IRRESPECTIVEOFTHECURRENTDENSITIESINTHECASEWHERE3SODIUMCHLORIDEWASUSEDASANELECTROLYTEATACURRENTDENSITYOF372AND745MA/CM2,FORANELECTROLYSISPERIODOF50MIN,RESIDUALCODCONCENTRATIONSOF170AND64MG/L,RESPECTIVELY,RESULTEDATHIGHERCURRENTDENSITIES,MOREHYPOCHLOROUSACIDWASGENERATED,LEADINGTOTHEOXIDATIONOFORGANICPRESENTINTHEWASTEWATERINSHORTERPERIODTHERESIDUALBOD5CONCENTRATIONVERSUSTHEELECTROLYSISPERIODISSHOWNINFIGURE4FORCURRENTDENSITIESOF372AND745MA/CM2ATSODIUMCHLORIDECONCENTRATIONSOF1,2,AND3,RESPECTIVELYASSHOWNINFIGURE4,WITHTHEINCREASEINCURRENTDENSITYRESULTEDINLOWERRESIDUALBOD5CONCENTRATIONFOREXAMPLE,ATTHEENDOF50MINOFELECTROLYSISWITH3SODIUMCHLORIDEASANELECTROLYTEFORCURRENTDENSITIESOF372AND745MA/CM2,THERESIDUALBODWASDETERMINEDTOBE90AND30MG/L,RESPECTIVELYTHETOCREMOVALDURINGTHEELECTROLYSISPERIODISSHOWNINFIGURE5FORCURRENTDENSITIESOF372AND745MA/CM2ATASODIUMCHLORIDECONCENTRATIONOF1,2,AND3,RESPECTIVELYASTHEELECTROLYSISPERIODINCREASED,THETOCALSODECREASED,ANDAHIGHERREMOVALINTOCWASOBSERVEDWITHTHEINCREASEINCURRENTDENSITYFOREXAMPLE,ATTHEENDOF50MINOFELECTROLYSISWITH3SODIUMCHLORIDEASANELECTROLYTEFORCURRENTDENSITIESOF372AND745MA/CM2,THERESIDUALTOCWASDETERMINEDTOBE94AND40MG/L,RESPECTIVELYFORTHEAFOREMENTIONEDELECTROLYSISPERIODANDSODIUMCHLORIDECONTENTATACURRENTDENSITY372MA/CM2,THECOD/TOCRATIODECREASEDFROM30TO18INTHECASEWHERETHECURRENTDENSITYWAS745MA/CM2,THECOD/TOCRATIODECREASEDFROM30TO16,RESPECTIVELYTHEDECREASEINCOD/TOCRATIOSHOWSTHATTHECARBONWASDESTROYED,BECAUSEOFTHEOXIDIZINGACTIONOFTHEGENERATEDHYPOCHLOROUSACIDINTHECASEOFPHENOLFORMALDEHYDERESINWASTEWATER,TREATMENTBASEDONHYPOCHLORUSOXIDATIONRESULTEDINADECREASEINTHECOD/TOCRATIO,FROM43TO1322ELECTROCHEMICALOXIDATIONOFTHEEFFLUENTSORIGINATEDFROMFLAVORMANUFACTURINGFACILITYSHOWEDADECREASEINCOD/TOCRATIOFROM33TO1723THETOTALRESIDUALCHLORINECONCENTRATIONDURINGTHEELECTROLYSISPERIODISSHOWNINFIGURE6,FORANINITIALCODCONCENTRATIONOF2470MG/LATVARYINGSODIUMCHLORIDECONTENT1,2,AND3ANDATACURRENTDENSITYOF372AND745MA/CM2FOREXAMPLE,ATACURRENTDENSITYOF372MA/CM2FORSODIUMCHLORIDECONTENTSOF1,2,AND3,ATTHEENDOF30FIGURE3RESIDUALCHEMICALOXYGENDEMANDCODCONCENTRATIONVERSUSELECTROLYSISPERIODFIGURE4RESIDUALBIOCHEMICALOXYGENDEMANDBOD5CONCENTRATIONVERSUSELECTROLYSISPERIODFIGURE5RESIDUALTOTALORGANICCARBONTOCCONCENTRATIONVERSUSELECTROLYSISPERIODFIGURE6RESIDUALTOTALCHLORINECONCENTRATIONVERSUSELECTROLYSISPERIOD6856INDENGCHEMRES,VOL45,NO20,2006
下載積分: 10 賞幣
上傳時間:2024-03-13
頁數(shù): 6
大?。?0.14(MB)
子文件數(shù):
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簡介:???????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????
下載積分: 10 賞幣
上傳時間:2024-03-13
頁數(shù): 14
大?。?0.39(MB)
子文件數(shù):
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簡介:COALBEDMETHANECOMPLETIONSAWORLDVIEWIANPALMERHIGGSPALMERTECHNOLOGIES,10140ARROYOCRESTDRIVENW,ALBUQUERQUE,NM,87114,USAABSTRACTARTICLEINFOARTICLEHISTORYRECEIVED1JULY2009RECEIVEDINREVISEDFORM23DECEMBER2009ACCEPTED24DECEMBER2009AVAILABLEONLINE7JANUARY2010KEYWORDSCOALBEDMETHANEPERMEABILITYWELLCOMPLETIONSSTIMULATIONPRODUCTIONCBMWELLSARECHEAPBECAUSETHEYAREUSUALLYSHALLOWDEEPERWELLSTENDTOHAVELOWERCOALPERMEABILITYANDPRODUCTIVITYLOWPERMEABILITYISTHEWEAKPOINTACHILLESHEELFORCBMVENTURES,ANDSUCCESSWILLENTAILFINDINGREGIONSOFENHANCEDPERMEABILITY,UTILIZINGHORIZONTALWELLSWITHTHEOPTIONOFFRACTURINGTHESEWELLS,ANDPOSSIBLYIN“CREATING”PERMEABILITYBYNEWPARADIGMMETHODSSUCHASSHEARSTIMULATIONANDBRANCHFRACTURINGTHISPAPERDISCUSSESTHEROLEOFPERMEABILITYINCHOOSINGCBMCOMPLETIONS,ASWELLASEXAMPLESOFTHOSECOMPLETIONSFROMAROUNDTHEWORLDTHEGUIDELINESOFFEREDARENEWANDPRACTICALINCLUDINGPERMBANDSANDADECISIONTREE,ANDSHOULDBENEFITANYCBMCOMPLETIONSTRATEGY?2010ELSEVIERBVALLRIGHTSRESERVED1INTRODUCTIONWELLCOMPLETIONSANDSTIMULATIONSFORCOALBEDMETHANECBMHAVEGENERALLYBEENCHOSENBYTRIALANDERROR,BECAUSETHEREHASNOTBEENMUCHCONSENSUS,UNLIKEWELLSINCONVENTIONALSANDSTONEAGOODEXAMPLEOFTHISISTHEDEVELOPMENTOFCBMWELLCOMPLETIONSANDSTIMULATIONSINAUSTRALIAKUBENK,2006HOWEVER,THISISANEXPENSIVEAPPROACHFURTHER,THEROLEOFPERMEABILITYINCBMSUCCESSANDINCBMCOMPLETIONSHASNOTBEENFULLYAPPRECIATEDPALMER,2008NOW,AFTEROVER30YEARSOFCBMPRODUCTIONINTHEUSA,GENERALPRINCIPLESANDDECISIONTREESHAVEEMERGEDTOGUIDEANOPERATORINCHOOSINGAWELLCOMPLETIONTHISISTHESUBJECTOFTHISPAPERTHEPAPERILLUSTRATESTHECENTRALIMPORTANCEOFPERMEABILITYINTHESUCCESSOFCBMCOMPLETIONSREVIEWSHAVEBEENPUBLISHEDONDIFFERENTCBMCOMPLETIONS,BUTTHESEAREMAINLYFOCUSEDONPARTICULARBASINSORPLAYSHOLDITCH,1990CRAMER,1992PALMERETAL,1993,1995ROBINSONANDHOLDITCH,1999ONEPAPERHASSEARCHEDFORTRENDSINCBMPRODUCTIONACROSSBASINSASAFUNCTIONOFRESERVOIRANDCOMPLETIONPARAMETERSPALMERANDCAMERON,2003ALTHOUGHDIFFERINGINDUSTRYVIEWPOINTSAREREVEALEDINTHISPAPER,THEREISNOTMUCHCONSENSUSGEOLOGICALPREDICTIONSOFPERMEABILITYHAVENOTBEENDISCUSSED,BECAUSETHISISALARGEANDSOMETIMESCONTROVERSIALSUBJECTWHICHISBEYONDTHESCOPEOFTHISPAPERFURTHER,PREDICTIONSBASEDONGEOLOGYAREMOREQUALITATIVETHANQUANTITATIVE,WHEREASTHISPAPERFOCUSESONQUANTITATIVEMEASUREMENTOFPERMEABILITYTHEINTENTIONISNOTTOBERIGOROUS,BECAUSETHATWOULDREQUIREPRESENTINGANANALYSISOF30YEARSOFCBMDATAFROMTHEUSA,ASWELLASDATAFROMOTHERCOUNTRIESWHERECBMISNOWEXPLOITEDINPLACEOFTHIS,THEREADERMAYREFERTOTHEREFERENCESABOVEALLREVIEWARTICLES,ANDPARTICULARLYTHATOFPALMERANDCAMERON2003EFFECTIVESTRESSHASANEFFECTONCOALPERMEABILITYHOWEVER,INTHISPAPERTHEPRINCIPALMESSAGEISTOMEASURETHECOALPERMEABILITYINAPROSPECTIVECBMPLAY,ANDCHOOSETHEWELLCOMPLETIONACCORDINGLYTHEPOTENTIALEFFECTOFSTRESSANDDEPTHONPERMEABILITYISNOTNEEDEDIFONEMEASURESTHEPERMEABILITYAFTERABACKGROUNDOFCBMPRODUCTIONWORLDWIDE,THEPAPERDISCUSSESTHEROLEOFPERMEABILITYINCHOOSINGCBMCOMPLETIONS,ASWELLASEXAMPLESOFTHOSECOMPLETIONSWEDEFINEPERMBANDSASRANGESOFCOALPERMEABILITYINWHICHCERTAINWELLCOMPLETIONTYPESAREPREFERREDATANOTHERLEVEL,THISAPPROACHLEADSTOADECISIONTREEWHICHINCLUDESVARIOUSCOMPLETIONOPTIONSASAFUNCTIONOFTHECOALPERMEABILITYTHISAPPROACHISNEWANDPRACTICAL,ANDSHOULDBENEFITANYCBMCOMPLETIONSTRATEGY2WORLDWIDEBACKGROUNDCOALBEDMETHANECBMHASBECOMEARESOURCEOFGLOBALSIGNIFICANCE,WITHTHEEMERGENCEOFACTIVECBMPLAYSINCANADA,AUSTRALIA,INDIA,ANDCHINA,FOREXAMPLEPALMER,2008ATTHEOTHERENDOFTHESPECTRUM,COUNTRIESLIKEENGLAND,FRANCE,TURKEY,ANDCOLOMBIAHAVEMUCHSMALLERRESOURCES,ANDSOFARHAVENOTBEENABLETOGETACBMINDUSTRYSTARTED,THOUGHTHEYAREACTIVELYTRYINGTHEATTRACTIONISUSUALLYGOODGASCONTENTANDCOALTHICKNESS,BUTTHEROADBLOCKISOFTENPOORPERMEABILITYLESSTHAN1MD,ANDTHISISCRITICALFORPROJECTECONOMICSINTHEUS,BPANDCONOCOPHILLIPSARETWOOFTHEBIGGESTCBMPRODUCERSINTHESANJUANBASINSEEFIG1,WHEREBPHASOVER1500WELLS,WHILECONOCOPHILLIPSHASOVER800PRODUCINGWELLSPALMER,INTERNATIONALJOURNALOFCOALGEOLOGY822010184–195EMAILADDRESSIANHIGGSPALMERCOM01665162/–SEEFRONTMATTER?2010ELSEVIERBVALLRIGHTSRESERVEDDOI101016/JCOAL200912010CONTENTSLISTSAVAILABLEATSCIENCEDIRECTINTERNATIONALJOURNALOFCOALGEOLOGYJOURNALHOMEPAGEWWWELSEVIERCOM/LOCATE/IJCOALGEOTOPRODUCEECONOMICGASFROMLOWPERMCOALSREQUIRESATHREEPRONGEDSTRATEGYPALMER,20081LOCATEASWEETSPOTBYUSINGSTRUCTURALGEOLOGYTOPREDICTWHERETOFINDONE,ORBYDRILLINGALOTOFWELLSUNTILYOUENCOUNTERONE,2DRILLHORIZONTALWELLS,AND3DEPLOYNOVELSTIMULATIONTECHNIQUESANEXAMPLEOFTHEFIRSTSTRATEGYISTHEAUSTRALIANCBMPLAYONTHEUNDULLANOSE,WHICHISTHE“FAIRWAY”O(jiān)FTHESURATBASIN,WITHPERMEABILITIESUPTO500MDSCOTTETAL,2004THEUNDULLANOSEISASTRUCTURALHIGH,ANDTHECOALMEASURESAREDRAPEDACROSSTHENOSETHISDRAPINGCAUSEDCLEATSANDFRACTURESTODEVELOPDURINGCOALIFICATIONSTRATEGIES2AND3WILLBEDISCUSSEDBELOWANASSIGNMENTOFCBMCOMPLETIONSBASEDONPERMEABILITYISSHOWNINFIG2WEWILLELABORATEMOREONTHISRANKINGSHORTLYBUTFIRST,TOFOLLOWTHISPERMBASEDCOMPLETIONSTRATEGYREQUIRESAFULLPERMEABILITYPICTUREOFTHEPROSPECTIVERESERVOIRTHISMEANSPERFORMINGLOTSOFPERMEABILITYMEASUREMENTSBOTHAREALLY~50MEASUREMENTSDESIRABLEACROSSTHECBMPLAYANDWITHINDIFFERENTSEAMSTHISCANBEEXPENSIVE,BUTISIMPORTANTTOOPTIMIZEWELLCOMPLE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上傳時間:2024-03-13
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簡介:MULTIBODYSYSTDYN201533207–228DOI101007/S1104401494098INTEGRATEDROBUSTCONTROLLERFORVEHICLEPATHFOLLOWINGBEHROOZMASHADIPOUYANAHMADIZADEHMAJIDMAJIDIMEHDIMAHMOODIKALEYBARRECEIVED8MARCH2013/ACCEPTED8JANUARY2014/PUBLISHEDONLINE5FEBRUARY2014?SPRINGERSCIENCEBUSINESSMEDIADORDRECHT2014ABSTRACTTHEDESIGNOFANINTEGRATED4WSDYCCONTROLSYSTEMTOGUIDEAVEHICLEONADESIREDPATHISPRESENTEDTHELATERALDYNAMICSOFTHEPATHFOLLOWERVEHICLEISFORMULATEDBYCONSIDERINGIMPORTANTPARAMETERSTOREDUCETHEEFFECTOFUNCERTAINTIESINVEHICLEPARAMETERS,AROBUSTCONTROLLERISDESIGNEDBASEDONAΜSYNTHESISAPPROACHNUMERICALSIMULATIONSAREPERFORMEDUSINGANONLINEARVEHICLEMODELINMATLABENVIRONMENTINORDERTOINVESTIGATETHEEFFECTIVENESSOFTHEDESIGNEDCONTROLLERRESULTSOFSIMULATIONSSHOWTHATTHECONTROLLERHASAPROFOUNDABILITYTOMAKINGTHEVEHICLETRACKTHEDESIREDPATHINTHEPRESENCEOFUNCERTAINTIESKEYWORDSVEHICLEPATHFOLLOWING4WSDYCROBUSTCONTROLΜSYNTHESISNOTATIONALPHABETICASTATESPACEMATRIXBINPUTMATRIXCOUTPUTMATRIXCSETOFCOMPLEXNUMBERSCΑFCΑRCORNERINGSTIFFNESSOFFRONTREARTIRESDOUTPUTFROMPERTURBATIONBLOCKDCONSTANTSCALINGMATRIXEDISTURBANCEMATRIXCGCENTEROFGRAVITYBMASHADIPAHMADIZADEHBMMAJIDISCHOOLOFAUTOMOTIVEENGINEERING,IRANUNIVERSITYOFSCIENCEANDTECHNOLOGY,TEHRAN,IRANEMAILP_AHMADIZADEHIUSTACIRMMAJIDIEMAILM_MAJIDIIUSTACIRMMAHMOODIKALEYBARSCHOOLOFMECHANICALENGINEERING,IRANUNIVERSITYOFSCIENCEANDTECHNOLOGY,TEHRAN,IRANEMAILM_MAHMOODI_KIUSTACIRINTEGRATEDROBUSTCONTROLLERFORVEHICLEPATHFOLLOWING2091INTRODUCTIONWITHTHEPOPULATIONGROWTH,THENUMBERSOFVEHICLESANDPASSENGERSHAVEBEENINCREASEDINTHESTREETSANDHIGHWAYSLEADINGTOMORETRAFFICPROBLEMSSEVERALMEASURESSUCHASBUILDINGNEWHIGHWAYSANDROADSHAVEBEENCONSIDEREDINORDERTOREDUCETRAFFICCONGESTIONANDINCREASINGSAFETY,BUTSUCHMEASURESDONOTALWAYSSUFFICEBECAUSEOFENVIRONMENTALANDCOSTCONSTRAINTSONEWAYTOIMPROVETHESAFETYOFROADSISTOREMOVETHEHUMANELEMENTERRORSDURINGDRIVINGTHISCANLEADTOAUTOMATICDRIVINGTECHNOLOGY,WHICHISTHEFUNDAMENTALOFINTELLIGENTTRANSPORTATIONSYSTEMSITSANDISBEINGSTUDIEDBYMANYRESEARCHERSDURINGRECENTYEARSTHEPRIMARYTASKOFAUTOMATICDRIVINGISTOMAKEANAUTONOMOUSVEHICLETOFOLLOWAREFERENCEPATHAUTOMATICALLYDURINGTHISPATHFOLLOWING,THEREFORE,SEVERALISSUESSHOULDBECONSIDEREDTOHAVEANACCEPTABLEPATHCONTROLVEHICLECONTROLLERSTHATMEETTHESEREQUIREMENTSARECALLEDPATHFOLLOWERSTHEGOALOFAPATHFOLLOWINGCONTROLLERISTOMINIMIZETHELATERALDISTANCEBETWEENTHEVEHICLEANDADEFINEDPATH,TOMINIMIZETHEDIFFERENCEINTHEVEHICLEANDTHEPATHHEADINGSANDTOLIMITTHECONTROLINPUTTOSMOOTHENTHEMOTIONSWHILEMAINTAININGTHESTABILITYSEVERALSTUDIESHAVEBEENCARRIEDOUTREGARDINGTHEPATHFOLLOWINGPROBLEMELHAJJAJIETAL1FOCUSEDONTHEDESIGNOFASTABILIZINGFUZZYCONTROLLERFORTHEPATHFOLLOWINGPROBLEMOFVEHICLESUSINGANONLINEARDYNAMICSMODELTHEVEHICLEMODELISAPPROXIMATEDBYASETOFLINEARMODELSINTERPOLATEDBYFUZZYMEMBERSHIPFUNCTIONS,ANDTHENAMODELBASEDFUZZYCONTROLLERISDEVELOPEDTOSTABILIZETHEMODELTHENTHEOUTCOMEOFTHEPATHFOLLOWINGPROBLEMISPARAMETERIZEDINTERMSOFALINEARMATRIXINEQUALITYLMIPROBLEMTHELMIPROBLEMISSOLVEDBYACONVEXOPTIMIZATIONTECHNIQUETOCOMPLETETHEFUZZYPATHFOLLOWINGCONTROLDESIGNFORVEHICLESCONSOLINIETAL2CONSIDEREDASPECIALPATHFOLLOWINGTASKSOTHATAGIVENFRONTPOINTOFACARLIKEVEHICLE,WHICHISWITHINTHELOOKAHEADRANGEOFASTEREOVISIONSYSTEM,TOFOLLOWAPRESPECIFIEDCARTESIANPATHASOLUTIONTOTHISPATHFOLLOWINGPROBLEMWASPROVIDEDBYAFEEDBACK/FEEDFORWARDCONTROLSTRATEGYWHERETHEFEEDFORWARDWASDETERMINEDBYADYNAMICGENERATORBASEDONEXACTDYNAMICINVERSIONOVERTHENOMINALVEHICLEMODELANDTHEFEEDBACKWASMAINLYISSUEDBYCORRECTINGTERMSPROPORTIONALTOTHETANGENTIALANDNORMALERRORSDETERMINEDWITHRESPECTTOTHEVEHICLE’SIDEALTRAJECTORYBALLUCHIETAL3CONSIDEREDAKINEMATICMODELOFANONHOLONOMICWHEELEDVEHICLETOFOLLOWAPATHTHEYASSUMEDTHATTHECURRENTDISTANCEANDTHEHEADINGANGLEERRORWITHRESPECTTOTHECLOSESTPOINTONTHEREFERENCEPATHCANBEMEASUREDBUTONLYTHESIGNOFTHEPATHCURVATUREISDETECTEDTHEYUSEDAHYBRIDSYSTEMFORMALISMTOMODELTHEPROBLEMBASEDONOPTIMALCONTROLTHEORY,ASTHEFEEDBACKINFORMATIONWASBOTHCONTINUOUSANDDISCRETEHELLSTR?METAL4PROPOSEAPATHTRACKINGALGORITHMCALLEDFOLLOWTHEPAST,INWHICHAHUMANDRIVERDRIVESTHEPATHONCE,WHILETHECOMPUTERRECORDSTHEPOSITION,VELOCITY,ORIENTATION,ANDSTEERINGANGLETHENTHISPIECEOFINFORMATIONISUSEDTOCONTROLTHEVEHICLEEACHTIMEITAUTONOMOUSLYTRAVELSALONGTHEPATHIFTHEVEHICLEGETSOFFTHECOURSE,FOREXAMPLE,ASARESULTOFAVOIDINGANOBSTACLEORBECAUSEOFNOISEINPOSITIONINGSENSORS,THEFOLLOWTHEPASTALGORITHMSTEERSLIKETHEDRIVER,PLUSANADDITIONALANGLE,BASEDONTHEDISTANCETOTHEPATHHEREDIAETAL5PRESENTAMETHODTOANALYZETHESTABILITYOFANAUTONOMOUSVEHICLEPATHFOLLOWINGALGORITHMTAKINGINTOACCOUNTEXPLICITLYTHECOMPUTATIONANDCOMMUNICATIONDELAYSINTHECONTROLLOOPTHESEPUREDELAYSAREPRESENTINAUTONOMOUSVEHICLESDUETOPOSITIONESTIMATIONTHEPROBLEMISANALYZEDBYSOLVINGDIRECTLYTHETRANSCENDENTALCHARACTERISTICEQUATIONTHATAPPEARSWHENTHETIMEDELAYISCONSIDEREDTHEANALYSISISCARRIEDOUTFORSTRAIGHTPATHSANDPATHSOFCONSTANTCURVATURE,ANDTHEMETHODISAPPLIEDTOTHEPUREPURSUITPATHTRACKINGALGORITHMGOODARZIETAL6TREATEDTHISPROBLEMBYTHEAPPLICATIONOFALINEARQUADRATICREGULATORLQRTECHNIQUETHEYUSEDANINTEGRATEDCONTROLLERCOMPRISING
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上傳時間:2024-03-14
頁數(shù): 22
大?。?0.93(MB)
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簡介:SPE136880LATESTTECHNOLOGICALADVANCESINRODPUMPINGALLOWACHIEVINGEFFICIENCIESHIGHERTHANWITHESPSYSTEMSGABORTAKACS,SPE,HADIBELHAJ,SPE,THEPETROLEUMINSTITUTECOPYRIGHT2010,SOCIETYOFPETROLEUMENGINEERSTHISPAPERWASPREPAREDFORPRESENTATIONATTHEABUDHABIINTERNATIONALPETROLEUMEXHIBITIONILLUSTRATIONSMAYNOTBECOPIEDTHEABSTRACTMUSTCONTAINCONSPICUOUSACKNOWLEDGMENTOFSPECOPYRIGHTABSTRACTTWOOFTHEMOSTIMPORTANTARTIFICIALLIFTMETHODSAPPLIEDINOILWELLSARESUCKERRODPUMPINGANDELECTRICALSUBMERSIBLEPUMPINGWITHTHOUSANDSOFINSTALLATIONSALLOVERTHEWORLDTHEIROPERATIONALFEATURESANDAPPLICATIONRANGESAREQUITEDIFFERENTBUTINMANYCASESANYOFTHEMCANBEUSEDINAGIVENWELLTHEFINALSELECTIONOFTHEPROPERMETHODHASTOBEBASEDONTHEIRENERGYEFFICIENCYANDTHEONEREQUIRINGTHELEASTAMOUNTOFSURFACEPOWERINPUTISSELECTEDTHISPAPERPROVIDESTHENECESSARYBACKGROUNDFOREVALUATINGTHEEFFECTIVENESSOFTHETWOLIFTMETHODSINVESTIGATEDANDFORPINPOINTINGTHEREQUIREMENTSOFACHIEVINGMAXIMUMPOWEREFFICIENCYOFARTIFICIALLIFTINGTHEPOWERFLOWINTHEPUMPINGSYSTEMISINVESTIGATEDANDTHESOURCESOFPOWERLOSSESALONGWITHTHEIRUSUALRANGESAREDESCRIBEDTHEOVERALLPOWEREFFICIENCYOFTHESYSTEMISDEFINEDBYASIMPLEFORMULATHATPROVIDESTHENECESSARYINSIGHTINTOTHEMAINCOMPONENTSOFTHEPOWERLOSSESOCCURRINGINDIFFERENTSYSTEMELEMENTSATHOROUGHINVESTIGATIONOFTHEEFFICIENCY????????????????????????????????????????????????????????????????????????????????????????????WERREQUIREMENTASSHOWNINTHEPAPER,THEMOSTIMPORTANTREQUISITEOFACHIEVINGMAXIMUMEFFECTIVENESSISTHEPROPERCHOICEOFTHEPUMPINGMODE,IETHECOMBINATIONOFPLUNGERSIZE,STROKELENGTH,ANDPUMPINGSPEEDTHECALCULATIONOFENERGYLOSSESINTHECOMPONENTSOFTHEESPSYSTEMISDETAILEDANDTHERELATIVEIMPORTANCEOFTHEINDIVIDUALLOSSESISSHOWNSINCETHECOMPONENTSOFTHEESPSYSTEMARECONNECTEDINSERIES,ARELATIVELYSIMPLEFORMULACANBEUSEDTODESCRIBETHEEFFECTOFELECTRICALANDHYDRAULICLOSSESONTHEEFFICIENCYOFTHETOTALSYSTEMTHETERMSOFTHEFINALFORMULAWEREINVESTIGATEDFORTHEIRIMPORTANCEANDFORTHEIRCONTRIBUTIONTOTHEOVERALLEFFECTIVENESSOFTHEESPSYSTEMRESULTSOFTHISINVESTIGATIONPROVIDECRUCIALINFORMATIONONHOWTODESIGNANESPSYSTEMTOPROVIDETHEHIGHESTPOWEREFFICIENCYTHEPRACTICALUSEOFTHEPROPOSEDCALCULATIONMODELSISILLUSTRATEDBYPRESENTINGANEXAMPLECASEWHEREARELATIVELYHIGHLIQUIDRATE1,300BPDFROMTHESAMEWELLISPRODUCEDBYRODPUMPINGANDESPDETAILEDINSTALLATIONDESIGNSRESULTEDINSEVERALDIFFERENTOPERATIONMODESFORBOTHSUCKERRODPUMPINGANDESPTHEPAPERPROVESTHATUSINGTHELATESTTECHNOLOGIESLIKEHIGHSTRENGTHSUCKERRODCONNECTIONS,SUCKERRODPUMPINGCANSUCCESSFULLYCOMPETEWITHESPINSTALLATIONSBYATTAININGHIGHERENERGYEFFICIENCIESINTRODUCTIONWHENPRODUCTIONOFLARGELIQUIDRATESFROMDEEPERWELLSISDESIRED,THEUSESUCKERRODPUMPINGINSTALLATIONSISUSUALLYRULEDOUTANDESPORGASLIFTINGISCONSIDEREDONLYTHEMAINREASONFORTHISATTITUDEISTHEWELLKNOWNLIMITATIONONTHESTRENGTHOFSTEELSUCKERRODSSTEELRODSAREHEAVILYLOADEDBYTHEIROWNWEIGHTALONESOPUMPINGFROMGREATERDEPTHSIMPOSESLOADSANDSTRESSESTHATRODSDONOTTOLERATEANDBREAKTHISSITUATIONISTHEBASICDRIVERFORTHEINTRODUCTIONOFSTRONGERANDSTRONGERRODMATERIALSFORRODPUMPINGTHESTRENGTHOFSUCKERRODSISBESTDEFINEDBYTHEIRFATIGUEENDURANCELIMITBECAUSEMOSTSUCKERRODBREAKSAREFATIGUEFAILURESOCCURRINGATSTRESSESWELLBELOWTHEULTIMATETENSILESTRENGTHOREVENTHEYIELDSTRENGTHOFTHESTEELUSEDMATERIALFATIGUEISAPLASTICTENSILEFAILUREDUETOREPEATEDSTRESSESLIKETHEPULSATINGTENSIONLOADINGOFTHERODSTRINGTYPICALFAILURESSTARTATSOMESTRESSRAISERASURFACEIMPERFECTIONLIKEANICK,ACORROSIONPIT,ETCONTHESURFACEOFTHEROD,ANDSLOWLYPROGRESSATRIGHTANGLESTOTHEDIRECTIONOFTHESTRESS,IEACROSSTHERODMATERIALTHELOADCARRYINGCROSSSECTIONISTHUSPROGRESSIVELYREDUCEDUNTILTHEREMAININGMETALAREAISOVERLOADEDANDBREAKSTHEINDUSTRYWITNESSEDACONTINUOUSTECHNOLOGICALDEVELOPMENTASTHEWOODENHICKORYRODSORIGINALLYUSEDINTHEEARLYPUMPINGWELLSWEREREPLACEDBYSTRONGERANDSTRONGERSTEELRODSAPIGRADEDRODS,BEINGTHESTRONGESTAFEWDECADESAGO,AREBEINGREPLACEDBYSPECIALHIGHSTRENGTHRODMATERIALSLIKENORRIS97,TRICO66,ETCTHELATESTDEVELOPMENTISAPREMIUMRODSPE1368803PRHPPHYDRLIFT??2WHEREPHYDRHYDRAULICPOWERUSEDFORFLUIDLIFTING,HP,PRHPPOLISHEDRODPOWERREQUIREDATTHESURFACE,HPSURFACEMECHANICALEFFICIENCYMECHANICALENERGYLOSSESOCCURRINGINTHEDRIVETRAINCOVERFRICTIONALLOSSESARISINGINTHEPUMPINGUNIT,INTHEGEARBOX,ANDINTHEV????????????????????????????????????????????????????????????????????????????????????????????PMOT,ISALWAYSGREATERTHANTHEPOLISHEDRODPOWER,PRHPITISEASYTODESCRIBETHESELOSSESBYASINGLEMECHANICALEFFICIENCYMOTMECHPPRHP??3WHEREPMOTMECHANICALPOWERREQUIREDATTHEMOTORSHAFT,HPMOTOREFFICIENCYTOREPRESENTALLLOSSESINTHEELECTRICMOTOR,ANOVERALLEFFICIENCYFACTORCANBEUSED,THATALLOWSTHECALCULATIONOFTHEAVERAGEELECTRICPOWERDRAWNFROMTHEPO???????????????????????????????????????????????????????????????????????EMOTMOTPP??4WHEREPEREQUIREDELECTRICALPOWERINPUT,HPMAXIMIZINGSYSTEMEFFICIENCYSINCESYSTEMEFFICIENCYISDEFINEDBYATHREETERMFORMULAEQ1THEINVESTIGATIONOFTHOSEINDIVIDUALTERMSALLOWSONETODRAWIMPORTANTCONCLUSIONSONTHEPOSSIBLEWAYSOFATTAININGMAXIMUMENERGYEFFICIENCIESINRODPUMPINGOPERATIONSAVERAGEVALUESOFTHESURFACEMECHANICALEFFICIENCYAREHIGH,USUALLYOVER90INFAVORABLECONDITIONSIEFORAPROPERLYMAINTAINEDPUMPINGUNITANDGEARBOXTHEREISACONSENSUSINTHETECHNICALLITERATURETHATTHISEFFICIENCYINCREASESASGEARBOXLOADINGAPPROACHESTHERATEDCAPACITYOFTHEUNITASREGARDSMOTOREFFICIENCIES,ELECTRICMOTORSUSEDINPUMPINGSERVICEMAYHAVEFULLLOADEFFICIENCIESCLOSETO90UNDERSTEADYLOADSACTUALVALUES,HOWEVER,BELONGTOLOADRANGESBETWEEN30AND???????????????????????????????????????????????????????????LEAETAL2PRESENTMOTOREFFICIENCIESOF7891FORNEMADMOTORSOF5HP?60HPSIZESASSHOWN,POSSIBLEVALUESOFTHESURFACEMECHANICALEFFICIENCY,?MECH,ANDTHEMOTOREFFICIENCY,?MOT,VARYINQUITENARROWRANGESATTHESAMETIME,THEIRVALUESCANBEMAXIMIZEDIFTHERIGHTSIZEOFGEARBOXANDELECTRICMOTORARESELECTEDAPROPERLYMAINTAINEDPUMPINGUNITWITHAGEARBOXOPERATEDNEARITSTORQUECAPACITYENSURESMECHANICALEFFICIENCIESGREATERTHAN?MECH90APROPERLYSELECTEDELECTRICMOTORCANALSOPROVIDERELATIVELYHIGH?MOTVALUESTHUSTHECOMBINEDEFFICIENCYOFTHEDRIVETRAINANDTHEMOTOR?MECH?MOTCANLIEINTHERANGEOF6788,ASGIVENBYMCCOYETAL3INCONTRASTTOTHEUSUALRANGESOFTHEABOVEEFFICIENCIES,LIFTINGEFFICIENCY,?LIFT,CANVARYINVERYBROADRANGESDEPENDINGONTHEPUMPINGMODEPLUNGERSIZE,STROKELENGTH,ANDPUMPINGSPEEDSELECTEDATTHELOWERENDOFPOSSIBLEVALUES,CONSIDERTHECASEOFAWORNOUTPUMPPRODUCINGAVERYLOWAMOUNTOFLIQUIDACHIEVINGANEGLIGIBLEHYDRAULICPOWER,PHYDR,WHILESTILLCONSUMINGADEFINITEPOWERATTHEPOLISHEDROD,ADDINGUPTOALIFTINGEFFICIENCYVALUEOFALMOSTNILONTHEOTHERHAND,WELLSWITHBIGSIZEPUMPSANDLOWPUMPINGSPEEDSCANREQUIRELITTLEMORETHANTHEHYDRAULICPOWERATTHEPOLISHEDRODUNDERIDEALCONDITIONSFOREXAMPLE,TAKACS4REPORTSLIFTINGEFFICIENCIESBETWEEN94AND38ACCORDINGTOGAULT5CONSIDERABLEIMPROVEMENTSONLIFTINGEFFICIENCIESCANBEREALIZEDBYSELECTINGTHEOPTIMUMPUMPINGMODEIETHECOMBINATIONOFPUMPSIZE,POLISHEDRODSTROKELENGTH,PUMPINGSPEED,ANDRODSTRINGDESIGNINSUMMARY,THEBASICREQUIREMENTFORACHIEVINGHIGHOVERALLSYSTEMEFFICIENCIESISTOFINDTHEMAXIMUMPOSSIBLEVALUEOFTHELIFTINGEFFICIENCYSINCETHISISACCOMPLISHEDBYTHEPROPERSELECTIONOFTHEPUMPINGMODE,THECHOICEOFTHERIGHTCOMBINATIONOFPUMPSIZE,POLISHEDRODSTROKELENGTH,ANDPUMPINGSPEEDISOFPRIMEIMPORTANCEWHENDESIGNINGANEWPUMPINGSYSTEMORIMPROVINGTHEPERFORMANCEOFANEXISTINGINSTALLATION,THISMUSTBETHEPRIMARYGOALOFTHERODPUMPINGSPECIALISTSEFFORTSTHEPUMPINGMODEOFASUCKERRODPUMPINGSYSTEMISDEFINEDASTHECOMBINATIONOFPUMPSIZE,POLISHEDRODSTROKELENGTH,PUMPINGSPEED,ANDRODSTRINGDESIGNTHENUMBEROFAVAILABLECOMBINATIONSOFTHESEPARAMETERSISENORMOUSIFONECONSIDERSTHATAPISTANDARDSCONTAINAMORETHAN10PLUNGERSIZES,BABOUT20STROKELENGTHS,CSIXSUCKERRODSIZES,ANDDPUMPINGSPEEDSCANBEANYWHEREBELOW20SPMFORPRODUCINGAGIVENAMOUNTOFLIQUID,HOWEVER,MOSTOFTHETHEORETICALLYPOSSIBLEPUMPINGMODESTURNOUTTOBEIMPRACTICALORUNECONOMICAL,BUTELIMINATIONOFTHOSESTILLLEAVESA
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上傳時間:2024-03-13
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簡介:NEWLYISOLATEDBACILLUSGIBSONIIS2CAPABLEOFUSINGSUGARBEETPULPFORALKALINEPECTINASEPRODUCTIONEUNHYELEEA,MISUNYUMB,MINHEEJEONGC123DEPARTMENTOFPEDIATRICS,COLLEGEOFMEDICINE,KYUNGHEEUNIVERSITY,SEOUL,REPUBLICOFKOREADEPARTMENTOFPEDIATRICS,ASANMEDICALCENTER,CHILDREN’SHOSPITAL,UNIVERSITYOFULSANCOLLEGEOFMEDICINE,SEOUL,REPUBLICOFKOREADEPARTMENTOFPEDIATRICS,GANGNEUNGASANHOSPITAL,UNIVERSITYOFULSANCOLLEGEOFMEDICINE,REPUBLICOFKOREARECEIVED21MARCH2005ACCEPTED4MAY2005KEYWORDSALKALINEPECTINASE,BACILLUSGIBSONII,PHENOTYPICCHARACTERIZATION,16SRDNA,SOLIDSTATEFERMENTATIONABSTRACTABACILLUSSTRAINCAPABLEOFGROWINGUNDERHIGHLYALKALINECONDITIONSWASISOLATEDFROMASAMPLEOFALKALINESOILTHEISOLATEWASAGRAMPOSITIVE,SPOREFORMING,AEROBIC,ALKALIPHILICBACTERIUMANDWASDESIGNATEDASSTRAINS2GROWTHOFTHESTRAINWASOBSERVEDINTHEPHRANGEOF7–12ANDTEMPERATURERANGEOF4–40?CSEQUENCEANALYSISOFTHE16SRDNAOFTHESTRAINREVEALEDMORETHAN99HOMOLOGYWITHTHESTRAINSOFBACILLUSGIBSONIITHES2STRAINWASCONFIRMEDASBGIBSONIIBYCOMPARINGITSPHYSIOLOGICALANDBIOCHEMICALCHARACTERISTICSWITHTHEBGIBSONIIDSM8722STRAINTHES2STRAINCOULDUSESUGARBEETPULPASTHECARBONSOURCEASWELLASTHEPECTINASEINDUCERTOPRODUCEEXTRACELLULARALKALINEPECTINASEBYSOLIDSTATEFERMENTATIONTHEMAXIMUMPOLYGALACTURONASEYIELDOF3600U/GDRYSUGARBEETPULPWASOBTAINEDAT35?CAFTER48HOFINCUBATIONINTRODUCTIONALKALIPHILICBACILLUSSTRAINSAREOFCONSIDERABLEIMPORTANCEFORBIOTECHNOLOGICALAPPLICATIONS,ESPECIALLYASTHEYARESOURCESOFMANYUSEFULENZYMESHORIKOSHI1999GUPTAETAL2002HOONDALETAL2002NIELSENETAL1995HAVEMADECONSIDERABLEREVISIONSOFTHECLASSIFICATIONOFALKALIPHILICBACILLUSSPECIESACCORDINGTOPHYLOGENETICANDPHENOTYPICCHARACTERIZATIONSNINENEWALKALIPHILICBACILLUSSPECIESWEREPROPOSED,BCLAUSII,BGIBSONII,BHORIKOSHII,BPSEUDOALKALIPHILUS,BPSEUDOFIRMUS,BAGARADHAERENS,BCLARKII,BHALMAPALUSANDBHALODURANS,INADDITIONTOTHEPREVIOUSLYKNOWNSPECIESBALCALOPHILUSANDBCOHNIIOVERTHEYEARSALKALINEPECTINASESHAVEBEENUSEDINMANYINDUSTRIALANDBIOTECHNOLOGICALPROCESSES,SUCHASTEXTILEANDPLANTFIBREPROCESSING,COFFEEANDTEAFERMENTATION,OILEXTRACTION,TREATMENTOFINDUSTRIALWASTEWATERCONTAININGPECTINACIOUSMATERIAL,PURIFICATIONOFPLANTVIRUSES,ANDPAPERMAKINGKASHYAPETAL2001HOONDALETAL2002AVARIETYOFMICROORGANISMSHAVEBEENUSEDFORALKALINEPECTINASEPRODUCTION,ANDMANYOFTHEMAREALKALIPHILICBACILLUSSPPSINGHETAL1999KASHYAPETAL2003KOBAYASHIETAL2003ASFARASWEAREAWARE,NOPAPERSHAVEBEENPUBLISHEDONABGIBSONIISTRAINFORPECTINASEPRODUCTIONINORDERTODECREASETHECOSTOFTHEENZYMEPRODUCTION,THEUSEOFSOLIDSTATEFERMENTATIONANDLOWCOSTCULTUREMEDIUMCANSERVEASANALTERNATIVEINTHISPAPER,WEAREREPORTINGTHEIDENTIFICATIONOFANEWLYISOLATEDBGIBSONIISTRAINDESIGNATEDASS2ANDTHESOLIDSTATEFERMENTATIONOFTHISSTRAINFORALKALINEPECTINASEPRODUCTIONUSINGSUGARBEETPULPMATERIALSANDMETHODSSTRAINISOLATIONTHESAMPLESCOLLECTEDFROMTHEALKALINESOILWEREDILUTEDINSTERILE09NACLSOLUTIONANDTHENPLATEDONTOPECTINAGARPLATESINCLUDING10PECTINSIGMA,05PEPTONE,05YEASTEXTRACT,01K2HPO4,002MGSO4?7H2O,06NACO3NACO3WASSTERILIZEDSEPARATELYINOCULATEDPLATESWEREINCUBATEDFOR3–7DAYSAT30?CINORDERTOOBTAINCOLONIALGROWTHTHEINCUBATEDPLATESWERESTAINEDWITH1CETYLTRIMETHYLAMMONIUMBROMIDETHECOLONIESWITHCLEARZONESFORMEDBYTHEHYDROLYSISOFPECTINWEREEVALUATEDASALKALINEPECTINASEPRODUCERSDEPENDINGONTHEZONEDIAMETERANDCLEARANCEISOLATES2WASSELECTEDASAGOODALKALINEPECTINASEPRODUCERANDUSEDINALLFURTHERINVESTIGATIONSTHESTRAINWASSUBMITTEDTOTHECHINAGENERALMICROBIOLOGICALCULTURECOLLECTIONCENTERUNDERTHENUMBERCGMCC1215WORLDJOURNALOFMICROBIOLOGYBIOTECHNOLOGY2005211483–1486?SPRINGER2005DOI101007/S1127400570258ALKALIPHILICBGIBSONIIDSM8722,BGIBSONIIT32,BGIBSONIIP203,BGIBSONIISAFN015SHOWED995,992,994AND999HOMOLOGYWITHTHEISOLATES2RESPECTIVELYINORDERTOUNDERSTANDTHEPHYLOGENETICPOSITIONOFTHESTRAINS2,WECONSTRUCTEDAPHYLOGENETICTREEBASEDONCOMPARISONOF16SRDNASEQUENCESOFTHEISOLATEANDTHOSEOFREFERENCEBACILLUSSTRAINSFIGURE1THESERESULTSCONFIRMEDTHATTHEISOLATES2ISASTRAINOFBGIBSONIIALKALINEPECTINASEPRODUCTIONPECTINASECOMPRISESAHETEROGENEOUSGROUPOFENZYMESTHATCATALYZETHEBREAKDOWNOFPECTINCONTAININGSUBSTRATESTHEMAJORTYPESOFPECTINASEINCLUDEPGEC32115ANDEC32167,PECTINLYASEEC42210,PLEC4222,PECTINESTERASEEC31111HTTP//WWWCHEMQMWACUK/IUBMB/ENZYME/ACCORDINGTOTHEPRIMARYTESTS,THEBGIBSONIIS2MAINLYPRODUCEPGANDPL,THEPECTINESTERASEWASNOTASSAYEDTHETIMECOURSEOFALKALINEPGPRODUCTIONBYBGIBSONIIS2ATDIFFERENTTEMPERATURESISSHOWNINFIGURE2THEMAXIMUMPGYIELDOF3600U/GDRYSUGARBEETPULPWASOBTAINEDAT35?CAFTER48HOFINCUBATIONTHETIMECOURSEOFPLPRODUCTIONATDIFFERENTTEMPERATURESISSHOWNINFIGURE3HOONDALETAL2002REVIEWEDTHEMICROBIALSOURCESOFALKALINEPECTINASES,THEIRPROPERTIESANDAPPLICATIONSCOMPARINGWITHTHERESULTSPUBLISHEDTABLE1PHENOTYPICPROPERTIESOFTHEISOLATES2ANDREFERENCESTRAINBACILLUSGIBSONIIDSM8722PROPERTYS2BACILLUSGIBSONIIDSM8722AFORMRODRODSPOREGRAMSTAINCATALASENO3TONO2GROWTHAT4?C10?C15?C20?C30?C37?C40?C45?C50?CPH65PH7PH8PH9PH10PH11PH12GROWTHIN2NACL5NACL7NACL9NACL10NACL12NACL15NACLWEAKLYHYDROLYSISOFGELATINESTARCHTWEEN20TWEEN80DEAMINATIONOFPHENYLALANINEARGININEHYDROLASELYSINEHYDROLASEUREASEUTILIZATIONOFCITRATEARESULTSOBTAINEDFROMNIELSENETAL1995FIGURE1THEPHYLOGENETICTREEBASEDON16SRDNASEQUENCEANAL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簡介:HISTORICALEVOLUTIONANDINNOVATIONOFSUPPLYOFRURALPUBLICCULTURALSERVICEINCHINACAONING,ZHANGTAOSCHOOLOFPUBLICADMINISTRATION,SICHUANUNIVERSITY,CHENGDU610065,CHINAABSTRACTBASEDONTHEANALYSISOFMAINBODY,DECISIONMAKINGANDFINANCINGMODECONCERNINGTHESUPPLYOFPUBLICCULTURALSERVICESINRURALAREAS,WEDIVIDEHISTORICALEVOLUTIONOFRURALPUBLICCULTURALSERVICESINCHINAINTOTHREEPERIODSITHEPERIODFROMTHEFOUNDINGOFNEWCHINATOTHEPERIODBEFORE“CULTURALREVOLUTION“IITHEPERIODFROM“CULTURALREVOLUTION“TOTHEPERIODBEFORETHEREFORMANDOPENINGUPIIITHEPERIODAFTERTHEREFORMANDOPENINGUP.WEANALYZETHEDEFECTSINTHESUPPLYOFRURALPUBLICCULTURALSERVICESINCHINAIDIFFERENCEINTHESUPPLYOFPUBLICCULTURALSERVICESBETWEENURBANANDRURALAREAS,CAUSEDBYURBANRURAL“DUAL“STRUCTUREIIINSUFFICIENTSUPPLYOFRURALPUBLICCULTURALSERVICES,ARISINGFROMUNCLEARPROPERTYRIGHTSANDEXECUTIVEPOWEROFGOVERNMENTATALLLEVELSIIISTRUCTURALIMBALANCEINTHESUPPLYOFRURALPUBLICCULTURALSERVICES,CAUSEDBYTOPDOWNSUPPLYDECISIONMAKINGMECHANISMIVSINGLEFINANCINGCHANNELSOFRURALPUBLICCULTURALSERVICES.FROMINPUT,DECISIONMAKING,DEMANDEXPRESSION,F(xiàn)INANCINGANDENDOGENOUSMECHANISMOFSUPPLYOFRURALPUBLICCULTURALSERVICES,WEPUTFORWARDTHERECOMMENDATIONSFORIMPROVINGTHESUPPLYOFPUBLICCULTURALSERVICESINCHINA.KEYWORDSSUPPLYOFRURALPUBLICCULTURALSERVICES,HISTORICALEVOLUTION,RECOMMENDATIONSRECEIVEDAUGUST21,2012ACCEPTEDSEPTEMBER24,2012SUPPORTEDBY“ELEVENTHFIVEYEARPLAN“KEYPROJECTOFSICHUANPHILOSOPHYANDSOCIALSCIENCEIN2010SC10A014.CORRESPONDINGAUTHOR.EMAILCNGOODLUCK0911HOTMAIL.COMRURALPUBLICCULTURALSERVICESREFERTOTHENONPROFITANDNON-COMPETITIVEPUBLICCULTURALPRODUCTSANDSERVICESFORRURALAREAS,F(xiàn)OCUSINGONSOCIALBENEFITS,CORRESPONDINGTOTHEOPERATINGCULTURALSERVICES[1].ASAPARTOFRURALPUBLICGOODS,THESUPPLYMAINLYINCLUDESMAINBODY,DECISIONMAKING,F(xiàn)INANCING,ANDOTHERASPECTS[2].THESPECIFICFORMSARERADIO,TELEVISION,THEATRICALTROUPE,F(xiàn)ILMPROJECTIONTEAM,LIBRARY,CULTURALCENTERS,INTERNET,ANDMANYOTHERPUBLICCULTURALGOODSANDSERVICESRELATEDTOCULTURALTRANSMISSION.HOWEVER,AFFECTEDBYTHELONGTERMURBANRURALSPLITOFSUPPLYSYSTEMOFPUBLICCULTURALSERVICES,THEREAREENORMOUSDIFFERENCESINTHELEVELOFPUBLICCULTURALSERVICESFORRESIDENTSBETWEENURBANANDRURALAREAS,GREATLYHAMPERINGECONOMICANDSOCIALDEVELOPMENTINRURALAREAS.BASEDONALLASPECTSINCLUDEDINTHESUPPLYOFRURALPUBLICCULTURALSERVICES,WEANALYZEANDREFLECTONTHEPROBLEMSINHISTORICALEVOLUTION,ANDPROPOSECOUNTERMEASURESANDRECOMMENDATIONSFORIMPROVINGTHESUPPLYOFRURALPUBLICCULTURE.1THEHISTORICALEVOLUTIONOFSUPPLYOFRURALPUBLICCULTURALSERVICESWITHCHINASECONOMICANDSOCIALDEVELOPMENTANDREFORM,THEEXISTINGSUPPLYSYSTEMOFRURALPUBLICCULTURALSERVICESFINALLYTAKESSHAPE.BYRETROSPECTINGITSEVOLUTIONARYPROCESS,WEDIVIDEHISTORICALEVOLUTIONOFRURALPUBLICCULTURALSERVICESINCHINAINTOTHREEPERIODSITHEPERIODFROMTHEFOUNDINGOFNEWCHINATOTHEPERIODBEFORE“CULTURALREVOLUTION“IITHEPERIODFROM“CULTURALREVOLUTION“TOTHEPERIODBEFORETHEREFORMANDOPENINGUPIIITHEPERIODAFTERTHEREFORMANDOPENINGUP.1.1THEPERIODFROMTHEFOUNDINGOFNEWCHINATOTHEPERIODBEFORE“CULTURALREVOLUTION“1949-1958WITHTHEESTABLISHMENTOFTHEPEOPLESCOMMUNES,THROUGHTHEORGANIZATIONALFORMOF“UNIFICATIONOFTHESTATEANDCOMMUNE“ANDHIGHLYCENTRALIZEDECONOMICMANAGEMENTMODE,THECORRESPONDINGSUPPORTINGSYSTEMOFRURALPUBLICCULTURALSERVICESALSOTOOKSHAPEINTHISPERIOD.DURINGTHEPERIOD,THESUPPLYOFRURALPUBLICCULTURALSERVICESHADTHEFOLLOWINGCHARACTERISTICSIINTERMSOFTHEMAINBODYOFSUPPLY,AFFECTEDBYTHESTATESTRATEGYOFUSINGAGRICULTURETOCOMPLEMENTINDUSTRYANDGIVINGPRIORITYTOTHEDEVELOPMENTOFHEAVYINDUSTRY,THEMAINBODYOFSUPPLYOFRURALPUBLICCULTURALSERVICESWASSTILLTHEPEOPLESCOMMUNES,ANDTHEREWASNOOTHERMAINBODYOFSUPPLYINTHISPERIOD.IIINTERMSOFFINANCINGMECHANISM,THESUPPLYOFRURALPUBLICCULTURALSERVICESWASMAINLYDEPENDENTUPONTHEFUNDSOWNEDBYTHEPEOPLESCOMMUNES,ANDTHESTATEBUDGETARYEXPENDITUREGAVEAPPROPRIATESUBSIDIES.SPECIFICALLY,THEPEOPLESCOMMUNES,BYTHEACCUMULATIONFUNDANDPUBLICWELFAREFUND,REALIZEDTHEMATERIALCOSTSOFPUBLICCULTURALSERVICESBYINCREASINGTHETOTALWORKPOINTSANDDECREASINGTHEWORKPOINTVALUE,REALIZEDTHEHUMANCOSTSOFPUBLICCULTURALSERVICES.IIIINTERMSOFTHESUPPLYDECISIONMAKING,SINCETHERURALRESIDENTSWEREMOBILIZEDANDORGANIZEDBYTHEGOVERNMENTINANADMINISTRATIVEORDER,THERURALRESIDENTSHADASTRONGSENSEOFREVOLUTIONARYFERVOR,ENTHUSIASMANDCOHESION.RURALRESIDENTSPERSONALNEEDSFORPUBLICCULTURALSERVICESWEREIGNORED,ANDTHEREWASHIGHHOMOGENEITYBETWEENTHERESIDENTS,SOINTHISPERIOD,THESUPPLYOFRURALPUBLICCULTURALSERVICESWASTOPDOWNUNIFORMSUPPLY,DETERMINEDMAINLYBYTHEDECISIONMAKINGOFHIGHERAUTHORITIESANDPLANOFTHEGOVERNMENT.RURALPUBLICGOODSASIANAGRICULTURALRESEARCH2012,41150-53TAKINGTHECASEOF2008,ALLLEVELSOFFINANCIALINVESTMENTINURBANCULTUREACCOUNTEDFOR74.8OFTHENATIONALCULTURALCAUSEEXPENSES,WHILEALLLEVELSOFFINANCIALINVESTMENTINRURALCULTUREONLYACCOUNTEDFOR25.2OFTHENATIONALCULTURALCAUSEEXPENSES[6].INTHISSYSTEMOFURBANRURAL“DUAL“PUBLICCULTURALSUPPLY,THEREAREENORMOUSDIFFERENCESINTHELEVELOFSUPPLYOFPUBLICCULTURALSERVICESBETWEENURBANANDRURALAREAS,ANDTHEDIFFICULTIESINTHECOORDINATEDURBANANDRURALDEVELOPMENTAREINCREASED.2.2INSUFFICIENTSUPPLYOFRURALPUBLICCULTURALSERVICES,ARISINGFROMUNCLEARPROPERTYRIGHTSANDEXECUTIVEPOWEROFGOVERNMENTATALLLEVELSINORDERTOIMPLEMENTTHESTRATEGYOFGIVINGPRIORITYTOTHEDEVELOPMENTOFINDUSTRYANDCITY,THEMAJORFINANCIALRESOURCESARECONCENTRATEDINTHEHIGHERLEVELSOFGOVERNMENT,WHICHCANCONCENTRATETHEPOWERTODOGREATTHINGS.ACCORDINGLY,THEGRASSROOTSGOVERNMENTSHOULDPROVIDEPUBLICCULTURALSERVICESFORTHEMAJORITYOFRURALRESIDENTSUNDERTHECONDITIONSOFLESSFINANCIALALLOCATION.THEPUBLICCULTURALSERVICES,SUCHASRADIO,TELEVISION,ANDFILMTEAMS,NEEDINGTOBECOORDINATEDANDPROVIDEDBYSOMEGOVERNMENTSATALLLEVELS,AREMAINLYLEFTTOTHEGRASSROOTSGOVERNMENTTOSOLVE,AFTERMUTUALLYSHUFFLING.AFTERTHEIMPLEMENTATIONOFTHESYSTEMOFDIVIDINGTAXES,THESUPPLYSITUATIONOFRURALPUBLICCULTURALSERVICESISNOTFUNDAMENTALLYCHANGED.THEPROPERTYRIGHTSARETURNEDOVERLEVELBYLEVEL,ULTIMATELYTOTHECENTRALANDPROVINCIALGOVERNMENTS,WHILETHEEXECUTIVEPOWERDEVOLVESLEVELBYLEVEL,ANDTHESUPPLYRESPONSIBILITYOFPUBLICCULTURALSERVICESISMAINLYASSUMEDBYTHEGRASSROOTSGOVERNMENT,ESPECIALLYTHECOUNTYANDTOWNSHIPGOVERNMENTS.COMPAREDWITHTHEGREATSUPPLYRESPONSIBILITYOFCULTURE,THECOUNTYANDTOWNSHIPGOVERNMENTSFINANCIALRESOURCESHAVETOOMANYDIFFICULTIESTOCOPEWITH,DIRECTLYRESULTINGINTHEINSUFFICIENTSUPPLYOFRURALPUBLICCULTURALSERVICES.THEFUNDAMENTALREASONISINCOORDINATIONBETWEENPROPERTYRIGHTSANDEXECUTIVEPOWEROFGOVERNMENTATALLLEVELS.2.3STRUCTURALIMBALANCEINTHESUPPLYOFRURALPUBLICCULTURALSERVICES,CAUSEDBYTOPDOWNSUPPLYDECISIONMAKINGMECHANISMTHROUGHOUTTHEEVOLUTIONOFPUBLICCULTURALSERVICESINCHINA,THEDECISIONMAKINGMECHANISMISNOTCHANGED,STILLTHESUPPLYOFRURALPUBLICCULTURALSERVICESDETERMINEDBYTHEGOVERNMENTFROMTOPTODOWN[7].ONTHEONEHAND,RURALRESIDENTSCANNOTPARTICIPATEINTHEDECISIONMAKINGPROCESSOFTHESUPPLYOFRURALPUBLICCULTURE,SOTHATTHEIRNEEDSANDPREFERENCESAREDIFFICULTTOBEEXPRESSED.THECONTENTANDSTRUCTUREOFSUPPLYOFRURALPUBLICCULTURALSERVICESISMAINLYDETERMINEDBYTHEHIGHERLEVELOFGOVERNMENTSADMINISTRATIVEORDER,ANDTHEGRASSROOTSGOVERNMENTSINTERESTSNEEDS,AFARCRYFROMTHEREALNEEDSOFRURALRESIDENTS.ONTHEOTHERHAND,WITHTHESOCIOECONOMICDEVELOPMENTINCHINASRURALAREAS,ANDTHESTRENGTHENINGOFTHERURALRESIDENTSSENSEOFRIGHTS,THERURALRESIDENTSHAVEINCREASINGLYSHOWNTHECHARACTERISTICSOFDIVERSIFICATIONANDDIFFERENTIATIONFORPUBLICCULTURALSERVICES.INTHISCASE,THETOPDOWNDECISIONMAKINGMECHANISMHASBEENUNABLETOMEETTHEPRACTICALNEEDSOFSOCIO-ECONOMICDEVELOPMENTINRURALAREASANDRURALRESIDENTSNEEDSFORDIVERSEPUBLICCULTURALSERVICES,WHICHWILLINEVITABLYLEADTOSTRUCTURALIMBALANCEINTHESUPPLYOFRURALPUBLICCULTURALSERVICES.2.4SINGLEFINANCINGCHANNELSFORRURALPUBLICCULTURALSERVICESBEFOREORAFTERTHEREFORMOFTAXATIONEXPENSES,THEFINANCINGCHANNELSFORRURALPUBLICCULTURALSERVICESARESINGLEINCHINA.DISCOUNTINTERESTLOAN,F(xiàn)INANCING,F(xiàn)UNDRAISING,SOCIALDONATIONS,SPONSORSHIP,F(xiàn)UNDANDOTHERFINANCINGMODESHAVENOTYETBEENCOMBINEDWIDELYTHESOCIALIZATIONOFFUNDSFORRURALPUBLICCULTURALSERVICESHASNOTBEENACHIEVED.INTHISCASE,ITISBOUNDTOINCREASEFISCALPRESSUREINCHINA,INCREASETHERISKSINLONGTERMEFFECTIVESUPPLYOFRURALPUBLICCULTURALSERVICES,ANDINDIRECTLYLEADTOINSUFFICIENTSUPPLYOFRURALPUBLICCULTURALSERVICES.3RECOMMENDATIONSFORIMPROVINGTHESUPPLYOFPUBLICCULTURALSERVICESINRURALAREASTHEREAREMANYPROBLEMSINCHINASEXISTINGSUPPLYOFRURALPUBLICCULTURALSERVICES,SUCHASINSUFFICIENTSUPPLY,SINGLESUPPLYTYPE,IRRATIONALSUPPLYSTRUCTUREANDLACKOFEFFECTIVELONGTERMFINANCINGMECHANISM.INORDERTOIMPROVETHECURRENTSITUATIONOFSUPPLYOFRURALPUBLICCULTURALSERVICESINCHINA,ITISNECESSARYTODEVELOPAPPROPRIATECOUNTERMEASURESTOFURTHERIMPROVETHESUPPLYOFRURALPUBLICCULTURALSERVICES,ANDPROMOTETHESOCIALANDECONOMICDEVELOPMENTOFRURALAREASINCHINA.3.1ESTABLISHINGCOORDINATEDURBANRURALSUPPLYSYSTEMOFPUBLICCULTURALSERVICES,INCREASINGINPUTTORURALPUBLICCULTURALSERVICESTHEFORMERURBANRURAL“DUAL“PUBLICCULTURALSERVICESINCHINABURGEONEDUNDERTHESTRATEGYOFGIVINGPRIORITYTOTHEDEVELOPMENTOFINDUSTRYANDCITY,WITHSTRONGRESPONSIVENESSOFSOCIALANDECONOMICDEVELOPMENT.CHINASECONOMICAGGREGATENOWRANKSSECONDINTHEWORLD,HAVINGENTEREDTHESTAGEOF“USINGURBANDEVELOPMENTTODRIVERURALDEVELOPMENT,NURTURINGAGRICULTURE“THEFORMERSUPPLYSYSTEMOFPUBLICCULTURALSERVICESHASBEENUNABLETOMEETTHEPRACTICALNEEDSOFCHINASSOCIALANDECONOMICDEVELOPMENT.ITISNECESSARYTOESTABLISHCOORDINATEDURBANRURALSUPPLYSYSTEMOFPUBLICCULTURALSERVICES,ENSUREINVESTMENTINTHECITYSPUBLICCULTURALSERVICES,INCREASEFINANCIALINPUTTORURALPUBLICCULTURALSERVICES,ANDINCREASEINPUTTOCINEMA,THEATRICALTROUPE,LIBRARY,CULTURALCENTER,ANDOTHERCULTURALCARRIERS.INPARTICULAR,ITISNECESSARYTOSTRENGTHENTHERURALGRASSROOTSFINANCIALTRANSFERPAYMENT,TOENSURETHESOURCESOFFUNDINGFORPUBLICCULTURALSERVICES,ANDTHUSACHIEVETHEGOALOFEQUALIZATIONOFPUBLICCULTURALSERVICESINURBANANDRURALAREASASSOONASPOSSIBLE.3.2CLEARLYDEFININGTHEPROPERTYRIGHTSANDEXECUTIVEPOWEROFGOVERNMENTATALLLEVELSINTHESUPPLYOFRURALPUBLICCULTURALSERVICESWITHTHEIMPLEMENTATIONOFTHEADMINISTRATIVEREFORM,ITBRINGSAGOODOPPORTUNITYFORCLEARLYDEFININGTHEPROPERTYRIGHTSANDEXECUTIVEPOWEROFGOVERNMENTATALLLEVELSINTHESUPPLYOFRURALPUBLICCULTURALSERVICES.SPECIFICALLY,BASEDONTHEPRINCIPLESOF“BENEFIT,EFFICIENCY,CONVEN25ASIANAGRICULTURALRESEARCH2012
下載積分: 10 賞幣
上傳時間:2024-03-13
頁數(shù): 4
大?。?0.17(MB)
子文件數(shù):
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簡介:17外文原文RESEARCHLETTERSINMATERIALSSCIENCEVOLUME20082008,ARTICLEID814137,4PAGESDOI101155/2008/814137RESEARCHLETTERPROPERTIESOFREINFORCEDCONCRETESTEELREBARSEXPOSEDTOHIGHTEMPERATURES?LKERBEKIRTOP?UANDCENKKARAKURTDEPARTMENTOFCIVILENGINEERING,ESKI?EHIROSMANGAZIUNIVERSITY,26480ESKI?EHIR,TURKEYRECEIVED12FEBRUARY2008ACCEPTED31MARCH2008ACADEMICEDITORRAJIVSMISHRACOPYRIGHT?2008?LKERBEKIRTOP?UANDCENKKARAKURTTHISISANOPENACCESSARTICLEDISTRIBUTEDUNDERTHECREATIVECOMMONSATTRIBUTIONLICENSE,WHICHPERMITSUNRESTRICTEDUSE,DISTRIBUTION,ANDREPRODUCTIONINANYMEDIUM,PROVIDEDTHEORIGINALWORKISPROPERLYCITEDABSTRACTTHEDETERIORATIONOFTHEMECHANICALPROPERTIESOFYIELDSTRENGTHANDMODULUSOFELASTICITYISCONSIDEREDASTHEPRIMARYELEMENTAFFECTINGTHEPERFORMANCEOFSTEELSTRUCTURESUNDERFIREINTHISSTUDY,HOTROLLEDS220ANDS420REINFORCEMENTSTEELREBARSWERESUBJECTEDTOHIGHTEMPERATURESTOINVESTIGATETHEFIREPERFORMANCEOFTHESEMATERIALSITISAIMEDTODETERMINETHEREMAININGMECHANICALPROPERTIESOFSTEELREBARSAFTERELEVATEDTEMPERATURESSTEELSWERESUBJECTEDTO20,100,200,300,500,800,AND950°CTEMPERATURESFOR3HOURSANDTENSILETESTSWERECARRIEDOUTEFFECTOFTEMPERATUREONMECHANICALBEHAVIOROFS220ANDS420WEREDETERMINEDALLMECHANICALPROPERTIESWEREREDUCEDDUETOTHETEMPERATUREINCREASEOFTHESTEELREBARSITISSEENTHATMECHANICALPROPERTIESOFS420STEELWASINFLUENCEDMORETHANS220STEELATELEVATEDTEMPERATURES1INTRODUCTIONFIREREMAINSONEOFTHESERIOUSPOTENTIALRISKSTOMOSTBUILDINGSANDSTRUCTURESSINCECONCRETEISWIDELYUSEDINCONSTRUCTION,RESEARCHONFIRERESISTANCEOF19WERESUBJECTEDTO20,100,200,300,500,800,AND950°CTEMPERATURESINAHIGHFURNACEFOR3HOURS,RESPECTIVELYATTHEENDOFTHECURINGPROCESS,STEELSWERECOOLEDNATURALLYTOTHEROOMTEMPERATURESUBSEQUENTLY,TENSILETESTSWEREAPPLIEDTOSTEELREINFORCEMENTREBARSACCORDINGTOEN100021TENSILESTRENGTH,YIELDSTRENGTHANDELONGATIONOFTHESTEELREBARSWEREDETERMINEDFORELEVATEDTEMPERATURES7THESTEELSPECIMENSTENSILESTRENGTHTESTSWEREPERFORMEDWITH60TONSOFLOADINGCAPACITYUNIVERSALTENSILESTRENGTHTESTMACHINETHELOADINGSPEEDOFTHETESTMACHINEISADJUSTEDACCORDINGTOTS708CODE83TESTRESULTSANDEVALUATIONS31STRESSSTRAINRELATIONSTHEAVERAGEVALUESFORSTRESSSTRAINRELATIONSHIPFORSPECIMENSTHATWEREEXPOSEDTOVARIOUSTEMPERATURESAREGIVENINFIGURES1AND2THECURVESINFIGURES1AND2WEREDRAWNWITHTHEAVERAGETESTRESULTSOF10AND16MMINDIAMETERSTEELSPECIMENSTHETESTCONDITIONSWEREMEANTTOSIMULATEABUILDINGTHATHADAFIRESOTHECHANGESINTHEMECHANICALPROPERTIESOFREINFORCINGSTEELSUSEDINSTRUCTURESEXPOSEDTOHIGHTEMPERATURECOULDBEDETERMINEDASSEENFROMFIGURE1,TEMPERATURESBELOW500°CHAVENOSIGNIFICANTEFFECTONMECHANICALPROPERTIESOFPREHEATEDANDCOOLEDS220STEELREBARSTHEYIELDSTRENGTHANDSPLITTINGTENSILESTRENGTHSOFS220STEELSWERESIMILARUPTOTHISTEMPERATUREHOWEVER,THEYIELDSTRENGTHANDSPLITTINGTENSILESTRENGTHOFTHES220STEELREBARSAREREDUCINGWITHTHEINCREASEOFTEMPERATURESOVER800°CASIMILARBEHAVIORCANBESEENFROMTHETESTRESULTSOFS420RIBBEDSTEELREBARSFIGURE2ALLHIGHTEMPERATURESUBJECTEDSTEELSPECIMENSBECAMEMOREDUCTILETEMPERATURESABOVE800°CFIGURE1STRESSSTRAINCURVEOFS220STEELREBARFIGURE2STRESSSTRAINCURVEOFS420RIBBEDSTEELREBAR32YIELDSTRENGTHYIELDSTRENGTHOFBOTHREINFORCINGSTEELREBARSWASAFFECTEDWITHTHEELEVATEDEXPOSURETEMPERATURESITCANBECONCLUDEDFROMFIGURE3THATTHEREISNOVARIATIONINYIELDSTRENGTHOFREINFORCINGSTEELSWITHCOVERUPTO300°CPLAINREINFORCINGSTEELREBARSHAVEEXPERIENCEDTHESTRAINHARDENINGALREADYFORTHIS
下載積分: 10 賞幣
上傳時間:2024-03-16
頁數(shù): 9
大?。?0.1(MB)
子文件數(shù):
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簡介:1DEVELOPMENTANDANALYSISOFTHELARGESPANFRPWOVENWEBSTRUCTUREABSTRACTANINNOVATIVELARGESPANSTRUCTURALSYSTEM,NAMELYTHEFRPWOVENWEBSTRUCTUREFRPWWS,ISINTRODUCEDINTHISPAPERINANFRPWWS,THEHIGHSTRENGTHFRPSTRIPSARE“WOVEN”LIKEBAMBOOSTRIPSINACHINESEBAMBOOMATTOFORMAPLANEWEBTHEOUTEREDGEOFTHEWEBISANCHOREDONANOUTERRINGBEAM,ANDANINNERRINGBEAMISPROVIDEDTOANCHORTHEFRPSTRIPSATTHECENTEROFTHEWEBTHESTIFFNESSOFTHEWEBTORESISTVARIOUSLOADSISDERIVEDFROMTHEINITIALPRESTRESSINGDURINGTHE“WEAVING”STAGEANDTHEADDITIONALTENSIONINGASARESULTOFTHEOUTOFPLANEMOVEMENTOFTHEINNERRINGBEAMASARESULTOFTHEHIGHSTRENGTHTOWEIGHTRATIOOFFRP,THISNEWSTRUCTURALFORMOFFERSANATTRACTIVEOPTIONFORTHECONSTRUCTIONOFSPATIALSTRUCTURESWITHSPANSLONGERTHANAREPOSSIBLEWITHCONVENTIONALSTRUCTURALMATERIALSINTHISPAPER,THEBASICLAYOUTANDCONSTRUCTIONPROCEDUREFORASIMPLEFRPWWSISFIRSTPRESENTEDTHREEBASICWEAVINGPATTERNSARENEXTEXPLAINEDSEVERALVARIATIONSOFTHEBASICSTRUCTURALSYSTEMAREALSOPROPOSEDASIMPLEMECHANICALMODELISPRESENTEDFORTHEDEFORMATIONOFINDIVIDUALFRPSTRIPSRESULTSFROMAFINITEELEMENTANALYSISOFANEXAMPLESTRUCTUREAREALSOGIVENTHERESULTSOFTHESEANALYSESCONFIRMTHEFEASIBILITYOFTHEFRPWWS1INTRODUCTIONFRPISANEWKINDOFSTRUCTURALMATERIAL,WHOSEUSEINCIVILENGINEERINGHASBEENACTIVELYEXPLOREDINRECENTYEARSDUETOITSFAVORABLEPROPERTIESLIKE3TENSIONISUTILIZEDTORESISTLOADSHOWEVER,THEFRPWWSHASITSUNIQUEADVANTAGES1THEFRPSTRIPSAREIDEALFORSUPERLARGESPANSTRUCTURESDUETOTHEIRLOWSELFWEIGHTANDTHEIRSUPERIORMATERIALPROPERTIESINTHELENGTHWISEDIRECTION,WHICHAREEFFICIENTLYUTILIZED,WHILETHEWEAKNESSOFINFERIORPROPERTIESINTHETRANSVERSEDIRECTIONSISNOTEXPOSED2SIGNIFICANTDAMPINGCANBEEXPECTEDTOARISEFROMFRICTIONATJOINTSBETWEENFRPSTRIPS,WHICHCANENHANCETHERESISTANCEOFTHESTRUCTURETOWINDANDEARTHQUAKELOADS3THEREGULARWEAVINGPATTERNLEADSTOANAESTHETICALLYPLEASINGSURFACEAND4THECORROSIONRESISTANCEOFFRPANDTHEEASEOFINSTALLATIONBECAUSEOFITSLIGHTWEIGHTTRANSLATEINTOLOWMAINTENANCECOSTSINTHISPAPER,THEBASICLAYOUTANDCONSTRUCTIONPROCEDUREFORASIMPLEFRPWWSSYSTEMISPRESENTEDINDETAILTHEWEAVINGPATTERNSINPLANEARESUMMARIZEDINTOTHREETYPESSOMESPATIALFRPWWSFORMSFORPRACTICALAPPLICATIONSAREALSOPROPOSEDASIMPLEMECHANICALMODELFORINDIVIDUALFRPSTRIPSINTHEWEBISPRESENTEDRESULTSFROMTHEFINITEELEMENTANALYSISOFASIMPLEFRPWWSAREALSODESCRIBED2LAYOUTOFASIMPLEFRPWWSASIMPLEFRPWOVENWEBSTRUCTUREISCOMPOSEDOFAFRPWOVENWEB,ANOUTERRINGBEAMANDANINNERRINGBEAMFORANCHORAGE,ANDANADDITIONALWEIGHTORASETOFPRESTRESSEDTENDONS,ASSHOWNINFIGURE1THEWEBISWOVENWITHFRPSTRIPS,ANDCFRPSTRIPSOROTHERHIGHPERFORMANCEHYBRIDFRPSTRIPSARESUGGESTEDCFRPSTRIPS,WHICHHAVEBEEN
下載積分: 10 賞幣
上傳時間:2024-03-17
頁數(shù): 22
大小: 0.17(MB)
子文件數(shù):
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簡介:3中文11350字出處MICROPROCESSORSANDMICROSYSTEMS,2012,363215231外文文獻翻譯外文文獻翻譯一種可重構(gòu)的嵌入式彩色圖像分割處理軟件系統(tǒng)CHRYSOSG,DOLLASA,BOURBAKISN摘要摘要圖像分割是圖像分析和計算機視覺第一重要和最困難的步驟之一,它也被認為是機器視覺中最古老的問題之一。最近,幾個分割算法已經(jīng)迅速發(fā)展起來,包括制定閾值,邊緣定位和區(qū)域增長,這些為更快的圖像/視頻分析和識別系統(tǒng)的發(fā)展提供了很好的機會。此外,模糊分割算法本質(zhì)上有助于區(qū)域的合成,更好地顯示物體。這些算法有著細微的差別,但是都還不錯。因此,算法的選擇是基于主觀標準的,或者基于應(yīng)用程序本身。在這里,我們針對模糊推理分割(FRS)提出一種低成本的嵌入式可重構(gòu)體系結(jié)構(gòu)。FRS有三個階段(平滑,邊緣檢測和實際分割)。初始的平滑操作是為了去除噪點,平滑和邊緣檢測算法也包括在這個程序步驟中。分割算法利用了邊緣信息和平滑后的圖像,用來找到圖像中的區(qū)域。在這項工作中FRS分割算法被選擇是依賴于它在一些列應(yīng)用中展現(xiàn)的可靠性能。(面部檢測,運動檢測,自動目標識別(ATR)),并且它開發(fā)成本低,有著可重構(gòu)的計算平臺,旨在低成本的應(yīng)用。特別要提的是,本文提出的實現(xiàn)平滑,邊緣檢測和顏色的分割算法,使用STRETCHS5000處理器,并且通過使用MATLAB軟件實現(xiàn),最后對它們進行對比。在本文中,這種新的體系結(jié)構(gòu)和替代技術(shù)、基準測試和比較結(jié)果,都進行了詳細介紹。這是第一次我們看到了同時具有高吞吐量,出色的性能(至少在基準測試中)和低成本的實現(xiàn)。關(guān)鍵字關(guān)鍵字可重構(gòu),圖像分割,可嵌入式系統(tǒng),架構(gòu)5的有序性。通常情況下,各區(qū)域產(chǎn)生的順序取決于這些區(qū)域的增長和合并的順序。12顏色分割架構(gòu)顏色分割架構(gòu)文獻中報道了許多不同的顏色分割的方法。其中一個重要的方法是雙色反射模型發(fā)展而來的。它描述了顏色的反射光的表面反射(亮點)和物體的反射(物體顏色)的線性組合。使用這種模式,區(qū)域增長和合并法顯示出了令人印象深刻的結(jié)果。在該方法中,一個物體上高亮度的區(qū)域和無光澤的區(qū)域合并了。然而,使用不恰當?shù)拈撝禃顾男阅芡嘶?。有一些分割方法,它們不在RGB空間里分割彩色圖像,因為它們和色彩的理解模型不切合。相反的,它們選擇其他的顏色空間,比如HIS或者YUV,這些都比RGB色彩空間顯示出了更好的效果。這些圖像分割過程融合了邊緣檢測方法來產(chǎn)生更好的結(jié)果。基于近似推理或模糊推理的分割產(chǎn)生了可喜的成果。HUNTSBERGER定義顏色的邊緣為每個像素成員函數(shù)值的差異為零。通過使用了C迭代分割算法得到了模糊算法成員函數(shù)值,盡管C迭代算法由于本身性質(zhì)來說是耗時的。LIM提出了一種自動化的從粗到細的分割方法。這種方法基于閾值直方圖和C迭代算法。LAMBERT和CARRON提出了一個有趣的方法,結(jié)合色彩空間(根據(jù)相關(guān)色度處理和明確色相的界
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上傳時間:2024-03-11
頁數(shù): 36
大?。?7.28(MB)
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簡介:景觀設(shè)計風(fēng)格和園林價值保護之間的關(guān)系德國魏瑪歷史公園的案例研究景觀設(shè)計風(fēng)格和園林價值保護之間的關(guān)系德國魏瑪歷史公園的案例研究MARTINKüMMERLING,NORBERTMüLLER景觀管理與生態(tài)恢復(fù)部門以及URBIO總公司,德國埃爾福特應(yīng)用技術(shù)大學(xué)關(guān)鍵詞生物多樣性;歷史公園;園藝;城市公園;植被;摘要城市公園可以通過被引入植物的種植成為入侵源。另一方面,城市公園作為生物多樣性的熱點地區(qū),可以支持保護瀕危和罕見的分類單元。即使歷史城市公園首先被評估為遺產(chǎn),但它們依然為生態(tài)系統(tǒng)和積極的審美以及社會價值服務(wù)。雖然在歐洲有許多研究是關(guān)于設(shè)計的,公園的哲學(xué)和歷史背景就像生物多樣性的研究一樣,幾乎沒有研究提出景觀設(shè)計原則如何影響了公園的生物保護價值。因為在歐洲,公園的景觀風(fēng)格是一個最具影響力的歷史景觀設(shè)計風(fēng)格,我們將我們的研究集中在德國魏瑪?shù)摹耙翣柲泛优瞎珗@”。它創(chuàng)建于18世紀晚期,并且在1998年被聯(lián)合國教科文組織列為世界遺產(chǎn)的一部分。我們的研究問題是1哪些設(shè)計原則、植物原料和技術(shù)實施被使用在創(chuàng)建和管理公園的過程中2對于公園的生物保護尤其是瀕危植物物種和棲息地的保護來說,當前什么才是具有價值的3設(shè)計原則和現(xiàn)代公園的價值之間是什么關(guān)系我們將我們的結(jié)果與類似的公園景觀做一對比,并對未來可持續(xù)的公園設(shè)計和公園恢復(fù)管理給出建議。我們的研究問題是1哪些設(shè)計原則、植物原料和技術(shù)實施被使用在創(chuàng)建和管理公園的過程中2對于公園的生物保護尤其是瀕危植物物種和棲息地的保護來說,當前什么才是具有價值的3設(shè)計原則和現(xiàn)代公園的價值之間是什么關(guān)系我們將我們的結(jié)果與類似的公園景觀做一對比,并對未來可持續(xù)的公園設(shè)計和公園恢復(fù)管理給出建議。22研究地點研究地點“伊爾姆河畔公園”坐落在德國中部的魏瑪(215MASL),公園的起源可以追溯到1778年。對于許多歐洲的歷史公園來說,“伊爾姆河畔公園”是建在以前的一個規(guī)整花園的位置上(幾何式的),它被設(shè)計在卡爾奧格斯特公爵的宮殿旁邊。當時公園位于魏瑪?shù)慕紖^(qū),1860年魏瑪城開始擴展,公園便開始位于城市邊界內(nèi)。在魏瑪公爵的城市宮殿、北部的城市中心、現(xiàn)在OBERWEIMAR的SUBURBANISED村以及南方的高級住宅區(qū)之間,公園形成了伊爾姆河的泛濫平原的一部分(圖一為公園概況)。它周長15公里,占地約048平方公里。泛濫平原的土壤是沖積土,山谷兩邊所包含的鈣質(zhì)材料就像KEUPER和含有石灰物質(zhì)的貝殼。
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上傳時間:2024-03-16
頁數(shù): 16
大?。?0.58(MB)
子文件數(shù):
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下載積分: 10 賞幣
上傳時間:2024-03-17
頁數(shù): 14
大小: 0.51(MB)
子文件數(shù):
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簡介:I雙橫臂獨立懸架設(shè)計摘要雙橫臂式獨立懸架,是一種車輪在汽車橫向平面內(nèi)擺動的獨立懸架,這種獨立懸架被廣泛應(yīng)用在轎車前輪上。雙橫臂式獨立懸架按上、下橫臂是否等長,又分為等長雙橫臂式和不等長雙橫臂式兩種懸架。等長雙橫臂式懸架在車輪上下跳動時,能保持主銷傾角不變,但輪距變化大與單橫臂式相類似,造成輪胎磨損嚴重,現(xiàn)已很少用。對于不等長雙橫臂式懸架,只要適當選擇、優(yōu)化上下橫臂的長度,并通過合理的布置,就可以使輪距及前輪定位參數(shù)變化均在可接受的限定范圍內(nèi),這種結(jié)構(gòu)有利于減少輪胎磨損,提高汽車行駛平順性和方向穩(wěn)定性,保證汽車具有良好的行駛穩(wěn)定性。目前不等長雙橫臂式懸架已廣泛應(yīng)用在轎車的前后懸架上,部分運動型轎車及賽車的后輪也采用這一懸架結(jié)構(gòu)。本次課題設(shè)計根據(jù)懸架系統(tǒng)設(shè)計的基本要求和給定的參數(shù),完成了雙橫臂獨立懸架的設(shè)計。關(guān)鍵詞汽車;雙橫臂獨立懸架;螺旋彈簧;減振器目錄摘要IABSTRACTII緒論1第一章懸架概述211懸架設(shè)計的要求312懸架對汽車性能的影響3121懸架對汽車行駛平順性的影響3122懸架對汽車行駛穩(wěn)定性的影響5第二章獨立懸架及彈性元件的結(jié)構(gòu)形式與分析721獨立懸架的結(jié)構(gòu)型式與分析722彈性元件的特定分析比較8第三章螺旋彈簧懸架設(shè)計1031懸架基本參數(shù)的選定10311懸架靜撓度10312上下橫臂長度的確定11313簧載質(zhì)量的確定11314其他參數(shù)的確定1132螺旋彈簧的選擇1233減振器的選擇14331減振器類型的選擇14332減振器主要參數(shù)的選擇15
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上傳時間:2024-03-16
頁數(shù): 48
大?。?1.95(MB)
子文件數(shù):
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簡介:DSPCONTROLSYSTEMOFBRUSHLESSDCMOTORWITHOUTPOSITIONSENSORHUANGQINGXIN,LIANGHUIDEPARTMENTOFELECTRICALENGINEERING,BEIJINGJIAOTONGUNIVERSITY,BEIJING100044,CHINAABSTRACTTHISPAPERDESIGNSAKINDOFVARIABLESPEEDCONTROLSYSTEMOFABRUSHLESSDCMOTORBLDCMWITHOUTAROTORPOSITIONSENSORBASEDONINTELLIGENTPOWERMODULEANDDSP,THISSYSTEMUSESTHEBACKELECTROMOTIVEFORCEBACKEMFMETHODTOIMPLEMENTTHEPOSITIONSENSORLESSCONTROLFORBRUSHLESSDCMOTORTHESYSTEMISHIGHLYINTEGRATEDWITHFLEXIBLECONTROLANDSTRONGRELIABILITYEXPERIMENTALRESULTSINDICATETHATTHISSYSTEMHASAHIGHPERFORMANCEKEYWORDSBRUSHLESSDCMOTOR,POSITIONSENSORLESSCONTROL,BACKEMF,DSPIINTRODUCTIONINTHEPASTDECADES,WITHTHEDEVELOPMENTOFMOTORCONTROL,POWERELECTRONICSANDMICROELECTRONICSTECHNOLOGIES,BLDCMHASBECOMEANEWTYPEOFMOTORTHEMOSTIMPORTANTFEATUREOFITISTHATTHEMECHANICALCOMMUTATIONCONFIGURATIONCONSTITUTEDBYCOMMUTATORSANDBRUSHESISREPLACEDBYELECTRICALCOMMUTATIONCIRCUITRYITSOLVESTHEDRAWBACKSCAUSEDBYMECHANICALCOMMUTATIONANDMAINTAINSTHEVIRTUESOFUSINGADCMOTORINVARYINGVELOCITYFIELD,SOITISAPPLIEDWIDELYONHOMEAPPLIANCEFIELD,WHEREDCVARIABLEFREQUENCYAIRCONDITIONERREPRESENTSTHEAIRCONDITIONERUSINGADVANCEDTECHNOLOGYANDBRUSHLESSDCMOTORHASWENTINTOCOMPRESSORFIELD,MAKINGITMOREEFFICIENCYINENERGYCONSUMPTIONINTHETRANSPORTATIONFIELD,BLDCMHASABRIGHTANDWIDEFUTUREINTHEFIELDOFELECTRICMOTORANDFULLELECTRICSHIPTHEROTORPOSITIONSIGNALOFBLDCMISUSUALPROVIDEDBYPOSITIONSENSORBUTTHEEXISTENCEOFPOSITIONSENSORMAKESTHECONFIGURATIONMORECOMPLEX,INFLUENCESTHERELIANCEOFMOTOROPERATIONANDINCREASESTHECOSTOFTHEMOTORNEVERTHELESS,INSOMESPECIALIZEDFIELDS,ITISNOTCONVENIENTTOUSEPOSITIONSENSOR,SUCHASIFTHEREAREHIGHTEMPERATURE,FROZENANDEROSIONMATERIALS,ITDEFINESTHEAPPLICATIONOFBLDCMINTHISPAPER,THEROTORPOSITIONISDETECTEDVIADETECTINGTHETHREEPHASETERMINALVOLTAGESTHISKINDOFMETHODDONTUSEPOSITIONSENSOR,REDUCEDTHESYSTEMCOSTANDTHEVOLUMEOFTHEMOTOR,ESPECIALLYIMPROVEDTHECHARACTERISTICSOFTHESYSTEMGOINGWITHTHEDEVELOPMENTDSP,ITISTHETRENDTOSOLVETHEINCREASINGCOMPUTATIONCOMMANDINMOTORCONTROLSYSTEMUSINGHIGHPERFORMANCEDIGITALSIGNALPROCESSORINTHEMEANWHILE,INTELLIGENTPOWERMODULEWITHHIGHINTEGRATEDRATIOISINTRODUCEDINTHEPAPER,ITTREMENDOUSLYIMPROVESTHELEVELOFBLOCKINGABOUTHOMEAPPLIANCESCONSIDERINGTHEVARYINGSPEEDCOMMANDOFBLDCM,THISPAPERPROPOSESAVARIABLEFREQUENCYVARIABLESPEEDSYSTEMBASEDONDSPANDIPMITMAKESTHEWHOLECONTROLSYSTEMSCONFIGURATIONCOMPACT,FLEXIBLETOCONTROLANDPOSSESSEXTENSIVEPRACTICALITYIISYSTEMHARDARESTRUCTUREAMAINCIRCUITFIG1ISTHEMAINCIRCUITDIAGRAMOFTHESYSTEM,MAINLYINCLUDINGTHREEPARTS,SUCHASRECTIFIER,FILTERINGANDINVERTINGCIRCUITSSIGNALPHASEBRIDGERECTIFIERMODULEISEMPLOYEDASTHERECTIFIERCIRCUIT,MAKINGTHECONFIGURATIONWITHHIGHRELIABILITYANDSIMPLEWHILETHEINVERTERCIRCUITEMPLOYSIPMPS21255MODULE,THEIGBTDRIVECIRCUITANDPROTECTINGCIRCUITAREINTEGRATEDINTHEMODULE,INCREASEDTHERELIABILITYOFTHESYSTEMANDSHORTENEDTHEDEVELOPINGPERIODPS21255ISTHENEWESTDIPIPMPRODUCTMANUFACTUREDBYMITSUBISHICORPORATION,DESIGNEDFORHOMEAPPLIANCESANDPINTSIZEDTRANSDUCERSBASEDONTHEIPM,THEDUALINLINEPACKAGEPOWERMODULEHASTHEFEATURESOFMORECOSTEFFECTIVE,MINIATURIZATION,HIGHRELIABLEPERFORMANCEANDEASYTOUSETHISIPMMODULEEMPLOYSTHEHIGHSPEEDLOWCONDUCTINGVOLTAGEIGBTDEVICES,SIMULTANEOUSLY,THEDRIVECIRCUITISCLOSETOTHEIGBTCHIP,BROUGHTTHEVIRTUESOFSHORTDRIVETIMEDELAY,HIGHSPEEDSWITCHINGANDLOWPOWERLOSSIPMALSOPOSSESSESSPECIALCIRCUITS,SUCHASHIGHSPEEDOVERCURRENTPROTECTIONANDEXCELLENTOVERTEMPERATUREPROTECTIONFUNCTIONINADDITION,BECAUSEOFOPTIMIZEDGATEDRIVEANDTHEINTEGRATIONOFIGBT,THESYSTEMHASPROPERCOMPOSITION,NOEXTERNALDRIVECIRCUIT,SMALLVOLUMEANDEXCELLENTEMIELIMINATIONCAPABILITYFIG1MAINCIRCUITBDSPCONTROLCIRCUITTHECONTROLCIRCUITSOFTHISSYSTEMARECOMPOSEDBYDSPANDITSPERIPHERALCIRCUITS,BACKEMFZEROCROSSINGDETECTIONCIRCUIT,SPEEDCOMMANDANDDISPLAYCIRCUITSDSPISANEWLYPRODUCEDMOTORDIGITALCONTROLCHIPBYTICORPORATION,COMPARINGWITHTHEFORMERCHIPS,THEINSTRUCTIONCYCLETIMEISSHORTERMOREINTEGRATEDPERIPHERALPARTS,BIGGERCHIPINTERNALSTORAGEANDQUICKERANALOGTODIGITALCONVERSIONSPEEDAREALSOPROVIDED,SOITISMORESUITABLETOBEUSEDINHIGHSPEED371RL0J{VA{VNFIG4EQUIVALENTCIRCUITOFMOTORPHASEAFROMFIG4,THEFOLLOWINGVOLTAGEEQUATIONSABOUTBLDCMCANBEEXPRESSEDASDTVIRIALDTAV1VBRIBLDBEBV,2DTDIVFRI6LDTE,V,3DT3BECAUSETHEMOTORADOPTS1200CONDUCTINGMODE,ONLYTWOPHASESAREENERGIZEDATATIME,SOTHECURRENTINTHETWOPHASESHASTHESAMEAMPLITUDEANDOPPOSITEDIRECTION,WHILEINANOTHERPHASE,THECURRENTISZERO,THESAMEWITHTHETOTALOFTHREEPHASECURRENTSADDINGTHEUPPERTHREEEQUATIONS,WECANGETV,VBV,EEBEC3V4FROMFIG3,EAEBEC0CANBEOBTAINEDATTHEINSTANTWHENEACHPHASEBACKEMFCROSSESZEROTHEREFORE,ATTHEZEROCROSSINGPOINTOFBACKEMF1VN3VAVBV5FROMFIG4,WHENSOMEPHASEWINDINGCURRENTISZERO,ITSPHASEBACKEMFIS,FOREXAMPLEPHASEA,AVAV,WHENVAV,THENA0,THEREFORE,VIADETECTINGPHASETERMINALVOLTAGES,THENEUTRALPOINTVOLTAGECANBEATTAINEDWHENTHETERMINALVOLTAGEISEQUALWITHTHENEUTRALVOLTAGE,THEBACKEMFZEROCROSSINGPOINTOFTHEPHASECANBEDICTATEDBBACKEMFDETECTIONCIRCUITFIG5ISTHECIRCUITPRINCIPLEDIAGRAMOFAPHASEBACKEMFZEROCROSSINGDETECTIONPOINTTERMINALVOLTAGEVAATTAINEDFROMRESISTORARRAYISTRANSFERREDTOVA15VFILTER,RECTANGULARWAVECANBEATTAINEDFROMCOMPARINGTHEFILTEREDSIGNALV1WITHV“,ASSHOWNINTHEFIG5,CONSEQUENTLY,SIGNALCAPIISGOTFROMTHEABOVERECTANGULARWAVETHROUGHOPTOISOLATIONANDSCHMIDTRECTIFIERCIRCUITTHENITISTRANSFERREDTOTHECAPTUREPORTOFDSP,THEUPANDDOWNEDGESARETHEINSTANTSTHEBACKEMFCROSSINGZEROVB,ANDV,ARETHEOTHERTWOPHASESIGNALS,GENERATEDBYTHESAMEPRINCIPLEASVABECAUSEOFEMPLOYINGPWMMODE,THETERMINALVOLTAGEALWAYSCONTAINSHIGHFREQUENCYMODULATINGSIGNALSTHISEFFECTSTHENORMALOPERATIONOFCOMPARATOR,SOFILTERISNECESSARYFORFILTERINGTHETERMINALVOLTAGESIGNALINFIG5,THEPARAMETERDESIGNOFTHEFILTERISVERYIMPORTANT,BECAUSEITDICTATESWHETHERTHEFINALATTAINEDRECTANGULARSIGNALCANREFLECTTHEROTORPOSITIONCORRECTLYANDACCURATELY,SOYOUSHOULDPAYSPECIALATTENTIONTOITFIRST,YOUSHOULDGUARANTEETHEPHASESHIFTOFTHEFILTERISMINIMALTHEFILTERINGCIRCUITEMPLOYEDINTHISSYSTEMMAKESTHEPHASESHIFTTREMENDOUSLYSMALLSHOWNINFIG5,SOITHASLIGHTINFLUENCEONTHEDETECTEDSIGNALSECOND,BECAUSEOFTHEERRORCAUSEDBYTHEELEMENTS,WHENYOUCHOOSETHEELEMENTSRORC,YOUSHOULDGUARANTEETHATTHEDIFFERENCESWHETHERRESISTANCESORRELUCTANCESAMONGTHETHREEPHASESARETREMENDOUSLYLITTLE,ORELSEITMAYCAUSETHEPHASESHIFTANGLEINCONSISTENTLYAMONGTHETHREEPHASEFILTERS,ANDHARMFULINFLUENCETOTHEOPERATIONCHARACTERISTICSOFTHEMOTORIVSOFTWAREDESIGNOFTHECONTROLSYSTEMASOFTWAREFLOWCHARTFIG6ISTHESYSTEMSOFTWAREFLOWCHART,THEWHOLECONTROLSYSTEMSOFTWAREISCOMPOSEDBYTHEMAINPROGRAMANDTHEINTERRUPTSERVICESUBSYSTEM,WHILETHEMAINPROGRAMISCOMPOSEDBYSYSTEMINITIALIZEPROGRAM,MOTORSTARTPROGRAMTHEA/DCONVERSIONTOTHESPEEDCOMMANDISFINISHEDINTHEMAINPROGRAMCAPTUREINTERRUPTSUBPROGRAMANDTIMERCOMPAREINTERRUPTSERVICESUBPROGRAMARETHEMAINCOMPOSEDPARTSOFTHEINTERRUPTSERVICESUBPROGRAMTHEMAINFUNCTIONOFCAPTUREINTERRUPTISTOGETTHREEPHASEBACKEMFZEROCROSSINGINSTANTSANDREADTHETIMEINTERVALBETWEENTWICECAPTURE,SOTOCALCULATETIMERINTERNALCORRESPONDINGTOTHE30°ANGLEWHILETHECOMPAREINTERRUPTOFTHETIMERISUSED15V5V15VTKITK2KCAP1HHC14P521VNFIG5BACKEMFZEROCROSSINGDETECTIONCIRCUITDIAGRAM373
下載積分: 10 賞幣
上傳時間:2024-03-13
頁數(shù): 5
大?。?1.45(MB)
子文件數(shù):