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9 个结果
  • 简介:Theseparating/reattachingflowoveranaxisymmetricbackward-facingstepisanalyzedexperimentallybymeansofparticleimagevelocimetry(PIV).ThemainpurposeofthemeasurementsistheinvestigationofthemeanflowfieldaswellasoftheReynoldsstressdistributionsataMachnumberof0.7andataReynoldsnumberof3.3x10~5basedonthestepheight.Duetothestrongprogressofopticalflowmeasurementsinthelastyearsitwaspossibletoresolveallflowscalesdownto180μm(≈1%ofthestepheight)withhighprecision.ThankstothehighspatialresolutionitwasfoundforthefirsttimethattheReynoldsstressdistributionfeaturesalocalminimumbetweenthefirstpartoftheshearlayerandaregioninsidetherecirculationregion.Thisimpliesamorecomplexwakedynamicsthanassumedbefore.

  • 标签: PIV 剪切层 分离 跨音速 粒子图像测速仪 高空间分辨率
  • 简介:Thispaperdescribesamulti-threatreal-timeseparatingsystemforbroadbandanti-radiationmissileseeker.Itpresentsamethod,withadual-portmemoryascomparer,toperformPFandPWhardwarereal-timeseparationandtodeterminethetime-of-arrival(TOA)byuseofsequentialdifferencehistogram(SDIF).Themethodhasbeenappliedtopractice,whichhasachievedgoodresults.

  • 标签: Signal separating TOA to PRI DUAL-PORT
  • 简介:ThetechnologyforseparatingtheMTOproductsindependentlydevelopedbytheWisonChemicalEngineeringLtd.willbeappliedintheseparationunitofthephaseI680kt/asecond-generationDMTOdemonstrationunitattheShaanxiPuchengCleanEnergyChemicalLimitedLiabilityCompany,

  • 标签: 技术开发 进口产品 多式联运 化工工程 经营人 分离
  • 简介:Itisshownthatorbitalangularmomentum(OAM)isapromisingnewresourceinfutureclassicalandquantumcommunications.However,theseparationofOAMmodesisstillabigchallenge.Inthispaper,weproposeasimpleandefficientseparationmethodwitharadialvaryingphase.Inthemethod,specificradialvaryingphasesaredesignedandmodulatedfordifferentOAMmodes.Theresultantbeamisfocusedtothespotswithdifferenthorizontalandverticalpositionsafteraconvexlens,whenthecoordinatetransformation,includingtwoopticalelementswithcoordinatetransformationphaseandcorrectphase,operatesonthereceivedbeam.Thehorizontalpositionofthespotisdeterminedbythevortexphases,andtheverticalpositionofthespotisdependentontheradialvaryingphases.ThesimulationandexperimentalresultsshowthattheproposedmethodisfeasiblebothforseparationoftwoOAMmodesandseparationofthreeOAMmodes.TheproposedseparationmethodisavailableinprincipleforanyneighboringOAMmodesbecausetheradialvaryingphaseiscontrolled.Additionally,noextrainstrumentsareintroduced,andthereisnodiffractionandnarrowingprocesslimitationfortheseparation.

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  • 简介:Sourceseparationisthebasicpremiseformakingeffectiveuseofhouseholdwastes.IneightcitiesofChina,how-ever,severalpilotprojectsofsourceseparationfinallyfailedbecauseofthepoorparticipationrateofresidents.Inordertosolvethisproblem,identifyingthosefactorsthatinfluenceresidents’behaviorofsourceseparationbecomescrucial.Bymeansofquestionnairesurvey,weconducteddescriptiveanalysisandex-ploratoryfactoranalysis.Theresultsshowthattrouble-feeling,moralnotion,environmentprotection,publiceducation,environmentvalueandknowledgedeficiencyarethemainfactorsthatplayanimportantroleforresidentsindecidingtoseparatetheirhouseholdwastes.Also,accordingtothecontributionpercentageofthesixmainfactorstothetotalbehaviorofsourceseparation,theirinfluencingpowerisanalyzed,whichwillprovidesuggestionsonhouseholdwastemanagementforpolicymakersanddecisionmakersinChina.

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  • 简介:Inthispaper,itwasdiscoveredthatanovelpH-sensitivecopolymerofN-isopropylacrylamide(NIP)andN-(3-dimethylaminopropyl)methacrylamide(DMAPM)couldbegottenbypolymerization.ThephasetransitionpH(pHtr)ofP(NIP-DMAPM)polymerwasfoundtobe7.4at37℃.ThepolymerwasprecipitatedoutofwateraboveacriticalpH=7.4andre-dissolvedbelowpH----7.4.Thecharacteristicofthispolymermadeitpossibletocarryouttheimmunochemicalstepsofanimmunoassayinatruesolutionandthentoquicklyseparatetheresultingproductfromthereactionmixture.Inacompetitivefluorescenceimmunoassay,thestandardrabbitIgGandrabbitIgGimmobilizedonP(NIP-DMAPM)firstcompetitivelyreactedwiththefluoresceinisothiocyanate(FITC)labeledantibody,thenthepHofsolutionwasadjustedabovethepHtrofpolymertoprecipitatethepolymer-immunecomplex,andthepolymer-immunecomplexprecipitatewasseparatedandre-dissolvedbytheadjustmentofpH,finallytheFITC-labeledantibodyintheimmunecomplexwasquantifiedbyfluorescencemeasurement.ThecalibrationgraphforrabbitIgGwaslinearovertherangeof100-1000ng/mLwithadetectionlimitof11ng/mL.Themethodisrapid,sensitiveandsimple.OwingtoneutralpHtrofP(NIP-DMAPM),thedamagetoantigen-antibodyimmunecomplexwasgreatlydecreasedinthecourseofseparation.Inaddition,asandwichenzyme-linkedfluorescenceimmunoassaymethodforthedeterminationofhumanIgGwasalsodeveloped,showingthatthepH-sensitivephaseseparatingimmunoassaycouldbeperformedinthecompetitivemethodaswellasthesandwichmethod.

  • 标签: 荧光免疫测定系统 酸碱度 敏感性 聚合体 人体 抗原
  • 简介:器官的多微孔的材料通过在pentaerythritol或pentaerythritoltetrathiol和cyclohexa-1,4-dione衍生物的不同类型之间的1,3-dioxol-forming聚合反应基于spiroketal和spirothioketal聚合物被综合。准备聚合物的结构被NMR光谱学和分子的集体大小证实。准备聚合物的氮吸附/解吸附作用等温线显示出在显示microporosity的低相对压力吸附的大量氮。这些聚合物从492在范围有BrunauerEmmitt和出纳(赌注)表面区域(m2g?1)到685(m2g?1)。准备聚合物被发现为有直到12.5的一个分离因素的甲醇甲苯混合的pervaporation分离有用,在6.7之间变化并且流动#

  • 标签: 渗透汽化分离 聚合物 纳米多孔材料 混合物 苯甲醇 基础
  • 简介:AnewequivalentcenterofmassmodelofFPBs(frictionpendulumbearings)isintroduced,andbasedonthismodel,coefficientjoftheequivalentcenterofmassseparatingfromtheslidingsurfaceisdefined.ItisthoughtintheorythatjhasasignificantimpactontheisolationparameterofFPBs,sincetheequivalentpost-yieldingstiffnessandfrictioncoefficientsarenotsimplydeterminedbyslidingradiusandslidingfrictionpairs.TheresultsofnumericalsimulationanalysisusingABAQUSconductedontwogroupsofFPBssupportthisviewpoint.ForFPBswiththesameslidingradiusandslidingfrictionpairs,theFPBmodulesofstructuralanalysissoftwaresuchasETABScouldonlydistinguishtheequivalenttransformationusingjonebyone.TheseismicresponsedataobtainedinabaseisolationcalculationexampleofFPBsareverydifferent,whichrevealsthatj’simpactontheisolationeffectivenessofFPBscannotbeignored.TheintroductionofjwillhelpimprovetheclassicalstructuraltheoryofFPBsandtheweakpointsofstructuralanalysissoftwarebasedonthistheory,whichisimportantinachievingmoreaccurateanalysesinstructuraldesign.

  • 标签: FPB EQUIVALENT center of MASS deviation