除塵器流場(chǎng)數(shù)值模擬計(jì)算

除塵器流場(chǎng)數(shù)值模擬計(jì)算

ID:31585498

大小:5.10 MB

頁(yè)數(shù):101頁(yè)

時(shí)間:2019-01-14

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1、除塵器流場(chǎng)數(shù)值模擬計(jì)算ABSTRACTAfteracenturyofdevelopment,precipitatortechnologyhasalreadybecomemoreandmorematureandwidelyusedinpower,steel,nonferrousmetallurgy,chemicalindustryandotherindustrialareas.Withthedevelopmentofeconomy,environmentproblemshavebecomeincreasinglyserious,andareconsideredtobeon

2、eofthehotspotsintheworld.However,thetraditionalfiltercannotsatisfythesevereenvironmentalrequirements,andtheimprovementandinnovationofdusttechnologyareneeded.Theinternalflowtypeofcycloneseparatoriscomplexity,whilethestudyontheinternalspeed,stressandeddycurrentdistributioninthecyclonesepar

3、atorthroughnumericalsimulationtechnologycansavetime,human,materialandfinancialresources.Inthepresentstudy,aguideplatewasaddedintotheairinletofcommoncycloneseparator,andthenthespeed,pressure,turbulenceofthecycloneseparatorwithaguideplatewereexaminedthroughnumericalsimulationtechnologyandl

4、aboratorytest.Generally,theelectrodeconfigurationisthekeycomponentoftheelectrostaticprecipitator,anditsstructureandconfigurationoftheformcanaffecttheelectricalcharacteristicsanddustefficiency.Thus,itnecessarytoexplorethebestnumericalsimulationmodelforlineboardtypeelectricalprecipitatorth

5、roughnumericalsimulation,tostudytheelectricalcharacteristicsofthewettypedustprecipitator.Themainresultsandconclusionsareasfollows:⑴Accordingtonumericalsimulationcalculationandexperimentalstudy,thetangentialvelocitydistributionofthecycloneseparatorwithaguideplatearemoreuniform,andtheaxial

6、velocityhasalsoimproved,additionally,theturbulentkineticenergyandthepressurelossaredecreased.Theaboveresultssuggestthattheguideplatecaneffectivelyimprovetheperformanceofthecycloneseparator.⑵Basedonthenumericalsimulationcalculationofcoronaelectricalprecipitatorwithdraperyline,theinternalp

7、otential,electricfieldstrengthandcurrentdensitydistributionofthelineboardtypeelectricalprecipitatorallshowcirculardistributionalongtheedgeofcentercorona,andmaximumvaluesarefoundinthesurfaceofthecorona,butthesevaluesdecreasedquicklyoutsidethecoronaline;thecurrent-voltagech

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