简介:Rigidblockingmassesarelocatedinthetypicalbasestructureofapowercabinbasedontheimpedancemismatchprinciple.Bycombiningtheacoustic-structuralcouplingmethodandstatisticalenergyanalysis,thefull-bandvibrationandsoundradiationreductioneffectofvibrationisolationmasseslocatedinabasestructurewasresearched.Theinfluenceoftheblockingmass’cross-sectionsizeandshapeparametersandthelayoutlocationofthebaseisolationperformancewasdiscussed.Furthermore,theeffectivenessofrigidvibrationisolationdesignofthebasestructurewasvalidated.Theresultsshowthatthemediumandhighfrequencyvibrationandsoundradiationofapowercabinareeffectivelyreducedbyablockingmass.Concerningweightincrementandsectionrequirement,suitablyincreasingtheblockingmasssizeandsectionheightandreducingsectionwidthcanresultinanefficiency-costratio.
简介:为了开发深海风能资源,研究浮基风电平台在波浪中的响应特性,设计了一种半潜式浮基风电平台。应用ADINA软件,采用边界造波方法、ALE动网格方法以及网格变疏增大数值黏性的消波方法构建了数值波浪水池,对ITTC半潜式平台在规则波作用下动力响应进行了数值模拟,通过与该平台的模型试验数据进行比较,验证了数值模拟方法的准确性。而后对一种新型的浮基风电平台在波浪中的运动进行了数值研究,给出了风电浮基平台在不同水深、不同波高波浪周期情况下横摇、纵摇时程曲线。数值计算结果将有助于了解浮基风电平台塔架顶端的运动、位移和受力,为海上风机系统的设计提供合理的荷载参数。
简介:以重庆沙坪坝铁路枢纽综合改造工程开挖形成的岩质直立边坡为原型,利用FLAC3D软件建立数值计算模型,分析预应力锚板墙边坡支护结构在不同开挖位置的爆破荷载作用下的动力响应特性。在此基础上,讨论锚杆预应力大小、爆破峰值荷载和锚固段长度几种参数对于支护结构受力状态和结构变形的影响。计算结果表明:爆破作用下锚杆轴力增量分布与静力作用下相似,并且锚杆轴力增量和板墙位移都在边坡中部达到最大,而上下位置较小。对比锚杆轴力增量和板墙水平位移增量的数值模拟和理论计算结果,验证了板—锚结构之间存在的变形协调现象。通过各种影响因素的计算结果分析得到了岩质边坡预应力锚板墙支护在爆破作用下的动力变化规律。
简介:以罗尔斯-罗伊斯船舶制造(上海)有限公司设计的世界上首艘5000dwt多用途纯天然气动力滚装船为例,阐述其电气系统的设计及混合推进系统在电力系统设计中发挥的重要作用。同时,介绍该船主推进遥控系统、自动化系统和气体泄漏探测与安全系统的设计。该类型船的成功应用可为相关船型的电气设计提供参考。
简介:Smoothedparticlehydrodynamics(SPH)isaLagrangianmeshlessparticlemethod.Itisoneofthebestmethodforsimulatingviolentfreesurfaceflowsinfluidsandsolvinglargefluiddeformations.Dambreakingisatypicalexampleoftheseproblems.ThebasisofSPHwasreviewed,includingsometechniquesforgoverningequationresolution,suchasthesteppingmethodandtheboundaryhandlingmethod.Thennumericalresultsofadambreakingsimulationwerediscussed,andthebenefitsofconceptslikeartificialviscosityandpositioncorrectionwereanalyzedindetail.Whencomparedwithdambreakingsimulatedbythevolumeoffluid(VOF)method,thewaveprofilegeneratedbySPHhadgoodagreement,butthepressurehadonlyreasonableagreement.Improvingpressureresultsisclearlyanimportantnextstepforresearch.
简介:<正>19–24October2014SingaporeCONFERENCETHEMESTheoverallaimoftheICHDConferenceistoprovideaforumforparticipantsfromaroundtheworldtoreview,discussandpresentthelatestdevelopmentsinthebroaddisciplineofhydrodynamicsandfluidmechanics.ThefirstInternationalConferenceonHydrodynamics(ICHD)wasinitiatedin1994inWuxi,China.Sincethen,9moreICHDconferenceswereheldsubsequentlyinHongKong,Seoul,Yokohama,Tainan,Perth,Ischia,Nantes,ShanghaiandStPetersburg.EvidentlytheICHDconferencehasbecomeanimportanteventamongacademics,
简介:TheReynolds-averagedNavier-Stokes(RANS)method,alongwiththeFluentsoftwarepackage,wasusedtostudythesteadyandunsteadyinteractionofpropellersandrudderswithadditionalthrustfins.Theslidingmeshmodelwasemployedtosimulateunsteadyinteractionsbetweentheblades,therudderandthethrustfins.Basedonthenumericalresults,thepressuredistributiononthepropellerandtheefficiencyofthefinswerecalculatedasafunctionoftheattackangle.TheRANSresultswerecomparedwithresultscalculatedbythepotentialmethod.ItwasfoundthattheresultsforthepotentialmethodandtheRANSmethodhavegoodconsistency,buttheyyieldmaximumefficienciesforthefins,andthuscorrespondingattackangles,thatarenotidentical.
简介:Strongrestrictionsonemissionsfrommarinepowerplants(particularlySOx,NOx)willprobablybeadoptedinthenearfuture.Inthispaper,acombinedsolidoxidefuelcell(SOFC)andsteamturbinefuelledbynaturalgasisproposedasanattractiveoptiontolimittheenvironmentalimpactofthemarinesector.TheanalyzedvariantofthecombinedcycleincludesaSOFCoperatedwithnaturalgasfuelandasteamturbinewithasingle-pressurewasteheatboiler.ThecalculationswereperformedfortwotypesoftubularandplanarSOFCs,eachwithanoutputpowerof18MW.Thispaperincludesadetailedenergyanalysisofthecombinedsystem.Massandenergybalancesareperformednotonlyforthewholeplantbutalsoforeachcomponentinordertoevaluatethethermalefficiencyofthecombinedcycle.Inaddition,theeffectsofusingnaturalgasasafuelonthefuelcellvoltageandperformanceareinvestigated.Ithasbeenfoundthatahighoverallefficiencyapproaching60%maybeachievedwithanoptimumconfigurationusingtheSOFCsystem.Thehybridsystemwouldalsoreduceemissions,fuelconsumption,andimprovethetotalsystemefficiency.