液固耦合内流问题及防晃研究进展
详细信息 本馆镜像全文    |  推荐本文 | | 获取馆网全文
摘要
对液固耦合内流问题以及液体晃动特性的研究在宇航工程中有着十分重要的意义,大型液体运载火箭以及战略弹道导弹中的推进剂与储箱的藕合效应和推进刑的晃动特性对它们的飞行动力稳定性有着很大的影响。为了使导弹和航天运载器具有良好的飞行稳定性,就必须对其内部液体推进剂的晃动加以抑制,避免使液体的晃动与整体结构的固有振动发生耦合,防止结构的固有振动频率和液体的晃动频率落入控制系统的频带之中。本文概述了近年来在液固耦合作用以及在推进剂防晃研究方面所取得的进展。
Researches on properties of the liquid sloshing and coupling effects of the liquid are very important in aeronautics and astronautics engineering.The interaction between the fuel and the tank and the dynamic behavior of the liquid sloshing have much effects on the dynamic stability of the liquid-filled space vehicle and the strategic ballistic missile. The sloshing of the propellant fuel have to be suppressed to avoid the coupling between the liquid sloshing and the structure vibration. The sloshing frequency and the natural frequency of the structures structures must be kept out of the frequency bandwidth of the rocket control systems. In this paper the developments achieved in the fields of liquid-solid coupling and slosh suppression are presented.
引文
1ZienkiewiczandPBettess.Fluid-structuredynamicinteractionandwaveforce.Anintroductiontonumericaltreatment.IntJNumMethEng,1978;13:1-162GBrewer.ThecollapsofMonoplaneWings.Fight19133FWLanchester.Torsionalvibrationofthetailofanaeroplane.ARCR&M276Part1,19164JKrishnaandAR,Chandrasekaran,AnalysisofKoynaAccelerogramofDecember1967;11:BullSeism.Soc.Am,1969;59(4):1719-17315沈崇刚等.新丰江水库地震及其对大坝的影响.中国科学,1974;2:184-2056RdHanson,Bechaviourofliquid-storagetanks.TheGreatAlaskeEathquakeof1964(Eng.section).NationalAcademyofSciences.Washington,DC1964;345-3547Tanaks,Yasuo.Shellstructuresandtanks.Bulletinofscienceandengineering.ResearchLab.34,SpeciallssueonNiigartaEarthquake,WasedaUniversity,March1966;212-211966;212-2148郭骅.美国储液地震反应的研究概况.地震工程与工程振动,1983;3(1)9中国石化总公司抗震办公室.圆柱形储液抗震文集,地震出版社,198610项忠权,李清林.立式储罐抗震.地震出版社。1990;711LMHoskinsandLSJacobsen,Waterpressureinatankcausedbyasimulatedearthquake,BulletinoftheSeismologicalSocietyofAmerica,1934;24:1-3412LSJacobsen,lmpulsivehydrodynamicsoffluidinsideacylindricaltankandofafluidsurroundingacylindricalpier.BulletinoftheSeismologicalSocietyofAmerica1949;39:189-20413LSJacobsenandRSAyre,Hydrodynamicexperimentswithrigidcylindricaltankssubjectedtotransientmotions.BulletinofSeismologicalSocietyofAmerica1951;41:313-34714GWHousner,Dynamicpresssuresonacceleratedfluidcontainers,BulletinoftheSeism.SocAm1957;47(1):15-3515GWHousner,Thedynamicbehaviourofwaterlarks.BulletinoftheSeism.SocAm,1963;53(1):381-38716Anon.WeldedsteeltanksforoilstorageAPIstandard650,6thEdition,Revision3.AmericanPetroleumlnstitute,Washington,DC,1979;1017Anon.Weldedsteeltanksforwaterstorage.AWWAstandardD100-97.AmericanWaterWorksAssocication,Denver,Colorado,197918CCarrettaetal,Simultaneousresolutionofaerodynamicandaeroelasticequationsofmotionfortransonictwodimensionalairfoils,proc.Int.confonNumericalMethodsforCoupledProblems,1981;304-31219何力,周盛.一种能反映气动,结构相互作用的叶片失速颤振计算模型.力学学报,1985;5:在491-49720USLindholmetal,Elasticvibrationcharacteristiesofcantileverplatesinwater.JShipReserach,1965:9(1):11-2221OCZienkiewiczandRENewton,Coupledvibrationsinastructuresubmergedinacompressiblefluid,Int.Sym.onFiniteElementTechniques,Stuttgart.196922SMMelvyn,Afiniteelementmethodappliedtosubmergedplates,.JShipResearch,1978:22(2):94-9923SKSharanandGMLGlandwell,AGeneralmethodforthedynamicresponseanalysisoffluid-structuresystems.Computers&Structures.1985;22(5):937-94324SWalker,Boundaryelementinfluid-stucturalinteractionproblemsrotationalshells,ApplMethModeling,1980;4:345-35025TACruse,Recentadvanceinboundaryelementanalysismithods,CompMethApplMeth&Eng,1987:62(3):227-24926HWEdwards,Aprodureforthedynamicanalysisofthinwalledcylindricalliquidstoragetankssubjectedtolateralgroundmotion,PhDDissertation,UniversityofMichigan,Arbor,Michigan,196927SHSaabanandWANash,Finiteelementanalysisofaseismicallyexcitedcylindricalstoragetankgroundsupportedandpartiallyfilledwithliquid,UniversityofMassachusetts,ReportNGI38644-3.Amherst,Massachusetts.197628SCLeeandWA.Nash,Seismicbehaviourofcylindricalliquidstoragetanksreinforcedbycircumferenticalrings.1983Int.Symp.LifelineEarthq.Eng4thNat.CongressPress.Ves.Pip.Tech,Portland,Oregon,1983;86-9329WANash.Responceofliquidstoragetankstoseismicmotion.WTKeiterandGKMikhailow.Eds.Theoryofshells.North-HolandPullishingCompany,1980;393-40330LWatawalaandWANash,Inferenceofinitialgeometricimperfectionsonvibrationsofthincircularshells.UniversityofMessachusettesTech.ReporttoNSF.GrantCE76-14833,Amherst,MassachusettsMay,198231HDaysalandWANash.Soil-structureinteractioneffectsontheresponseofcylindricaltankstobaseexcitation.DepartmentofCivilEngineering.UniversityofMassachusetts.Tech.reporttoNSF.GrantCEE76-14833,Amberst,Massachusetts,March,198232ASVeletsos.Seismiceffectsinflexibleliquidstoragetanks.Proceedings5thWorldConferenceonEarthquakeEngineering.Rome,Italy,1974;630-63933ASVeletsosandJYYang.Dynamicsoffixed-baseliquidstoragetanks.USJapanSeminarforEarthEng.Res,withEmphasisonLifelinesystems,Tokyo,Japan,November,197634JWMiles.Onthesloshingofliquidinflexibletank,JAppliedMech,1985;25:277-28335EPSdrensenandPVMarcal,Asolidmechachanicsapproachtothesolutionoffluid-solidvibrationproblembyFEM36PBGoncalvesandRCBatista,Frequencyresponseofcylindricalshellsparticallysubmergedorfilledwithliquid.JSound&Vib,1987;(1)11737LKiefingGC.Feng,Fluid-structurefiniteelementvibrational.AIAA,1976;14(2):199-20338MAHamdiandOusset,Adisplacementfortheanalysisofvibrationsofcoupledfluid-structuresystem.Int.Num.MethEng,1978;13(1):139-15039SS.Deshpandeetal,Dynamicanalysisofcoupledfluid-structureinteractionproblems.Proc.IntConf.onNumericalMethodforcoupledProblems,1981:367-37840HMorandROhayon.Substructurevariationalanalysisofthevibrationofcoupledfluid-structuresystems.flniteelementresults,lnt.JNum.MethEng,1979;14(5):741-75541WJT.Daniel,Modalmethodsinfiniteelementfluid-structureeigenvalueprobelems.IntJNumMethEng,1980;15(8):1161-117542吴兴世.贮液容器水动弹性分析的伽辽金有限元-自由界面模态综合方法.固体力学学报,1984;2:205-21943YMChiang,Semi-analyticalfiniteelementmethodforseismicanalysisofLMFBRstructure,MSthesis,NorthwestenUniversity,EvanstonIllinois,198444曹志远,张佑启.结构与内流体相互作用的半解析方法.应用数学与力学,1985;6(1)45曹志远,瞿桐.结构-内部流体耦合振动的半解析元方法.地震出版社,198646曹志远,瞿桐.弹性壳体与流体耦合振动的组合单元.振动与冲击,1987;147王翎羽.联合半解析法与动力子结构法求解储液罐的自振特性.工程力学(下册),199248TBalendraetal,Freevibrationanalysisofcylindricalliquidstoragetanks.lntJMechSci.1982;24(1):47-5949梁波.弹性贮液圆柱壳的动力特性分析.国防科技大学学报,1990:12(2)50柱庆华等.流固耦合振动问题的某些工程处理方法.固体力学学报,1989:9(1)51宋冬.弹性容器内液体晃动的有限元方法,强度与环境,199252张升明,吴士冲.贮液器水弹性分析与试验研究.江苏力学,1989:553孙淑荃等.油液晃动及箱体耦联振动计算方法研究.航空学报,1990:11(5)54邢京堂.流固耦合振动分析的有限元与子结构-子区域方法的研究.固体力学学报,1986:455邢京堂.流固耦合振动分析的位移协调型模态综合法.航空学报,1986;7(21:456诸德超,邢京堂,王一民.贮箱液固耦合振动分析的数值研究.航空学报,1990:11(11)57陆金森,RW克劳夫.流体一结构相互作用的杂交子结构法.振动与冲击,198258王一民.弹性机身结构空腔流固耦合分析及FSLAP91软件介绍.(北京)首届航空声学会议59邢京堂.线性流固耦合动力分析程序FSIAP92简介,航空航天部第七届结构动力学学术会议论文。航空学报,1992:13(9)60HFBauer.Fluidoscillationinthecontainersofaspaceandtheirinfluenceonstability.NASATR-R-187,196461HNAbramson.Thedynamicofliquidinmovingcontainers.NASAsp-106,196662米基谢夫.宇宙飞行器动力学实验法.强度与环境编辑部,198063CDClank,Naturalfrequencyinvestigationforpropellantinquartertankconfiguration.ABMARep,DA-TN-86-59,195964HFBauer.Themomentofinertiaofaliquidinacircularcylindiccltank.ABMARep,DA-TN-86-5965HFBauer.Freeandforcedoscillationincircularcylindricalringsectortanks,ABMA,1960,NASATND-55766BBudianshy.Sloshingofliquidincircularcanalsandsphericaltanks.JAerospaceScience,1960;27(3)163-173.67JLMcCarty,andDGStephens.Investigationofthenaturalfrequenciesoffluidsinsphericalandcylindricaltank.NASATND-252,196068LWErrlich,JDRiley.Finite-differencetechiqueforaboundaryproblemwithaneigenvalueinaboundarycondition.JSocindustrApplMech,1961;9(1):149-16469MAslam.Finiteelementanalysisofearthquake-inducedsloshinginaxisymnetrictanks.JNum,MethEngin,1981;17:159-17070柯列斯尼可夫,BH苏霍夫.作为自动控制对象的弹性飞行器.(北京)国防工业出版社,197971王照林.运动稳定性及其应用,工程力学丛书.高等教育出版社,199072HFBauer.Theoryofliquidsloshingincompartmentedcylindricaltankduetobendingexcitation.AIAAJournal,July,196373赵人濂.液体火箭推进剂晃动特性的结构控制,宇航学报,1984;174赵人濂.液体作用于贮箱分隔板上的载荷.强度与环境,1989;375方良玉.液体在具有下凹共底贮箱内的晃动特性试验研究.强度与环境,198376方良玉.液体晃动试验研究及其在型号研制中的应用.强度与环境,1988;577JWMiles.Ringdampingoffreesurfaceoscillationsinacirculartand.JAppl.Mech,1958;25(2)78Sliveria,DGStephens,andHWLeonard.Anexperimentalinvestigationofthedampingofliquidoscillationincylindricaltankswithvarious,NASATND-71579HAColeandBJGambucci.Measuredtwo-dimensionaldampingeffectivenessoffuel-sloshingbafflesappliedtoringbaffleincylindricaltank,NASATND-69480HNAbramsonandLRGarza.Somemeasurementsoftheeffectsofringbafflesincylindricaltanks.AIAAJSpacecraftRoket,1964;1(5)81夏益霖,许婉丽,火箭液体推进剂防晃实验研究,强度与环境,1988;682ACHenryJr,andJGBruno.Jestsofanasymmetricalbaffleforfuelsloshingsuppression.NASATND-103683LRGarza.Abriefcomparisonofringandasymmetricalbafflecharacteristic.NASACR-51373,196384郁时炼,同科建.半圆形挡板的防晃特性计算.强度与环境,1991;385方良玉.圆环形挡板的液体晃动阻尼效果和优化设计探讨.强度与环境,1991;486方良玉.非对称布置的半圆形挡板阻尼效果的实验研究.强度与环境,1989;187梁波,周科建.贮箱内刚性和柔性防晃板的实验研究.宇航学报,1993;7(3)88方良玉.半圆形挡板的液体晃动阻尼效应实验研究.导弹与航天运载技术,1993;489夏益霖.液体晃动试验的数据处理方法.导弹与航天运载技术,1993;390DGStephens.Flexiblebafflesforsloshdamping,JSpacecraft,1966;3(2)91DGStephensandHFScholl,Effectivenessofflexibleandrigidbafflesfordampingliquidoscillationsinlarge-scalecylindrical,NASATND-387892梁波,周科建.有柔性防晃板时贮液圆柱壳内液体晃动研究.强度与环境,1992;2

版权所有:© 2023 中国地质图书馆 中国地质调查局地学文献中心