已閱讀5頁,還剩1頁未讀, 繼續(xù)免費閱讀
版權(quán)說明:本文檔由用戶提供并上傳,收益歸屬內(nèi)容提供方,若內(nèi)容存在侵權(quán),請進行舉報或認領(lǐng)
文檔簡介
Renetal./JZhejiangUnivSciA20089(1):26-3126Dynamicresponseanalysisofamooredcrane-shipwithaflexibleboom*Hui-liREN,Xue-linWANG,Yu-jinHU,Cheng-gangLI(SchoolofMechanicalScienceandEngineering,HuazhongUniversityofScienceandTechnology,Wuhan430074,China)E-mail:;w_ReceivedJune12,2007;revisionacceptedAug.5,2007;publishedonlineDec.14,2007Abstract:Thedynamicresponseofmooredcrane-shipisstudied.Governingequationsforthedynamicresponseofacrane-shipcoupledwiththependulummotionofthepayloadarederivedbasedonLagrangesequations.Theboomismodeledbasedonfiniteelementmethod,whilethepayloadismodeledasaplanarpendulumofpointmass.Thedynamicresponsewasstudiedusingnumericalmethod.Thecalculationresultsshowthatthelarge-amplituderesponsesoccuratwaveperiodsnearthenaturalperiodofthepayload.Loadswingangleissmallerforcrane-shipwithflexibleboom,incomparisonwithrigidboom.Theshipsurgemo-tionshavelargevibrationsforcrane-shipwithflexibleboom,whichwerenotobservedforarigidboom.Theanalysisidentifiesthesignificanceofkeyparametersandrevealshowthesystemdesigncanbeadjustedtoavoidcriticalconditions.Keywords:Dynamicresponse,Mooredcrane-ship,Finiteelementmethod,Rigid-flexiblecouplingdynamicmodeldoi:10.1631/jzus.A071308Documentcode:ACLCnumber:U615.35INTRODUCTIONFloatingcranesplayanimportantroleintheoffshoreprojects.However,theseawaveshakesthecrane-shipandmayexciteitslargemovement.Forheavydutylifting,theoperationsofcrane-shipinwaves,evenastheseaisrelativelyquiet,areoftenrestrictedbytheexcessivemotionsofthecraneload.Insomecases,thedynamicalbehavioroffloatingcranesistobeconsideredascriticalwithrespecttotheamplitudesofthemotionoftheshiportheload.Asmalldisturbanceofthesystemcancausethecolli-sionbetweentheloadandtheshiporotherobjects.Inaddition,theamplitudeofthemotionoftheshiphastostaysmallinordertoachievetherequiredpreciselypositioningandtoavoiddamagestothemooringsystem.Theinvestigationofcrane-shipdynamicshasbeenofinterestinalargenumberofrecentresearches(DongandHan,1993;Masoudetal.,2004;Eller-mann,2005).Arigidmasslesscableandmassivepointloadwereusedtomodelthecraneloadsystem,andtheresultsofthecomputersimulationwereveri-fiedexperimentallyusingathreedegree-of-freedom(DOF)ship-motionsimulationplatform(Henryetal.,2001).Themethodofmultiplescalesisusedtoana-lyzethedynamicsofacable-suspendedload.Theresultsshowthataparametricexcitationattwicethenaturalfrequencyleadstosuddenjumpsinthere-sponseasthecableisunreeled(Chinetal.,2001).Cargopendulationcontrolofanelasticship-mountedcranewasconcernedusingtheMarylandRiggingsystem.Thedynamicsofthecraneisdescribedbyamulti-modelproblemdependingonthecurrentcablelengthandboomluffangle.Avariable-gainobserverandavariable-gaincontrolleraredesigned.Simula-tionandexperimentalresultsshowedthattheex-pressedcontrolstrategyhasasignificanteffectonsuppressingthevibrationsfordifferentoperatingconditionsandpayloadmasses(Al-SweitiandSf-fker,2007).Asthefirstapproachforevaluatingthedynam-JournalofZhejiangUniversitySCIENCEAISSN1673-565X(Print);ISSN1862-1775(Online)/jzus;E-mail:Correspondingauthor*ProjectsupportedbytheNationalNaturalScienceFoundationofChina(No.50675077)andtheResearchFundfortheDoctoralProgramofHigherEducationofChina(No.20050487047)Renetal./JZhejiangUnivSciA20089(1):26-3127icsofacrane-ship,alineartheoreticalmodelisused.Thelineardifferentialequationofmotionisderivedundertheassumptionofsmallamplitudes,anddoesnotconsideroccurringrestoringforces.Adynamicmodelwasestablishedusingmulti-bodydynamicsmethodsandthedynamicsofthecranewasanalyzed(Chenetal.,2002).Theeffectsofcablereelingandunreelingoncargopendulationswerestudiedwiththeboomcranemodeledasaplanarpendulumandtheshipasarigidbody.Theresultsshownonlinearbe-havior(Kraletal.,1996).Inalmostallofthesestudies,theflexibilityoftheboomisnottakenintoconsideration.Thismaybereasonableforshortcraneboomsandsmallpay-load-to-shipmassratios,butforlongcraneboomsandlargepayload-to-shipmassratios,theinfluenceoftheflexibilityofthecraneboomcannotbeignoredanymore.Totheauthorsbestknowledge,untilrecentlythereisnoreportonthemodelingofsuchsystem.Thestudyaimstopresentarigid-flexiblecouplingdy-namicmodelforthepredictionofthedynamicsofamooredcrane-shipanditspayload.Thepredictionisthefoundationofthedynamicaldesignandanaccu-rateresidualworkinglifeassessment.Itisalsoabasisforthecontrolofthevibrationsofthesystem.MODELDESCRIPTIONTheschematicsystemunderinvestigationisshowninFig.1.Whendimensionsandelasticprop-ertiesofthecrane-shipbodyareconsidered,itissuf-ficienttotakeonlytheboomasflexible.Thefol-lowingassumptionsareusedintheanalysisofthecrane-ship:(1)Themotionisonlyintheverticalplane.Theloadisregardedasapointmass,andcanhavepen-dulummotionintheplane,butwithouttwisting.(2)Theropeistakenasarigidrod.Thisas-sumptionisvalidaslongastheoscillationsoftheloadintheverticaldirectionaresmallandtheroperemainsintension.(3)Thestructuraldampingofthesystemisnottakenintoaccount,becausecranesaretypicallylightlydamped.Toddetal.(1997)reportedthatthedampingofashipmountedcraneisfrom0.1%to0.5%ofthecriticaldamping.AsdepictedinFig.1,acoordinatesystemOXYisfixedtothegroundanddenotedas“Earth-Fixed”,whichistakentobetheinertialframeofreference.TheothersystemO0X0Y0isfixedtoand,hence,moveswiththeship,whichisdenotedas“Body-Fixed”.Jistherotaryinertiaoftheship,mshipandmparethemassesoftheshipandload,respectively.TheelasticdisplacementsoftheboomtippointBaredenotedasuandw.ThecriticalparametersincludingtheboomlengthLb,theluffangleoftheboom,thelengthoftheropeL,thedisplacementinsurgedirec-tionx,thepitchangle,theheavemotionyandtheswingangleoftheloadarealsoindicatedinFig.1.MATHEMATICALMODELExternalforcesactingonthecrane-shipInthemodel,differentexternalforceshavetobeconsidered(Ellermannetal.,2002),thehydrostaticforceTbwwshippm0,(),gAymmgh=+f(1)withthedensityofwaterw,thecross-sectionalareaoftheshipatthestillwaterlevelAwandthemeta-centricheighthm.Themooringlineforces,whichareapproxi-matedbyathirdorderpolynomial3Tm123|,00,cxcxxcx=f(2)wherec1,c2,c3arethelinear,quadratic,andcubiccharacteristiccoefficientsofthemooringsystem.ForcesduetoviscousdragTdwd|/2,0,0cWTxx=f(3)X0Y0O0YOuwPBLLbXFig.1Mooredcrane-shipmodelRenetal./JZhejiangUnivSciA20089(1):26-3128areproportionaltothedensityofwaterw,theem-piricaldragcoefficientcd,thewidthoftheshipWandthedraughtT.Thefrequency-dependentwaveexcitationforces,whichcanbesplitintoaperiodicallychangingpartandtheconstantdriftforces,canbemodeledas:2ridwriri(cos()sin()(cos()sin(),(cos()sin()xxyyAktktApAktktAktkt+=f(4)withthewaveamplitudeA,therealandimaginarypartsofthefrequencydependentcoefficientkrjandkij(j=x,y,),andthecoefficientofthedriftforcepd.TheforcesareabbreviatedbyT123bmdw,.FFF=+Fffff(5)Dynamicequationofcrane-shipThepositionvectorofpayloadPasshowninFig.1canbeexpressedasp(cos()sin)(sin()cos),jjxLuLyLwL=+rij(6)whereiandjareunitvectorsalongtheX-andY-axes,respectively.Itcanbeseenthat,byincludingtheboomtipdisplacementuandw,theeffectoftheelasticdeformationoftheboomisincludedinthepositionequationofthepayload.Itisassumedthattheluffangleoftheboomandthelengthofthepayloadpendulumareconstant.BasedonEq.(6),thevelocityvectorofthepayloadPcanbeobtainedbythetimederivativeofrpaspbb(sin()cos)(cos()sin).xuLLywLL=+Vij(7)Sothekineticenergyofthepayloadcanthenbederivedaspppp222222p22b/2222cos2sin2cos2sin2sin()bTmmxuywLxuywxLyLuLwLLxL=+VVbbb2sin()2sin()cos2cos()2cos()2cos()sin/2.(8)uLLLyLwLLL+Thepotentialenergyofthepayloadppb(sin()cos).UmgyLwL=+(9)Thekineticenergyandthepotentialenergyoftheshipcanberespectivelyexpressedas222shipship()/,TJmxy=+(10)shipship.Umgy=(11)Basedonthefiniteelementdiscretization,thekineticandpotentialenergyofboomcanberespec-tivelyexpressedasTrrrrurwrTbuwrwuww11,22Tumuwmmw=UMMMUUMUMM(12)TrrrrurwrTbuwrwuww11=,22UukuwkkwUKKKUUKUKK(13)whereMandKareglobalmassandstiffnessmatricesoftheboom,UandUaredisplacementandvelocityvectorsoftheflexibleboom;(,)uwand(,)uwarethenodaldisplacementandvelocitiesoftheboomtippointB.UrandrUarevectorsofdisplacementsandvelocitiesfortherestdegreesoffreedomoftheboomstructure.TheLagrangianfunctionofthesystemcanbeexpressedasTrrrrurwr2uruuuwwrwuww22222222shipp22bb11()/2222cos2sin2cos2sin2LTUummuJwmwmxymxuywLxuywxLyLuLwLLxL=+UMMMUMMbsin()2sin(uL+Renetal./JZhejiangUnivSciA20089(1):26-3129bbTrrrrurwruruuuwshipwrwuwwpb)2sin()cos2cos()2cos()2cos()sin/212(sin()cos).(14)LLyLwLLLukkumgywkwmgyLwL+UKKKUKKTheLagrangesequationisd,djjjLLQtqq=(15)whereqjandjqaregeneralcoordinatesandgeneralvelocitiesofthesystem.Qjisgeneralforceofthesystem.SubstitutingEqs.(5)and(14)intoEq.(15)givesrrpp2pb2b2p2bb00(sinsin()cos()cos)sinoscos()sin()muumwwmLLLxLmgyLLLL+=+UUMK000000,(16)2shippppp2bb1()cossinsin()cos(),(17)mmxmumLmLLLF+=2shippppp2shippbb2()sincos()cos()sin(),mmymwmLmLmmgLLF+=(18)pbb22pb3(sin()sin()sin()cossin()sincos()cos()cos()sincos()cos)cos(),JmLLxuLLywLLmgF+=(19)b2bb2bcossincossinsin()coscos()coscos()sinsin()sinsin0.(20)LxyuwLLLLg+=Asinseveralotherinvestigations,theattentionisfocusedonthehorizontalsurgemotion.Inthisspecialcase,equationsofmotionofthesystemcanbere-ducedtorrpp2p2p00(sincos),(2
溫馨提示
- 1. 本站所有資源如無特殊說明,都需要本地電腦安裝OFFICE2007和PDF閱讀器。圖紙軟件為CAD,CAXA,PROE,UG,SolidWorks等.壓縮文件請下載最新的WinRAR軟件解壓。
- 2. 本站的文檔不包含任何第三方提供的附件圖紙等,如果需要附件,請聯(lián)系上傳者。文件的所有權(quán)益歸上傳用戶所有。
- 3. 本站RAR壓縮包中若帶圖紙,網(wǎng)頁內(nèi)容里面會有圖紙預覽,若沒有圖紙預覽就沒有圖紙。
- 4. 未經(jīng)權(quán)益所有人同意不得將文件中的內(nèi)容挪作商業(yè)或盈利用途。
- 5. 人人文庫網(wǎng)僅提供信息存儲空間,僅對用戶上傳內(nèi)容的表現(xiàn)方式做保護處理,對用戶上傳分享的文檔內(nèi)容本身不做任何修改或編輯,并不能對任何下載內(nèi)容負責。
- 6. 下載文件中如有侵權(quán)或不適當內(nèi)容,請與我們聯(lián)系,我們立即糾正。
- 7. 本站不保證下載資源的準確性、安全性和完整性, 同時也不承擔用戶因使用這些下載資源對自己和他人造成任何形式的傷害或損失。
最新文檔
- 2025債權(quán)人轉(zhuǎn)讓債權(quán)確定原保證合同效力
- 二零二五年度老舊小區(qū)改造房屋出售與租賃合同4篇
- 2025年度智能家電買賣合同中產(chǎn)品品質(zhì)保障及質(zhì)量爭議處理協(xié)議4篇
- 二零二五年度旅游項目承包經(jīng)營協(xié)議書4篇
- 門德爾松《無詞歌》Op.102創(chuàng)作特征及演奏分析
- 二零二五年度木門安裝與售后服務合同規(guī)范范本3篇
- 二零二五年度儲油罐智能控制系統(tǒng)采購協(xié)議4篇
- 2025裝飾裝修工程程施工合同范
- 2025年度地下綜合交通樞紐車位使用權(quán)出讓合同4篇
- 2025年度大蒜精油產(chǎn)品包裝與設(shè)計合作合同樣本4篇
- 我的家鄉(xiāng)瓊海
- (2025)專業(yè)技術(shù)人員繼續(xù)教育公需課題庫(附含答案)
- 《互聯(lián)網(wǎng)現(xiàn)狀和發(fā)展》課件
- 【MOOC】計算機組成原理-電子科技大學 中國大學慕課MOOC答案
- 2024年上海健康醫(yī)學院單招職業(yè)適應性測試題庫及答案解析
- 2024年湖北省武漢市中考語文適應性試卷
- 非新生兒破傷風診療規(guī)范(2024年版)解讀
- EDIFIER漫步者S880使用說明書
- 皮膚惡性黑色素瘤-疾病研究白皮書
- 從心理學看現(xiàn)代家庭教育課件
- C語言程序設(shè)計PPT(第7版)高職完整全套教學課件
評論
0/150
提交評論