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Power flow transmission influenced by vibration source impedance for a compound system
引用本文:XIONG Yeping, SONG Konajie and HUO Rui(Institute of Engineerng Mechanics,Shandong Univerity of Technology Jinan 250061). Power flow transmission influenced by vibration source impedance for a compound system[J]. 声学学报:英文版, 1996, 0(4)
作者姓名:XIONG Yeping   SONG Konajie and HUO Rui(Institute of Engineerng Mechanics  Shandong Univerity of Technology Jinan 250061)
作者单位:Institute of Engineerng Mechanics,Shandong Univerity of Technology Jinan 250061
摘    要:I.IntroductionVeryofteninengineeringpracticemachinesareusuallyinstalledonflexiblestructures.Buildingfloors,shipdecks,aircraftfuselages,carortrainChassisarebutafewexamplesthatfallintothiscategory.Themachinetransmitsvibrationtothereceivingstructureandresultsinstructure-bornesoundtransmission.Especiallywhenaheaviermachinerunningathighspeedismoulltedonaflekib1efoundation,thesourceandthereceiverwillpresentsimilardynamiccharacteristicsattheirinterface.Asaresult,theconventionalanalysiscannotbeappli…


Power flow transmission influenced by vibration source impedance for a compound system
XIONG Yeping, SONG Konajie and HUO Rui. Power flow transmission influenced by vibration source impedance for a compound system[J]. Chinese Journal of Acoustics, 1996, 0(4)
Authors:XIONG Yeping   SONG Konajie  HUO Rui
Abstract:In this paper we present the effect of vibration source on the power flow transmission in a compound flexible system. Considering the internal impedance of the source, a general model is here proposed, and the generalized transfer equations of the system and the closed form solutions for power flow in the fiexible system are then developed, with which the effects of the source characteristics on power flow transmission are discussed. The investigation shows that when the source and receiver impedances are comparable, substantial error can occur in the power flow estimation if the source is assumed to be an ideal constant force source (CFS)or a constant velocity source (CVS).
Keywords:Vibration source   Power flow   Flexible foundation
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