首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.4 pt.B: Fluid-Structure Interaction >COUPLING BETWEEN ACOUSTIC RESONANCE AND FLUIDELASTIC INSTABILITY IN NORMAL TRIANGULAR TUBE ARRAYS
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COUPLING BETWEEN ACOUSTIC RESONANCE AND FLUIDELASTIC INSTABILITY IN NORMAL TRIANGULAR TUBE ARRAYS

机译:正常三角形管阵列中声共振与流变弹性不稳定性之间的耦合

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This paper reports on the interaction between fluidelastic instability (FEI) and acoustic resonance. In order to examine the interaction, the duct acoustics were excited with speakers placed adjacent to the tube array to artificially replicate flow-induced acoustic resonance. While the current study has clearly captured the phenomenon of interaction between the fluidelastic motion at ~10Hz and the acoustic field at ~ 1kHz, it is not apparent what the physical mechanism at work might be. The paper details the effect on RMS level of tube vibration for three independent parameters: flow velocity, structural damping and acoustic power. The results presented show that there is a corresponding fall in the FEI vibration amplitude with increasing sound pressure level in the tube array. In addition, the effects of flow velocity and structural damping in conjunction with forced acoustics on the RMS of tube displacement are discussed.
机译:本文报道了流体弹性不稳定性(FEI)和声共振之间的相互作用。为了检查相互作用,使用与管阵列相邻放置的扬声器来激发管道声学,以人为地复制流动引起的声学共振。尽管当前的研究已经清楚地捕捉到了〜10Hz的流体弹性运动与〜1kHz的声场之间相互作用的现象,但尚不清楚工作的物理机理是什么。本文详细介绍了三个独立参数对管振动RMS级别的影响:流速,结构阻尼和声功率。给出的结果表明,随着管阵列中声压级的增加,FEI振动幅度相应降低。此外,还讨论了流速和结构阻尼以及强制声学对管位移RMS的影响。

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