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Acoustic signature prediction of a combat vehicle using finite and boundary element methods

机译:有限元和边界元法预测战车的声学特征

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Abstract: The acoustic signature, i.e., the tonal peaks of the radiated noise spectrum, is important to the detectability and survivability of a ground combat vehicle. In the low frequency range below 200 Hz, the structure-borne noise radiation of the vehicle caused by excitation from its track and suspension, can be simulated by numerical models. The numerical simulation provides useful guidance to minimize the detectability through design modifications and countermeasures. A full vehicle finite-element structural model of the M1 Abrams tank was built with approximately 7,000 elements. The dynamic modal frequency response was computed using MSC/NASTRAN$+TM$/ with simulated force/moment input from the track and suspension. The output surface vibration velocities were then mapped on to an acoustic boundary-element model with coarser mesh of approximately 2,000 elements. The radiated far-field acoustic pressure was then computed on a 30 meter radius hemisphere using COMET/Acoustics$+TM$/. The numerical results were able to predict the unique fundamental tonal frequencies and some of their amplitudes for different vehicle speeds with reasonable correlation to the test data.!7
机译:摘要:声学特征,即辐射噪声频谱的音调峰值,对地面战斗车辆的可探测性和生存能力很重要。在低于200 Hz的低频范围内,可以通过数值模型来模拟由车辆的履带和悬架引起的结构声噪声辐射。数值模拟为通过设计修改和对策将可检测性降至最低提供了有用的指导。建立了M1艾布拉姆斯坦克的整车有限元结构模型,其中包含约7,000个元素。动态模态频率响应是使用MSC / NASTRAN $ + TM $ /并从轨道和悬架输入模拟的力/力矩来计算的。然后将输出表面振动速度映射到具有大约2,000个元素的较粗网格的声学边界元模型。然后使用COMET / Acoustics $ + TM $ /在半径30米的半球上计算辐射的远场声压。数值结果能够预测不同车速下独特的基本音调频率及其某些振幅,并且与测试数据具有合理的相关性!7

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