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首页> 外文期刊>Journal of Engineering and Technological Sciences >Surface Vibration Reconstruction using Inverse Numerical Acoustics
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Surface Vibration Reconstruction using Inverse Numerical Acoustics

机译:利用逆数值声学重建表面振动

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This paper explores the use of inverse numerical acoustics to reconstruct the surface vibration of a noise source. Inverse numerical acoustics is mainly used for source identification. This approach uses the measured sound pressure at a set of field points and the Helmholtz integral equation to reconstruct the normal surface velocity. The number of sound pressure measurements is considerably less than the number of surface vibration nodes. An overview of inverse numerical acoustics is presented and compared with other holography techniques such as nearfield acoustical holography and the Helmholtz equation least squares method. In order to obtain an acceptable reproduction of the surface vibration, several critical factors such as the field point selection and the effect of experimental errors have to be handled properly. Other practical considerations such as the use of few measured velocities and regularization techniques will also be presented. Examples will include a diesel engine, a transmission housing and an engine cover.
机译:本文探讨了使用逆数值声学重构噪声源的表面振动的方法。逆数值声学主要用于源识别。该方法使用在一组场点处测得的声压和亥姆霍兹积分方程来重建法向表面速度。声压测量的数量大大少于表面振动节点的数量。提出了反数值声学的概述,并将其与其他全息技术(例如近场声学全息术和Helmholtz方程最小二乘法)进行了比较。为了获得可接受的表面振动再现,必须正确处理几个关键因素,例如场点选择和实验误差的影响。其他实际的考虑因素,例如使用少数测得的速度和正则化技术也将被介绍。示例将包括柴油发动机,变速器壳体和发动机盖。

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