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A finite element model for wave propagation in an inhomogeneous material including experimental validation

机译:包括实验验证在内的非均质材料中波传播的有限元模型

摘要

A finite element model was developed to solve for the acoustic pressure field in a nonhomogeneous region. The derivations from the governing equations assumed that the material properties could vary with position resulting in a nonhomogeneous variable property two-dimensional wave equation. This eliminated the necessity of finding the boundary conditions between the different materials. For a two media region consisting of part air (in the duct) and part bulk absorber (in the wall), a model was used to describe the bulk absorber properties in two directions. An experiment to verify the numerical theory was conducted in a rectangular duct with no flow and absorbing material mounted on one wall. Changes in the sound field, consisting of planar waves was measured on the wall opposite the absorbing material. As a function of distance along the duct, fairly good agreement was found in the standing wave pattern upstream of the absorber and in the decay of pressure level opposite the absorber.
机译:建立了有限元模型来求解非均匀区域的声压场。从控制方程推导得出,材料特性可能随位置而变化,从而导致非均匀可变特性二维波动方程。这消除了寻找不同材料之间边界条件的必要性。对于由部分空气(在管道中)和部分体吸收器(在壁中)组成的两个介质区域,使用模型来描述两个方向的体吸收器特性。在矩形管中进行了验证数值理论的实验,该矩形管中没有流动并且吸收材料安装在一个壁上。在与吸收材料相对的壁上测量了由平面波组成的声场的变化。作为沿着管道的距离的函数,在吸收器上游的驻波模式和与吸收器相对的压力水平的衰减中发现了相当好的一致性。

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