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STRUCTURAL ACOUSTICS OF SEMI-INFINITE SIMPLY SUPPORTED BAFFLED PLATE USING ANALOGY WITH INFINITE PLATE

机译:半无限的结构声学,使用类比与无限板材的模拟支持挡板板

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The acoustic radiation of vibrating plates has received considerable attention in the research literature. There are numerical, experimental as well as analytical solution approaches towards this problem. In the analytical literature, the infinite plate problem using wave propagation techniques has been extensively studied. It turns out that the infinite domain problem, in comparison to the finite domain problem, is easier to solve. Finiteness induces additional reflections into the structure and thus complicates the analytical solution process. In this work, we develop an analytical procedure for determining the sound radiation characteristics of semi-infinite plate (viz. infinite in one direction and finite in the other direction) mounted on a rigid baffle. The end conditions in the finite direction of the plate are taken to be simply-supported. This serves as a model for different applications such as loud speaker design, automotive panels, etc. A harmonic line forcing is applied at the mid-span along the infinite direction. The problem is turned equivalent to an infinite plate subjected to two additional forces and moments arising from the end conditions. While the existence of reaction forces at the simple support is natural, the moments induced at the supports enforce a zero displacement condition beyond the finite extent of the plate. The infinite plate response obtained due to the applied loading with the inclusion of the reaction forces and moments as additional loads is verified to correspond to that of the simply supported beam response. Well-known wave solutions for the acoustic radiation due line forcing and line moments on an infinite plate are then applied to determine the acoustic radiation characteristics for the semi-infinite plate. In particular, we investigate the contrasting aspects of the semi-infinite and infinite plate acoustic radiation characteristics. This is quantified in terms of the two reaction forces and moments.
机译:振动板的声辐射在研究文献中得到了相当大的关注。有数值,实验以及分析解决方案对此问题的方法。在分析文献中,已经广泛研究了使用波传播技术的无限板问题。事实证明,与有限域问题相比,无限域问题更易于解决。有限度会诱导额外的反射到结构中,从而使分析溶液方法复杂化。在这项工作中,我们开发了一种用于确定半无限平板的声辐射特性的分析程序(viz。在一个方向上的无限和另一个方向有限)安装在刚性挡板上。将终端的结束条件置于简单地支撑。这用作不同应用的模型,例如扬声器设计,汽车面板等。谐波管线强制沿着无限方向施加在中间跨度。该问题相当于对最终条件产生的两种额外力和时刻进行的无限平板。虽然在简单的支撑件上存在反作用力是自然的,但是在支撑件处诱导的时刻强制超出了板的有限范围的零位移状态。由于包含作为附加载荷而包含反应力和矩的施加负载而导致的无限板响应被验证以对应于简单地支撑的光束响应的响应。然后施加用于声学辐射到期线的众所周知的波解,并且在无限板上施加线矩阵以确定半无​​限平板的声辐射特性。特别地,我们研究了半无限和无限板声辐射特性的对比方面。这就是两个反作用力和时刻量化。

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