Department of Engineering, University of Cambridge, Trumpington Street, Cambridge CB5 8HU, United Kingdom.
J Acoust Soc Am. 2010 Apr;127(4):2118-28. doi: 10.1121/1.3314254.
Large sections of many types of engineering construction can be considered to constitute a two-dimensional periodic structure, with examples ranging from an orthogonally stiffened shell to a honeycomb sandwich panel. In this paper, a method is presented for computing the boundary (or edge) impedance of a semi-infinite two-dimensional periodic structure, a quantity which is referred to as the direct field boundary impedance matrix. This terminology arises from the fact that none of the waves generated at the boundary (the direct field) are reflected back to the boundary in a semi-infinite system. The direct field impedance matrix can be used to calculate elastic wave transmission coefficients, and also to calculate the coupling loss factors (CLFs), which are required by the statistical energy analysis (SEA) approach to predicting high frequency vibration levels in built-up systems. The calculation of the relevant CLFs enables a two-dimensional periodic region of a structure to be modeled very efficiently as a single subsystem within SEA, and also within related methods, such as a recently developed hybrid approach, which couples the finite element method with SEA. The analysis is illustrated by various numerical examples involving stiffened plate structures.
许多类型的工程结构的大部分都可以被视为二维周期性结构,例如正交加筋壳和蜂窝夹层板。本文提出了一种计算半无限二维周期性结构边界(或边缘)阻抗的方法,该量被称为直接场边界阻抗矩阵。这种术语源于这样一个事实,即在半无限系统中,边界(直接场)处产生的波不会反射回边界。直接场阻抗矩阵可用于计算弹性波透射系数,也可用于计算统计能量分析(SEA)方法所需的耦合损耗因子(CLF),以预测组合系统中的高频振动水平。相关 CLF 的计算使得结构的二维周期性区域可以非常有效地作为 SEA 中的单个子系统进行建模,也可以在相关方法中进行建模,例如最近开发的混合方法,该方法将有限元方法与 SEA 耦合。通过涉及加筋板结构的各种数值示例来说明分析。