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AN EFFICIENT STABLE RECURSIVE ALGORITHM FOR ELASTIC WAVE PROPAGATION IN LAYERED ANISOTROPIC MEDIA

机译:分层各向异性介质中弹性波传播的高效稳定递归算法

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An efficient recursive algorithm, the stiffness matrix method, has been developed for wave propagation in multilayered generally anisotropic media. This algorithm has the computational efficiency and simplicity of the standard transfer matrix method and is unconditionally computationally stable for high frequency and layer thickness. In this algorithm the stiffness (compliance) matrix is calculated for each layer and recursively applied to generate a stiffness (compliance) matrix for the layered system. Next, reflection and transmission coefficients are calculated for the layered media bounded by liquid or solid semispaces. Results show that the method is stable for arbitrary number and thickness of layers and the computation time is proportional to the number of layers.
机译:已经开发了一种有效的递归算法,刚度矩阵法,用于多层大致各向异性介质中的波传播。该算法具有标准传输矩阵方法的计算效率和简单性,并且对于高频和层厚度无条件地计算地稳定。在该算法中,针对每个层计算刚度(合规性)矩阵并递归地施加以产生分层系统的刚度(合规性)矩阵。接下来,针对由液体或固体半空段限定的分层介质计算反射和透射系数。结果表明,该方法对于层的任意数量和厚度稳定,并且计算时间与层数成比例。

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