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Surface motion of multiple alluvial valleys for incident plane SH-waves by using a semi-analytical approach

机译:入射平面SH波的多个冲积谷表面运动的半解析方法

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In this paper, the degenerate kernels and Fourier series expansions are adopted in the null-field integral equation to solve the exterior Helmholtz problems with alluvial valleys. The main gain of using degenerate kernels in integral equations is free of calculating the principal values for singular integrals by locating the null-field point exactly on the real boundary. An adaptive observer system is addressed to fully employ the property of degenerate kernels for circular boundaries in the polar coordinate. Image concept and technique of decomposition are utilized for half-plane problems. After moving the null-field point to the real boundary and matching the boundary conditions, a linear algebraic system is obtained without boundary discretization. The unknown coefficients in the algebraic system can be easily determined. The present method is treated as a "semi-analytical" solution since error only attributes to the truncation of Fourier series. Earthquake analysis for the site response of alluvial valley or canyon subject to the incident SH-wave is the main concern. Numerical examples including single and successive alluvial valleys are given to test our program. Limiting cases of a single canyon and two successive canyons are also addressed. Amplification of soft basin is also observed in this study. The validity of the semi-analytical method is verified. Our advantages, well-posed model, principal value free, elimination of boundary-layer effect and exponential convergence and mesh-free, by using the present method are achieved.
机译:本文在零场积分方程中采用退化核和傅立叶级数展开来求解具有冲积谷的外部亥姆霍兹问题。在积分方程中使用退化核的主要好处是无需通过将空场点精确定位在实边界上来计算奇异积分的主值。提出了一种自适应观测器系统,以充分利用简并核的性质作为极坐标中的圆形边界。图像概念和分解技术被用于半平面问题。将空场点移至真实边界并匹配边界条件后,无需边界离散即可获得线性代数系统。可以容易地确定代数系统中的未知系数。由于误差仅归因于傅立叶级数的截断,因此将本方法视为“半解析”解。地震分析对冲积谷或峡谷在入射SH波作用下的位置响应是主要关注的问题。给出了包括单个和连续冲积谷的数值示例来测试我们的程序。还讨论了单个峡谷和两个连续峡谷的极限情况。在这项研究中还观察到了软盆地的放大。验证了半分析方法的有效性。通过使用本发明的方法,实现了我们的优点,即模型正确,无主值,消除边界层效应,消除指数收敛和无网格。

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