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2D nonlinear inversion of bedrock motion from the surface motion of a layered half-space

机译:基层运动的二维非线性反演,来自层状半空间的表面运动

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This paper proposes a method for two-dimensional (2D) nonlinear inversion of bedrock earthquake motion from the surface motion of a layered half-space. The exact dynamic-stiffness matrices of soil layer and half-space are used for the inversion of bedrock motion and incident angle from both the surface horizontal motion and vertical motion, and the equivalent linearization approach is used to consider the nonlinearity of the soil layers. The method of inversion is verified by an example of obliquely incident El Centro Earthquake record at bedrock. It is shown that, the bedrock motion and incident angle can be accurately inversed from both the horizontal motion and vertical motion. The one-dimensional (1D) traditional inversion of bedrock horizontal motion from only surface horizontal motion in literatures may cause large error due to ignoring wave mode conversion, because there is vertical motion accompanying two surface horizontal motions in real earthquake records anyway. The error in 10 inversion depends on the ratio of surface vertical motion to horizontal motion, and the larger the surface vertical motion, the larger the error.
机译:本文提出了一种基于层状半空间表面运动的二维(2D)非线性基岩地震运动反演的方法。土层和半空间的精确动力刚度矩阵用于从表面水平运动和垂直运动中反演基岩运动和入射角,并使用等效线性化方法考虑土层的非线性。以基岩倾斜入射El Centro地震记录为例验证了反演方法。结果表明,水平运动和垂直运动都可以准确地反转基岩运动和入射角。在文献中,基岩水平运动的一维(1D)传统反演仅是由表面水平运动引起的,但由于忽略了波模转换,可能会导致较大的误差,因为无论如何,在实际地震记录中都存在伴随两个表面水平运动的垂直运动。 10次​​反转的误差取决于表面垂直运动与水平运动的比率,并且表面垂直运动越大,误差越大。

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