AstroSeis: A 3D Boundary Element Modeling Code for Seismic Wavefields in Irregular Asteroids and Bodies

Yuan Tian, Yingcai Zheng
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引用次数: 2

Abstract

We developed a 3-D elastic Boundary Element Method (BEM) computer code, called AstroSeis, to model seismic wavefields in a body with an arbitrary shape, such as an asteroid. Besides the AstroSeis can handle arbitrary surface topography, it can deal with a liquid core in an asteroid model. Both the solid and liquid domains are homogenous in our current code. For seismic sources, we can use single forces or moment tensors. The AstroSeis is implemented in the frequency domain and the frequency-dependent Q can be readily incorporated. The code is in MATLAB and it is straightforward to set up the model to run our code. The frequency-domain calculation is advantageous to study the long-term elastic response of a celestial body due to a cyclic force such as the tidal force with no numerical dispersion issue suffered by many other methods requiring volume meshing. Our AstroSeis has been benchmarked with other methods such as normal modes summation and the direct solution method (DSM). This open-source AstroSeis will be a useful tool to study the interior and surface processes of asteroids.
AstroSeis:不规则小行星和天体地震波场的三维边界元建模程序
我们开发了一种三维弹性边界元法(BEM)计算机代码,称为AstroSeis,用于模拟任意形状物体(如小行星)中的地震波场。除了AstroSeis可以处理任意表面地形外,它还可以处理小行星模型中的液体核心。在我们当前的代码中,固体和液体域都是同质的。对于震源,我们可以使用单力或矩张量。AstroSeis是在频域中实现的,与频率相关的Q可以很容易地合并。代码是在MATLAB中,它是直接建立模型来运行我们的代码。频域计算有利于研究天体在潮汐力等循环力作用下的长期弹性响应,而不存在其他许多需要体积网格划分的方法所存在的数值色散问题。我们的AstroSeis已经与其他方法进行了基准测试,如正常模式求和和直接解法(DSM)。这个开源的AstroSeis将是研究小行星内部和表面过程的有用工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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