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A scheme to treat the singularity in global seismic wavefield simulation using pseudospectral method with staggered grids 被引量:1
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作者 Yanbin Wang hiroshi takenaka 《Earthquake Science》 CSCD 2010年第2期121-127,共7页
The pseudospectral method has been applied to the simulation of seismic wave propagation in 2-D global Earth model. When a whole Earth model is considered, the center of the Earth is included in the model and then sin... The pseudospectral method has been applied to the simulation of seismic wave propagation in 2-D global Earth model. When a whole Earth model is considered, the center of the Earth is included in the model and then singularity arises at the center of the Earth where r=0 since the 1/r term appears in the wave equations. In this paper, we extended the global seismic wavefield simulation algorithm for regular grid mesh to staggered grid configuration and developed a scheme to solve the numerical problems associated with the above singularity for a 2-D global Earth model defined on staggered grid using pseudospectral method. This scheme uses a coordinate transformation at the center of the model, in which the field variables at the center are calculated in Cartesian coordinates from the values on the grids around the center. It allows wave propagation through the center and hence the wavefield at the center can be stably calculated. Validity and accuracy of the scheme was tested by compared with the discrete wavenumber method. This scheme could also be suitable for other numerical methods or models parameterized in cylindrical or spherical coordinates when singularity arises at the center of the model. 展开更多
关键词 seismic modeling wave propagation whole Earth pseudospectrai method staggered grid
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Global SH-wave propagation in a 2D whole Moon model using the parallel hybrid PSM/FDM method 被引量:3
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作者 Xianghua Jiang Yanbin Wang +1 位作者 Yanfang Qin hiroshi takenaka 《Earthquake Science》 CSCD 2015年第3期163-174,共12页
We present numerical modeling of SH-wave propagation for the recently proposed whole Moon model and try to improve our understanding of lunar seismic wave propagation. We use a hybrid PSM/FDM method on staggered grids... We present numerical modeling of SH-wave propagation for the recently proposed whole Moon model and try to improve our understanding of lunar seismic wave propagation. We use a hybrid PSM/FDM method on staggered grids to solve the wave equations and implement the calculation on a parallel PC cluster to improve the computing efficiency. Features of global SH-wave propagation are firstly discussed for a 100-km shallow and900-km deep moonquakes, respectively. Effects of frequency range and lateral variation of crust thickness are then investigated with various models. Our synthetic waveforms are finally compared with observed Apollo data to show the features of wave propagation that were produced by our model and those not reproduced by our models. Our numerical modeling show that the low-velocity upper crust plays significant role in the development of reverberating wave trains. Increasing frequency enhances the strength and duration of the reverberations.Surface multiples dominate wavefields for shallow event.Core–mantle reflections can be clearly identified for deep event at low frequency. The layered whole Moon model and the low-velocity upper crust produce the reverberating wave trains following each phases consistent with observation. However, more realistic Moon model should be considered in order to explain the strong and slow decay scattering between various phases shown on observation data. 展开更多
关键词 Whole Moon model Seismic wavefield SH-wave propagation Hybrid method Parallel computing
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利用伪谱法模拟横向非均匀全球模型中的SH波场 被引量:2
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作者 王彦宾 hiroshi takenaka 《中国科学:地球科学》 CSCD 北大核心 2012年第1期140-148,共9页
基于傅里叶伪谱法(Fourier pseudospectral method,PSM),发展了模拟具有任意横向非均匀结构的全地球模型中SH波传播的算法.所采用的模型为通过地球大圆选取的一个二维全地球剖面,所求解的弹性波动方程定义在二维柱坐标系下.波动方程中... 基于傅里叶伪谱法(Fourier pseudospectral method,PSM),发展了模拟具有任意横向非均匀结构的全地球模型中SH波传播的算法.所采用的模型为通过地球大圆选取的一个二维全地球剖面,所求解的弹性波动方程定义在二维柱坐标系下.波动方程中空间微分的数值求解通过波数域的乘积运算实现,空间域与波数域之间的变换通过快速傅里叶变换(fast Fourier transformation,FFT)进行.由于PSM具有精度较高、计算速度较快的特点,所以对于非均匀结构可以近似为在垂直剖面方向上对称的模型,本算法能够较精确地计算较高频率的全球SH波场的理论地震图.和基于球坐标系二维全球模型的算法相比,本算法能够更方便地处理震源项.用该算法计算了PREM模型中全球SH波的传播,分析了各种震相的产生以及它们在各个界面上的反射、透射、绕射,并将其应用于包含核幔边界低速扰动结构的横向非均匀全球模型,讨论了他们对全球SH波传播的影响. 展开更多
关键词 地震波传播 计算地震学 伪谱法 全球地震学 核幔边界
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