地震波传播模拟的边界元―体积元积分方程法及其近似求解


Autoria(s): 于更新
Contribuinte(s)

符力耘

Data(s)

06/06/2009

Resumo

To improve the efficiency of boundary-volume integral equation technique, this paper is involved in the approximate solutions of boundary-volume integral equation technique. Firstly, based on different interpretations of the self-interaction and extrapolation operators of the resulting boundary integral equation matrix, two different hybrid BEM+Born series modeling schemes are formulated and validated through comparisons with the full-waveform BE numerical solutions for wave propagation simulation in a semicircular alluvial valley and a complex fault model respectively. Numerical experiments indicate that both the BEM+Born series modeling schemes are suitable for complex geological structures and significantly improve computational efficiency especially for the cases of high frequencies and multisource seismic survey. Then boundary-volume integral equation technique is illuminated in detail and verified by modeling wave propagation in complex media. Furthermore, the first-order and second-order Born approximate solutions for the volume-scattering waves are studied and quantified by numerical simulation in different random medium models. Finally, preconditioning generalized minimal residual method is applied to solve boundary-volume integral equation and compared with Gaussian elimination method. Numerical experiments indicate this method makes the calculations more efficient.

Identificador

http://159.226.119.211/handle/311031/1546

http://www.irgrid.ac.cn/handle/1471x/174409

Idioma(s)

中文

Fonte

地震波传播模拟的边界元―体积元积分方程法及其近似求解.于更新[d].中国科学院地质与地球物理研究所,2009.20-25

Palavras-Chave #边界元法 #Born序列 #边界元-体积元积分方程法 #广义最小余量法
Tipo

学位论文