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《非均匀地球中的地震波传播和散射:第二版》引言
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作者 haruo sato Michael C.Fehler +2 位作者 Takuto Maeda 朱维(译) 所吴何(校) 《世界地震译丛》 2016年第4期269-281,共13页
1地震波的散射 地下大约100km的区域称为岩石层。严格来说,岩石层代表了覆盖在低速层或软流层上的地球的固体部分,并且其厚度随构造背景不同而在不同地方变化。然而,我们将不严格地使用这一术语来指代由地壳和上地幔组成的地下100km以... 1地震波的散射 地下大约100km的区域称为岩石层。严格来说,岩石层代表了覆盖在低速层或软流层上的地球的固体部分,并且其厚度随构造背景不同而在不同地方变化。然而,我们将不严格地使用这一术语来指代由地壳和上地幔组成的地下100km以上的区域。 展开更多
关键词 地震波传播 岩石层 尾波 软流层 上地幔 随机介质 地壳地震 低速层 非均质 地震记录
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Direct Simulation Methods for Scalar-Wave Envelopes in Two-Dimensional Layered Random Media Based on the Small-Angle Scattering Approximation
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作者 Tatsuhiko Saito haruo sato Tsutomu Takahashi 《Communications in Computational Physics》 SCIE 2008年第1期63-84,共22页
This study presents stochastic methods to simulate wave envelopes in layeredrandom media. High-frequency Seismograms of small earthquakes are so complexdue to lithospheric inhomogeneity that seismologists often analyz... This study presents stochastic methods to simulate wave envelopes in layeredrandom media. High-frequency Seismograms of small earthquakes are so complexdue to lithospheric inhomogeneity that seismologists often analyze wave envelopesrather than wave traces to quantify the subsurface inhomogeneity. Since thestatistical properties of the inhomogeneity vary regionally, it is important to developand examine direct envelope simulation methods for non-uniform random media. Asa simple example, this study supposes planewave propagation through two-layer randommedia in 2-D composed of weak and strong inhomogeneity zones. The characteristicspatial-scale of the inhomogeneity is supposed to be larger than the wavelength,where small-angle scattering around the forward direction dominates large-angle scattering.Two envelope simulation methods based on the small-angle scattering approximationare examined. One method is to solve a differential equation for the twofrequencymutual coherence function with the Markov approximation. The other isto solve the stochastic ray bending process by using the Monte Carlo method basedon the Markov approximation for the mutual coherence function. The resultant waveenvelopes of the two methods showed excellent coincidence both for uniform and fortwo-layer random media. Furthermore, we confirmed the validity of the two methodscomparing with the envelopes made from the finite difference simulations of waves.The two direct envelope simulation methods presented in this study can be a mathematicalbase for the study of high-frequency wave propagation through randomlyinhomogeneous lithosphere in seismology. 展开更多
关键词 Seismic wave ENVELOPE random media.
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