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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Modeling the effect of multiple sets of mesoscale fractures in porous rock on frequency-dependent anisotropy
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Modeling the effect of multiple sets of mesoscale fractures in porous rock on frequency-dependent anisotropy

机译:模拟多孔岩石中多组中尺度裂缝对频率依赖各向异性的影响

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摘要

This study models the seismic response of porous rock containing two fracture sets with different orientations, sizes, and connectivities. Modeling demonstrates frequency-dependent anisotropy controlled by two characteristic frequencies that are defined by fluid mobility and the length scales of the fractures. Fracture-related dispersion and attenuation typically occur over a wider frequency band than is seen in the case of a single fracture set.When one set of fractures is modeled as being sealed, the azimuthal variation of velocity and attenuation can be different, with the azimuth of minimum attenuation coinciding with the strike direction of the open fracture set. The results should support attempts to differentiate between open and closed fractures on the basis of seismic measurements.
机译:本研究对包含两个方向,大小和连通性不同的裂缝组的多孔岩的地震响应进行建模。建模显示了由两个特征频率控制的频率相关各向异性,该特征频率由流体流动性和裂缝的长度尺度定义。与单个裂缝组相比,与裂缝相关的色散和衰减通常在更宽的频带上发生。当将一组裂缝建模为封闭裂缝时,速度和衰减的方位角变化可能随方位角而不同最小衰减与开放裂缝组的走向一致。结果应支持基于地震测量结果来区分开放裂缝和闭合裂缝的尝试。

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