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双相介质中地震波衰减的物理机制

机译:双相介质中地震波衰减的物理机制

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High-frequency seismic attenuation is conventionally attributed to anelastic absorption. In this paper, I present three studies on high-frequency seismic attenuation and propose that the physical mechanism results from the interference of elastic microscopic multiple scattering waves. First, I propose a new theory on wave propagation in a two-phase medium which is based on the concept that the basic unit for wave propagation is a nano-mass point. As a result of the elasticity variations of pore fluid and rock framework, micro multiple scattering waves would emerge at the wavelength of the seismic waves passing through the two-phase medium and their interference and overlap would generate high-frequency seismic attenuation. Second, I present a study of the frequency response of seismic transmitted waves by modeling thin-layers with thicknesses no larger than pore diameters. Results indicate that high-frequency seismic waves attenuate slightly in a near-surface water zone but decay significantly in a near-surface gas zone. Third, I analyze the seismic attenuation characteristics in near-surface water and gas zones using dual-well shots in the Songliao Basin, and demonstrate that the high-frequency seismic waves attenuate slightly in water zones but in gas zones the 160-1600 Hz propagating waves decay significantly. The seismic attenuation characteristics from field observations coincide with the modeling results. Conclusions drawn from these studies theoretically support seismic attenuation recovery.
机译:高频地震衰减通常归因于无骨骼的吸收。在本文中,我提出了三项关于高频地震衰减的研究,并提出了物理机理从弹性微观多散射波的干扰产生。首先,我提出了一种关于两相介质中的波传播的新理论,其基于波传播的基本单元是纳米质量点的概念。由于孔隙流体和岩石框架的弹性变化,微多散射波将在通过两相介质的地震波的波长处出现,并且它们的干扰和重叠将产生高频地震衰减。其次,我通过使用厚度的薄层建模不大于孔径的薄层来展示地震透射波的频率响应。结果表明,高频地震波在近地水区略微衰减,但在近表面气体区衰减显着衰减。第三,我在松辽盆地中分析了近地水和煤气区的地震衰减特性,并证明高频地震波在水区略微衰减,但在气体区域繁殖160-1600Hz传播波浪衰减显着。场观测的地震衰减特性与建模结果一致。从理论上,从这些研究中得出的结论从理论上支持地震衰减恢复。

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