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非均匀介质孔隙流体参数地震散射波反演 被引量:17
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作者 印兴耀 宗兆云 吴国忱 《中国科学:地球科学》 CSCD 北大核心 2013年第12期1934-1942,共9页
弹性波逆散射是非均匀介质参数反演的有效途径.本文从弹性波逆散射理论出发,利用微扰理论和稳相法,将非均匀介质参数视为背景介质与扰动介质参数的叠加,建立了纵波散射系数和非均匀介质中背景介质与扰动介质孔隙流体参数,剪切模量与密... 弹性波逆散射是非均匀介质参数反演的有效途径.本文从弹性波逆散射理论出发,利用微扰理论和稳相法,将非均匀介质参数视为背景介质与扰动介质参数的叠加,建立了纵波散射系数和非均匀介质中背景介质与扰动介质孔隙流体参数,剪切模量与密度间的直接关系.进而发展了一种非均匀介质孔隙流体参数叠前地震贝叶斯反演方法.该方法假设模型参数(扰动介质与背景介质孔隙流体参数,剪切模量与密度的比值)服从柯西分布,反演目标似然函数服从高斯分布,并采用平滑初始模型约束提高反演稳定性.模型和实际资料处理表明,该反演方法能够稳定合理的直接从叠前地震资料中获取孔隙流体参数,提供了一种高可靠性的非均匀介质流体描述方法. 展开更多
关键词 非均匀介质 孔隙流体参数 地震散射 叠前地震反演
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Fluid sensitivity study of elastic parameters in lowmedium porosity and permeability reservoir rocks 被引量:2
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作者 裴发根 邹长春 +3 位作者 何涛 史謌 仇根根 任科英 《Applied Geophysics》 SCIE CSCD 2010年第1期1-9,98,共10页
In this article,based on the acoustic measurements of core samples obtained from the low to medium porosity and permeability reservoirs in the WXS Depression,the densities and P and S wave velocities of these core sam... In this article,based on the acoustic measurements of core samples obtained from the low to medium porosity and permeability reservoirs in the WXS Depression,the densities and P and S wave velocities of these core samples were obtained.Then based on these data,a series of elastic parameters were computed.From the basic theory and previous pore fluid research results,we derived a new fluid identification factor(F).Using the relative variations,Ag/w and Ao/w,of the elastic parameters between gas and water saturated samples and between oil and water saturated samples,λρ,σHSFIF,Kρ,λρ-2μρ,and F as quantitative indicators,we evaluate the sensitivity of the different fluid identification factors to identify reservoir fluids and validate the effects by crossplots.These confirm that the new fluid identification factor(F) is more sensitive for distinguishing oil and water than the traditional method and is more favorable for fliud identification in low to medium porosity and permeability reservoirs. 展开更多
关键词 elastic parameters pore fluid fluid identification factor wave impedance crossplot validation
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Numerical Modeling of the Effect of Crack Parameters on Attenuation Anisotropy
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作者 Cai Xiaogang 《Earthquake Research in China》 2012年第1期97-109,共13页
Propagation through stress-aligned fluid-filled cracks and other inclusions have been claimed to be the cause of azimuthal anisotropy observed in the crust and upper mantle.This paper examines the behavior of seismic ... Propagation through stress-aligned fluid-filled cracks and other inclusions have been claimed to be the cause of azimuthal anisotropy observed in the crust and upper mantle.This paper examines the behavior of seismic waves attenuation caused by the internal structure of rock mass,and in particular,the internal geometry of the distribution of fluid-filled openings Systematic research on the effect of crack parameters,such as crack density,crack aspect ratio(the ratio of crack thickness to crack diameter),pore fluid properties(particularly pore fluid velocity),VP/VS ratio of the matrix material and seismic wave frequency on attenuation anisotropy has been conducted based on Hudson's crack theory.The result shows that the crack density,aspect ratio,material filler,seismic wave frequency,and P-wave and shear wave velocity in the background of rock mass,and especially frequency has great effect on attenuation curves.Numerical research can help us know the effect of crack parameters and is a good supplement for laboratory modeling.However,attenuation is less well understood because of the great sensitivity of attenuation to details of the internal geometry.Some small changes in the characteristics of pore fluid viscosity,pore fluids containing gas and liquid phases and pore fluids containing clay can each alter attenuation coefficients by orders of magnitude.Some parameters controlling attenuation are therefore necessary to make reasonable estimations,and anisotropic attenuation is worth studying further. 展开更多
关键词 Equivalent media theory Crack density Attenuation anisotropy Qualityfactor
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