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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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基于Image J软件的血迹遗留时间推断研究 被引量:1
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作者 钱尊磊 李响 +3 位作者 贾振军 刘鑫 权欣怡 王昊宇 《中国法医学杂志》 CSCD 2023年第1期43-47,共5页
目的探究血迹在非渗透性客体表面的干燥过程,建立基于Image J软件的血迹遗留时间推断方法。方法选取塑料板、玻璃板、漆层木板、瓷砖和铁片5种常见的非渗透性客体作为血迹的承载介质,分析不同靶面血迹干燥特征的时序变化,运用Image J图... 目的探究血迹在非渗透性客体表面的干燥过程,建立基于Image J软件的血迹遗留时间推断方法。方法选取塑料板、玻璃板、漆层木板、瓷砖和铁片5种常见的非渗透性客体作为血迹的承载介质,分析不同靶面血迹干燥特征的时序变化,运用Image J图像处理软件量化分析平均灰度值、血池比率和裂纹比率3项特征性指标与遗留时间的相关性。结果塑料板和铁片表面血迹的平均灰度值变化率较小,裂纹比率较大。塑料板、玻璃板和瓷砖的血池比率较漆层木板和铁片的变化率大。依据血迹的特征量化指标拟合了不同时段血迹遗留时间的回归方程。结论建立了非渗透性客体表面血迹遗留时间的推断方法,可为犯罪现场出血时间的判定提供依据,为智慧警务应用提供技术支撑。 展开更多
关键词 血迹遗留时间 承痕客体 平均灰度值 血池比率 裂纹比率
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