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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Evaluation of depth-dependent porosity and bulk modulus of a shear using permeability-depth trends
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Evaluation of depth-dependent porosity and bulk modulus of a shear using permeability-depth trends

机译:利用渗透率-深度趋势评估与深度有关的孔隙度和体积模量

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摘要

Both porosity and deformation properties of porous media are dependent on stress. For geological media, the stress-dependent porosity and deformation properties can be shown to be depth related. Unfortunately, both in situ porosity and in situ deformation properties are difficult to measure. In the current study, a method is developed to evaluate the changes in porosity and bulk modulus with depth by using in situ measurements of permeability, which can be easily obtained by employing packer tests. In the case study, the change in permeability of a shear in the Baihetan hydropower station in Southwest China is estimated. Then, the permeability-depth correlation is utilized to calculate the porosity and the bulk modulus at different depths. The results clearly show that the porosity decreases with depth while the bulk modulus increases with depth. Based on the proposed model, the bulk modulus is calculated to increase from 4-6 MPa on the ground surface to 18-30 MPa at the depth of 160 m. The Young's modulus of the shear estimated with this depth-dependent bulk modulus is consistent with in situ measurement.
机译:多孔介质的孔隙率和变形特性均取决于应力。对于地质介质,应力相关的孔隙度和变形特性可以显示为与深度有关。不幸的是,原位孔隙率和原位变形特性均难以测量。在当前的研究中,开发了一种方法,通过使用渗透率的现场测量来评估孔隙度和体积模量随深度的变化,这可以通过使用封隔器测试轻松获得。在案例研究中,估算了中国西南白鹤滩水电站的一个剪切机的渗透率变化。然后,利用渗透率-深度相关性来计算不同深度的孔隙率和体积模量。结果清楚地表明,孔隙率随深度而减小,而体积模量随深度而增大。根据提出的模型,计算出的体积模量从地面上的4-6 MPa增加到深度为160 m的18-30 MPa。用这种与深度相关的体积模量估算的剪切杨氏模量与原位测量结果一致。

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