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Investigation on the shear properties of discontinuities at the interface between different rock types in the Badong formation, China

机译:中国巴东地区不同岩石类型界面剪切特性调查

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Recent research has paid little attention to the difference in shear strength between discontinuities with different joint wall material (DDJM) and discontinuities with identical joint wall material (DIJM) and what are the controlling factors of shear properties of DDJM. Bedding planes between argillaceous limestone and mudstone in the Badong formation in the Three Gorges area of China were investigated using physical model tests. The effect of joint wall material combination on the shear properties of DDJM was first revealed by conducting tests on a series of artificial joint specimens that were made of different joint wall materials and with varying joint surface topographies under different normal stresses. The results indicate that: the peak shear strength of DDJM is not equal to the lower peak shear strength of DIJM for two joint wall materials of the DDJM, even so it is closer to the lower peak shear strength than to the higher one; effect of joint roughness and normal stress on peak shear strength of DDJM is similar with DIJM; effect of joint wall material combination on peak shear strength of DDJM is greater with larger roughness and higher normal stresses. Based on the data acquired from the physical model tests, a new empirical equation to estimate the peak shear strength of DDJM was developed. The capability of the equation was validated by comparing estimates with data from direct shear tests on natural DDJM samples gained from the Badong formation. Finally, the proposed empirical equation was applied to the stability analysis of a rock slope in the Badong formation.
机译:最近的研究几乎没有注意到不同关节墙材料(DDJM)和不连续性的不连续性之间的剪切强度差异(DDJM)(DIJM),以及DDJM的剪切性能的控制因素是什么。使用物理模型试验调查了中国三峡面积的Badong Mexition在Badong Moderation之间的床上用品。首先通过在不同的关节壁材料制成的一系列人工关节标本上进行测试,并在不同的正常应力下进行不同的关节表面拓扑进行的一系列人工关节标本进行测试,首先通过对不同的关节壁材料进行的测试进行剪切性能对DDJM的剪切性能的影响。结果表明:DDJM的峰值剪切强度不等于DDJM的两个关节壁材料的DIJM的较低峰值剪切强度,即使它更接近较低的峰值剪切强度而不是更高的峰值;联合粗糙度和正常应力对DDJM峰值剪切强度的影响与DIJM相似;关节壁材料组合对DDJM的峰值剪切强度的影响,具有较大的粗糙度和较高的正常应力。基于从物理模型测试中获取的数据,开发了一种新的经验方程来估算DDJM的峰值剪切强度。通过将估计与从Badong Mablation中获得的自然DDJM样本的直接剪切试验中的数据进行比较来验证等式的能力。最后,提出了拟议的经验方程对巴东地区岩石坡的稳定性分析。

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