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A New Empirical Model to Estimate 3-D Coal Mass Strength

机译:一种估算3-D煤质量强度的新经验模型

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Estimation of the rock mass strength has been a difficult task in the rock engineering practice. This research was focused on developing a new empirical model to estimate the 3-D coal mass strength, which can capture both the scale effect and anisotropic behavior. Both a laboratory experimental scheme and a numerical modeling scheme were carried out at the 3-D level. The laboratory experiments were performed to achieve the following:(a) Firstly, the geomechanical properties for the intact coal and coal discontinuities were estimated through the laboratory geomechanical property tests; (b) Secondly, naturally existing fracture networks in the cubic coal blocks were first detected by the industrial Computed Tomography (CT) scanning technique and then quantified by the fracture tensor based methodology; (c) Thirdly, polyaxial tests were conducted on the same cubic coal blocks to obtain the JCMS values under different confining stresses. With respect to the numerical modeling, the geometric models of the jointed coal blocks were set up to simulate the laboratory polyaxial compression tests under different confining stress combinations and to obtain a JCMS data bank. Finally, a new empirical model was developed to estimate the JCMS values at the 3-D level.
机译:岩石质量强度估计在岩石工程实践中是一项艰巨的任务。该研究专注于开发新的实证模型来估计3-D煤质量强度,这可以捕获规模效应和各向异性行为。在3-D水平下进行实验室实验方案和数值建模方案。进行实验室实验以达到以下内容:(a)首先,通过实验室地质力学性能试验估计了完整煤炭和煤炭不连续性的地质力学性质; (b)其次,首先通过工业计算断层扫描(CT)扫描技术检测立方煤块中的天然存在的裂缝网络,然后通过基于裂缝张量的方法量化; (c)第三,在相同的立方煤块上进行多轴测试,以获得不同限制应力下的JCMS值。关于数值建模,建立了连接煤块的几何模型以在不同的限制应力组合下模拟实验室多轴压缩试验并获得JCMS数据库。最后,开发了一种新的经验模型来估计3-D级别的JCMS值。

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