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Estimation of REV Size for Fractured Rock Mass Based on Damage Coefficient

机译:基于损伤系数的裂缝岩体尺寸的估计

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Estimation of representative elementary volume (REV) is significant to analyze fractured rock mass in the framework of continuum mechanics. Engineers can therefore simplify the analysis by using an equivalent rock block with an average property, and the influence of fractures can be neglected in finite element modelling. The indicators to determine the REV size based on the joint geometrical parameters include the volumetric fracture intensity (P-32) and the fracture tensor, but this type of calculation generally provides a lower bound evaluation. A novel conceptual framework of damage coefficient is introduced in this paper to consider the mechanical properties of fractures, such as joint aperture and roughness. A parametric study has been performed to establish the correlation between the proposed dimensionless damage coefficient and the traditional derived P-32 value. The effectiveness of the developed method is demonstrated by a case study, where a larger mechanical REV size is indeed calculated based on the damage coefficient.
机译:估计代表性基本体积(REV)是显着分析连续式力学框架中的裂缝岩体。因此,工程师可以通过使用平均性质的等效岩块来简化分析,并且在有限元建模中可以忽略裂缝的影响。基于联合几何参数确定Rev尺寸的指示包括体积裂缝强度(P-32)和裂缝张量,但这种类型的计算通常提供较低的界限评估。本文介绍了一种新颖的损伤系数框架,以考虑裂缝的机械性能,例如关节孔径和粗糙度。已经进行了参数研究以建立所提出的无量纲损伤系数与传统衍生P-32值之间的相关性。通过案例研究证明了开发方法的有效性,其中实际上基于损伤系数计算较大的机械转速尺寸。

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