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Numerical Simulation of the Influence of Grain Size on the Progressive Development of Brittle Failure in Yuen Long Marbles

机译:粒度对元朗大理石脆性破坏逐步发展影响的数值模拟

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It has long been recognized that the strength of brittle rocks decreases with the grain size. However, very few systematic investigation of this phenomenon has been made using numerical method. This paper presents the results of a numerical simulation using the Rock Failure Process Analysis code (RFPA~(2D)) to investigate the effects of grain size on the uniaxial compressive strength and the failure behavior of Yuen Long marble. The Weibull distribution with two parameters (m that characterizes the strength heterogeneity, and σ_0 that corresponds to the mean strength of an element) selected based on micromechanical basis is used in the RFPA~(2D) code for simulation. The simulated stress-strain curves of Yuen Long marbles with different grain sizes under uniaxial compressive condition agrees well with the experimental study. The progressive failure process was captured in the numerical simulations. Our simulations also reproduced the influence of grain size, with strength scaling approximately with the inverse square root of grain size, which is in agreement with the previous experimental study.
机译:早已认识到,脆性岩石的强度随晶粒尺寸而降低。但是,很少使用数值方法对此现象进行系统的研究。本文介绍了使用岩石破坏过程分析代码(RFPA〜(2D))进行数值模拟的结果,以研究晶粒尺寸对元朗大理石单轴抗压强度和破坏行为的影响。在RFPA〜(2D)代码中,使用基于微机械原理选择的具有两个参数(表示强度异质性的m和对应于元素平均强度的σ_0)的威布尔分布用于仿真。在单轴压缩条件下,不同粒径的元朗大理石的应力-应变曲线模拟与实验研究吻合良好。在数值模拟中捕获了渐进式破坏过程。我们的模拟还再现了晶粒尺寸的影响,强度缩放与晶粒尺寸的平方根成反比,这与之前的实验研究一致。

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