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MODELING GRANULAR CRUSHING IN RING SHEAR TESTS: EXPERIMENTAL AND NUMERICAL ANALYSES

机译:在环形剪切试验中模拟颗粒破碎:实验和数值分析

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摘要

A fault consists of a zone of heavily fragmented granular rock (gouge), which is confined between two rough walls made of fractured rock. The granular gouge is the result of previous fracturing of the wall rock by the combined effect of compressive and shear stresses. Through time, the granular fault gouge will experience various episodes of further fragmentation (crushing) as a result of the mobilization by shear of the fault walls. The evolution of crushing in a simulated gouge material was studied using laboratory ring shear tests and DEM ring shear simulations. The laboratory ring shear tests were developed using sugar as a weak granular material. It was found that the residual friction coefficient of this material maintained a constant value regardless of the severe degradation of the particles. This degradation was induced by increasing the angular deformation or increasing the applied vertical stress. Moreover, it was found that the grain size distribution of the original uniform material evolved toward a fractal distribution of sizes. The results from the DEM simulations confirmed those from the laboratory tests and provided also a visualization of the evolution of crushing. Event though originally DEM does not consider particle breakage, this was allowed by replacing particles fulfilling a predefined tensile failure criterion with an equivalent group of smaller particles.
机译:断层由严重破碎的颗粒状岩石(碎屑)区域组成,该区域被限制在两个由破碎岩石制成的粗糙壁之间。颗粒凿是由于压应力和剪应力共同作用而使围岩先前破裂的结果。随着时间的流逝,由于断层壁的剪切动员,颗粒状断层泥将经历各种进一步破碎(破碎)的事件。使用实验室环形剪切试验和DEM环形剪切模拟研究了在模拟凿孔材料中破碎的演变。实验室环形剪切试验是使用糖作为弱颗粒材料开发的。发现该材料的残余摩擦系数保持恒定值,而与颗粒的严重降解无关。这种退化是通过增加角度变形或增加施加的垂直应力引起的。此外,发现原始均匀材料的晶粒尺寸分布朝尺寸的分形分布发展。 DEM模拟的结果证实了实验室测试的结果,并提供了破碎过程的可视化结果。尽管最初的DEM并未考虑颗粒破裂,但可以通过用等效的较小颗粒组替换满足预定拉伸破坏标准的颗粒来实现。

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