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首页> 外文期刊>Journal of Petroleum Science & Engineering >A non-local model for fracture closure on rough fracture faces and asperities
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A non-local model for fracture closure on rough fracture faces and asperities

机译:粗糙骨折面和粗糙度裂缝闭合的非本地模型

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Natural fractures, hydraulic fractures, and acid etched fractures have some degree of surface roughness. These surface asperities are largely responsible for the hydraulic conductivity of these fractures. This paper presents a model to quantify the fracture closure process that is crucial to predicting the stress dependent conductivity of fractures and estimating the minimum in-situ stress using fracture injection tests. Past studies that have investigated the fracture closure process have assumed the fracture surfaces to be two parallel plates closing in uniformly on rough surfaces and asperities. In reality, hydraulically induced fractures are wider in the middle and narrower near the fracture tip. As a result, asperities on the rough fracture surfaces come into contact near the fracture tip well before they do near the middle of the fracture. This evolution of the entire fracture geometry and its impact on stress redistribution and contact behavior has not yet been investigated.
机译:自然骨折,液压骨折和酸蚀刻骨折具有一定程度的表面粗糙度。 这些表面粗糙度在很大程度上负责这些裂缝的液压导电性。 本文介绍了量化裂缝闭合过程的模型,这对于预测裂缝的应力依赖性电导率和使用骨折注射试验估算最低原位应力的型号是至关重要的。 已经研究了裂缝闭合过程的过去的研究已经假定断裂表面在粗糙表面和粗糙度上均匀地闭合两个平行板。 实际上,液压诱导的骨折在中间和骨折尖端附近更宽。 结果,粗糙骨折表面上的粗糙度在裂缝尖端附近接触,然后在骨折的中间靠近裂缝尖端。 尚未调查整个断裂几何形状的这种演变及其对应力再分布和接触行为的影响。

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