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Particle-fluid flow and transport within rough fractures

机译:颗粒流体流动和粗糙骨折内的运输

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Proppant injection is an important part of a hydraulic fracturing programs in which fluid-particle slurry is injected into rock fractures. Injected particles are lodged between fracture surfaces during wall close-in thereby propping open the fracture, improving connectivity and production. This paper investigates behaviour of proppant particles within artificially generated rock fractures, providing insight into transport behavioural differences caused by realistic surface roughness. Better understanding of proppant behaviour within more realistic rough fracture conditions provides greater understanding of proppant transport as compared to past works where smooth walled fracture configurations were utilized. A clearer understanding is important in providing more accurate evaluation of realistic proppant flow and distribution and improving injection design. In this study a roughened surface, analogues to actual rock fracture surface, is artificially generated based on a rock surface’s fractal dimension and asperity height standard deviation. Computational representation of the rock surfaces and flow domain is generated. Resolved Discrete Element Method coupled with computational fluid dynamics (DEM-CFD) is implemented in this study to evaluate proppant particle transport behaviour within the fractures. This work highlights importance of considering fracture surface roughness in evaluating proppant flow and transport and more generally the impact of rough boundary conditions of particle-fluid systems.
机译:支撑剂注射是液压压裂程序的重要组成部分,其中流体颗粒浆料注入岩石骨折中。注入的颗粒在壁闭合期间在骨折表面之间覆盖,从而提高裂缝,提高连接和生产。本文研究了支撑剂颗粒在人为产生的岩石骨折内的行为,提供了对现实表面粗糙度引起的运输行为差异的洞察。与过去的工作相比,更逼真的粗糙骨折条件中更好地了解支撑剂行为,可以更加了解采用流动性骨折配置的过去的作品。更清晰的了解对于提供更准确的逼真的支撑剂流量和分配和改进注射设计的重要性是重要的。在该研究中,基于岩石表面的分形尺寸和粗糙度高度标准偏差,粗糙表面类似于实际岩石骨折表面的粗糙表面。产生岩石表面和流动域的计算表示。在该研究中实施了附加与计算流体动力学(DEM-CFD)的分辨离散元件方法,以评估裂缝内的支撑剂颗粒传输行为。这项工作突出了考虑裂缝表面粗糙度在评估支撑剂流动和运输方面的重要性,并且更普遍地是颗粒流体系统的粗糙边界条件的影响。

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