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Three-dimensional Voronoi-based distinct element model for simulation of hydraulic fracture propagation

机译:基于三维voronoi的液压骨折扩展模拟不同元素模型

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Hydraulic fracturing is a complex physical process which involves the coupling of hydraulic and mechanical behaviours as well as, in some cases, temperature effects. The interdependence of these various factors is complex, and cannot be fully captured by the relatively simple state-of-practice tools employed in investigations of hydraulic fracturing. In this paper, a new approach is presented for fully coupled hydro-mechanical simulation of hydraulic fracture propagation by using three-dimensional Voronoi geometries within the context of distinct element formulation. The block boundaries formed by the Voronoi tessellation, providing a random flow pathway for the fluid and the contact breakage due to the increase of the fluid pressure acting on them, replicate the hydraulic fracture propagation. While the Voronoi approach for hydraulic fracturing simulation has been implemented previously in 2D models, this work puts forward a technigue for extension of its application to 3D models. A series of verification tests are performed to investigate the suitability of the proposed approach. Finally, example applications are presented for simulation of single-stage and multi-stage hydraulic fracturing of intact rock by using the 3D Voronoi models at large scale.
机译:液压压裂是一种复杂的物理过程,涉及液压和机械行为的耦合以及在某些情况下,温度效应。这些各种因素的相互依存性是复杂的,并且不能通过在液压压裂的研究中采用的相对简单的实践工具完全捕获。本文通过在不同元件配方的背景下使用三维Voronoi几何形状,提出了一种新方法,用于通过在不同元件配方的背景下使用三维voronoi几何来进行液压断裂传播的完全耦合水力仿真。由voronoi曲面形成形成的块边界,为流体提供随机流动通路和由于作用于它们的流体压力的增加而导致的接触破裂,复制液压断裂繁殖。虽然Voronoi用于液压压裂仿真的方法已经在2D模型中实施,但这项工作提出了一种技术,以扩展其在3D模型中的应用。进行一系列验证测试以研究所提出的方法的适用性。最后,通过使用大规模的3D Voronoi模型来展示用于模拟完整岩石的单级和多级水力压裂的示例应用。

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