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Simulation of shale-proppant interaction in hydraulic fracturing by the discrete element method

机译:水力压裂中页岩-支撑剂相互作用的离散元模拟

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摘要

In this paper, a three dimensional discrete element method (3D DEM) was proposed and deployed to simulate shale-proppant interaction in hydraulic fracturing. Shale is represented by particles with cement bond, and proppant is represented by particles without a cement layer. The velocity Verlet method is implemented to substitute the traditional central time integration scheme. The proposed DEM is used to investigate the shale-proppant interactions and evaluate the fracture aperture under different proppant sizes, Young's moduli and pressure levels. The results reveal that, the more soft shale particle, the higher pressure and the larger proppant size imply smaller crack aperture and larger plastic zone for other given conditions.
机译:本文提出了一种三维离散元方法(3D DEM)并将其应用于模拟水力压裂中的页岩-支撑剂相互作用。页岩以具有胶结的颗粒为代表,支撑剂以无胶结层的颗粒为代表。实施速度Verlet方法来代替传统的中央时间积分方案。提出的DEM用于研究页岩-支撑剂相互作用,并评估不同支撑剂尺寸,杨氏模量和压力水平下的裂缝孔径。结果表明,在其他给定条件下,页岩颗粒越软,压力越高,支撑剂的粒径越大,意味着裂缝孔径越小,塑性区越大。

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