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Numerical investigation of initiation and propagation of hydraulic fracture using the coupled Bonded Particle-Lattice Boltzmann Method

机译:结合键格-玻尔兹曼耦合方法数值模拟水力压裂的发生与扩展

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摘要

This paper presents a coupled Bonded Particle and Lattice Boltzmann Method (BPLBM) for modelling fluid-solid interactions in engineering, e.g. geomechanics. In this novel technique, the Bonded Particle model is employed to describe the inter-particle interactions, and the bonds between contacted particles are assumed to be broken when the tensional force and/or tangential force reach a certain critical value; while the Lattice Boltzmann method is used to model the fluid phase, and the Immersed Moving Boundary (IMB) scheme is utilised to resolve the fluid-solid interactions. Based on this novel technique, the investigation of hydraulic fracturing is carried out. The onset and propagation of hydraulic fracture are successfully captured and reproduced. Numerical results show that the coupled BPLBM is promising and efficient in handling complicated fluid-solid interactions at the grain level in hydraulic fracturing. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种结合的键合粒子和格子Boltzmann方法(BPLBM),用于对工程中的流固相互作用进行建模,例如地质力学。在这种新技术中,采用“键合粒子”模型来描述粒子间的相互作用,并假设当拉力和/或切向力达到某个临界值时,接触的粒子之间的键被破坏。而使用Lattice Boltzmann方法对流体相进行建模,并使用浸入运动边界(IMB)方案来解决流固耦合。基于这种新技术,进行了水力压裂研究。水力压裂的发生和传播被成功地捕获和再现。数值结果表明,在水力压裂过程中,耦合的BPLBM在处理颗粒级复杂的流固相互作用方面是有前途的和有效的。 (C)2016 Elsevier Ltd.保留所有权利。

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