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Modelling rock fracturing caused by magma intrusion using the smoothed particle hydrodynamics method

机译:使用平滑粒子流体动力学方法模拟岩浆侵入引起的岩石破裂

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In this paper, the applicability of a mesh-free method, called smoothed particle hydrodynamics (SPH), to modelling of geological and mineral system formation is explored, focusing on rock fracture development associated with a magmatic intrusion. A generic geological system that represents a magmatic body intruded into upper-crustal rocks typical of the Yilgarn Craton of Western Australia is modelled using SPH in order to explore patterns of fracture development around such a body. The SPH method is first validated via a uniaxial test problem. A coupled elastic deformation-fluid flow-thermal analysis is conducted to model the fracturing of rocks surrounding the magmatic intrusion, including the effects of pre-tensile and pre-compressive geotechnical strains in the rocks. The SPH method was found to be effective in capturing discrete fracturing processes caused by intruding magma which cannot be easily simulated using the finite element method (FEM). The SPH model predicted fracture patterns in the rocks that were found to compare well with geological structures observed in nature. This study establishes SPH as a useful computational tool to understand the influence of intruding magmas on rock deformation and fracture development that has important implications on fracture and vein formation, magma and fluid flow migration and hence associated mineralisation.
机译:在本文中,探讨了一种称为平滑粒子流体动力学(SPH)的无网格方法在地质和矿物系统形成建模中的适用性,重点是与岩浆侵入有关的岩石裂缝发展。使用SPH对代表侵入到西澳大利亚伊尔加恩克拉通典型的上地壳岩石中的岩浆体的一般地质系统进行建模,以探索这种体周围的裂缝发展模式。首先通过单轴测试问题验证SPH方法。进行了耦合的弹性变形-流体流动-热分析,以模拟岩浆侵入周围岩石的破裂,包括岩石中的预拉伸和预压缩岩土应变的影响。发现SPH方法有效地捕获了由侵入岩浆引起的离散压裂过程,这是使用有限元方法(FEM)无法轻易模拟的。 SPH模型预测了岩石中的断裂模式,发现该岩石模式可以与自然界中观察到的地质结构进行比较。这项研究将SPH建立为有用的计算工具,以了解侵入岩浆对岩石变形和裂缝发育的影响,这对裂缝和矿脉形成,岩浆和流体流动迁移以及相关的矿化具有重要意义。

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