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Meshless numerical modeling of brittle-viscous deformation: first results on boudinage and hydrofracturing using a coupling of discrete element method (DEM) and smoothed particle hydrodynamics (SPH)

机译:脆性变形的无网格数值模拟:使用离散元方法(DEM)和平滑粒子流体动力学(SPH)的结合进行水力压裂的初步结果

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摘要

We have developed a new approach for the numerical modeling of deformation processes combining brittle fracture and viscous flow. The new approach is based on the combination of two meshless particle-based methods: the discrete element method (DEM) for the brittle part of the model and smooth particle hydrodynamics (SPH) for the viscous part. Both methods are well established in their respective application domains. The two methods are coupled at the particle scale, with two different coupling mechanisms explored: one is where DEM particles act as virtual SPH particles and one where SPH particles are treated like DEM particles when interacting with other DEM particles. The suitability of the combined approach is demonstrated by applying it to two geological processes, boudinage, and hydrofracturing, which involve the coupled deformation of a brittle solid and a viscous fluid. Initial results for those applications show that the new approach has strong potential for the numerical modeling of coupled brittle-viscous deformation processes.
机译:我们已经开发出一种新的方法,用于对脆性断裂和粘性流相结合的变形过程进行数值模拟。新方法是基于两种基于无网格粒子的方法的组合:用于模型的脆性部分的离散元素方法(DEM)和用于粘性部分的光滑粒子流体动力学(SPH)。两种方法都在各自的应用领域中得到了很好的确立。两种方法在粒子尺度上耦合,探索了两种不同的耦合机制:一种是DEM粒子充当虚拟SPH粒子,另一种方法是当SPH粒子与其他DEM粒子相互作用时被视为DEM粒子。通过将组合方法应用于两个地质过程(boudinage和水力压裂),证明了组合方法的适用性,这两个过程涉及脆性固体和粘性流体的耦合变形。这些应用的初步结果表明,该新方法在耦合脆性粘性变形过程的数值建模中具有强大的潜力。

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