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A viscoplastic approach for pore collapse in saturated soft rocks using REDBACK: An open-source parallel simulator for Rock mEchanics with Dissipative feedBACKs

机译:使用REDBACK的粘塑性方法,用于饱和软岩中的孔塌陷:具有耗散反馈的岩石力学的开源并行模拟器

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Numerical simulators have become indispensable in geomechanics to model increasingly more complex rock behaviours by harnessing the growing computational power available. Those tools aim at simulating more realistic scenarios while accounting for more physical processes. As such, geomechanical modelling remains particularly challenging because of the inherent multi-scale and multi-physics nature of all physical processes at play. In this context the standard approach of sequential coupling is reaching its limits when dealing with multiple physical processes and is maladapted for the modelling of material instabilities. We present in this study a novel numerical simulator, REDBACK, to model multi-physics Rock mEchanics with Dissipative feedBACKs in a tightly coupled manner. This tool provides both the prototyping flexibility to investigate more complex physics and non-linear feedbacks as well as the computational scalability to tackle three dimensional scenarios. We demonstrate the approach by modelling pore collapse and validating the approach against isotropic consolidation experiments on Bleurwiller sandstone as well as drained triaxial experiments on a diatomaceous mudstone. Through this exercise we identify the activation enthalpy dependency on confining pressure that is required to match the experiments. The results show that dilatancy corresponds to internal processes with negative activation volume, while contractancy corresponds to internal processes with positive activation volume. This calibration process demonstrates the importance of a physics-based approach in a multi-scale framework, where one can aim at extrapolating results outside the range of laboratory experiments based on the understanding of the underlying physical processes, when traditional engineering approaches are often limited to interpolation within the scope of sparse and expensive experiments. Crown Copyright (C) 2015 Published by Elsevier Ltd. All rights reserved.
机译:通过利用不断增长的可用计算能力,数值模拟器已成为在地质力学中为日益复杂的岩石行为建模的必不可少的工具。这些工具旨在模拟更现实的场景,同时考虑更多的物理过程。因此,由于所有物理过程都具有固有的多尺度和多物理性质,因此地质力学建模仍然特别具有挑战性。在这种情况下,顺序耦合的标准方法在处理多个物理过程时已达到其极限,并且不适用于材料不稳定性的建模。我们在这项研究中提出了一种新颖的数值模拟器REDBACK,以紧密耦合的方式对具有耗散性反馈的多物理场岩石力学建模。该工具提供了原型灵活性,可以研究更复杂的物理和非线性反馈,还提供了解决三维场景的计算可扩展性。我们通过对孔隙塌陷进行建模并针对Bleurwiller砂岩上的各向同性固结实验以及在硅藻土泥岩上的排水三轴实验进行验证,验证了该方法。通过此练习,我们确定了激活焓对匹配实验所需的约束压力的依赖性。结果表明,扩张性对应于具有负激活量的内部过程,而收缩性对应于具有正激活量的内部过程。这一校准过程证明了在多尺度框架中采用基于物理学的方法的重要性,在这种情况下,人们可以基于对基本物理过程的理解来推断实验室实验范围之外的结果,而传统的工程方法通常仅限于在稀疏和昂贵的实验范围内进行插值。 Crown版权所有(C)2015,由Elsevier Ltd.发行。保留所有权利。

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