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Finite element simulation of transient geothermal flow in extremely heterogeneous fractured porous media

机译:非均质压裂多孔介质中瞬态地热流动的有限元模拟

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摘要

Mineral deposits are strongly influenced by geothermal fluid behaviours, some of them are dominated by transient fluid flow and heat transfer in the extremely complicated fractured porous media. This paper will focus on the nonlinear finite element analysis of such transient geothermal flow behaviours in extremely heterogeneous fractured porous media. This includes the advanced unstructured mesh generation of extremely heterogeneous fractured porous media by using an image-based automatic meshing method for multi-materials and a nonlinear coupled finite element solver, which ensure an efficient numerical description and analysis of geothermal flow in each component of the extremely heterogeneous fractured porous media. The proposed approach has been implemented in our in-house finite element code and benchmarked with an analytical solution. Finally, a practical application example of a 3D fractured rock mass with multiple fractures and permeable components is analyzed to address how the heterogeneity of the fractured rock mass affects the transient fluid flow and heat transfer in the different rock components. Both the model verification and practical application are provided to demonstrate the capability and usefulness of the proposed approach for simulating transient geothermal flow in extremely heterogeneous fractured porous media.
机译:矿物沉积物受地热流体行为的强烈影响,其中一些受瞬态流体流动和极其复杂的压裂多孔介质传热的支配。本文将集中于非均质压裂多孔介质中这种瞬态地热流动行为的非线性有限元分析。这包括通过使用基于图像的多材料自动网格划分方法和非线性耦合有限元求解器,先进的非结构化破碎多孔介质的高级非结构网格生成方法,可确保对模型中各个部分的地热流进行有效的数值描述和分析。极不均匀的破裂多孔介质。建议的方法已在我们内部的有限元代码中实现,并以分析解决方案为基准。最后,分析了具有多个裂缝和可渗透成分的3D裂隙岩体的实际应用示例,以解决裂隙岩体的非均质性如何影响不同岩石成分中的瞬变流体流动和传热的问题。提供了模型验证和实际应用,以证明所提出的方法在极端非均质裂隙多孔介质中模拟瞬态地热流的能力和实用性。

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