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Enhanced geothermal system modelling with multiple pore media: Thermo-hydraulic coupled processes

机译:具有多种孔隙介质的增强型地热系统建模:热液耦合过程

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This paper presents a new numerical model designed to simulate energy mining in naturally fractured faulted geothermal reservoirs. The model fully couples thermo-hydraulic (TH) processes with triple porosity-permeability properties in a unified geothermal reservoir simulation. This approach enables the investigation of multiphysical phenomena in fractured-faulted formations characterised by multiple pore media. Detailed investigations on the effects of these media on coupled transient fluid and heat flow capture basic features related to energy mining in deep geological formations. Case studies demonstrate that the model can provide a long-term assessment of deep geothermal reservoirs in naturally fractured and faulted porous media. The work provides fundamental insight into the heat transport and fluid flow through multiple pore media and the fracture-fault interface in deep geothermal reservoirs under various conditions and thus, provides a foundation for future research in the field of the enhanced energy recovery from geothermal reservoirs. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新的数值模型,旨在模拟自然裂缝断层地热储层中的能量开采。在统一的地热储层模拟中,该模型将热工(TH)过程与三重孔隙度-渗透率特性完全耦合。这种方法能够研究以多种孔隙介质为特征的断裂断裂地层中的多种物理现象。这些介质对瞬态流体和热流耦合作用的详细研究,揭示了与深部地质构造中的能量开采有关的基本特征。案例研究表明,该模型可以对天然裂缝和断层多孔介质中的深层地热储层提供长期评估。这项工作为深入研究地热在不同条件下通过多种孔隙介质的热传输和流体流动以及深部地热储层的裂缝-断层界面提供了基础,从而为今后在提高地热储层能量回收方面的研究奠定了基础。 (C)2018 Elsevier Ltd.保留所有权利。

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