地热储层采热多场耦合模型研究进展

Gensheng Li , Jiayan Ji , Xianzhi Song , Yu Shi , Shuang Li , Zihao Song , Guofeng Song , Fuqiang Xu
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引用次数: 8

摘要

地热资源作为一种清洁可再生能源,其生产和利用可以为优化能源结构、节能减排做出巨大贡献。工作流体的循环抽热过程会扰乱储层内部物理场和化学场的平衡状态,并涉及传热、流动、应力和化学反应的相互耦合。揭示地热开发过程中储层内部流动与传热的耦合机制,可以为地热资源的高效开发提供重要的理论支持。本文综述了近40年来地热生产过程中储层多场耦合模型的研究进展。本文的重点是客观分析和评估每个耦合过程的重要性及其对储层抽热性能的影响。最后,我们讨论了现有的挑战和前景,以促进地热储层多场耦合模型的未来发展。准确理解多场耦合机制、有效的跨尺度建模方法以及准确表征储层裂缝形态,对于地热生产的多场耦合模型至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research advances in multi-field coupling model for geothermal reservoir heat extraction

As a kind of clean renewable energy, the production and utilization of geothermal resources can make a great contribution to optimizing the energy structure and energy conservation and emission reduction. The circulating heat extraction process of working fluid will disturb the equilibrium state of physical and chemical fields inside the reservoir, and involve the mutual coupling of heat transfer, flow, stress, and chemical reaction. Revealing the coupling mechanism of flow and heat transfer inside the reservoir during geothermal exploitation can provide important theoretical support for the efficient exploitation of geothermal resources. This paper reviews the research advances of the multi-field coupling model in the reservoir during geothermal production over the past 40 years. The thrust of this paper is on objective analysis and evaluation of the importance of each coupling process and its influence on reservoir heat extraction performance. Finally, we discuss the existing challenges and perspectives to promote the future development of the geothermal reservoir multi-field coupling model. An accurate understanding of the multi-field coupling mechanism, an efficient cross-scale modeling method, as well as the accurate characterization of reservoir fracture morphology, are crucial for the multi-field coupling model of geothermal production.

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