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考虑热-水-力学多物理场耦合时离散裂缝网络对增强型地热系统性能的影响。

Influence of discrete fracture network on the performance of enhanced geothermal system considering thermal-hydraulic-mechanical multi-physical field coupling.

作者信息

Jiang Haiyang, Huang He, Guo Liangliang, Cao Yanling, Hu Yanchun, Cui Su, Wu Bo, Kang Fengxin, Zhang Ling, Shi Meng, Zhou Xueyu

机构信息

No.1 Institute of Geology and Mineral Resource Exploration of Shandong Province, Jinan, China.

Key Laboratory of Groundwater Resources and Environment, Ministry of Education, Jilin University, Changchun, China.

出版信息

PLoS One. 2025 Apr 23;20(4):e0320015. doi: 10.1371/journal.pone.0320015. eCollection 2025.

Abstract

The long-term circulation of cold water within the deep heat reservoir in enhanced geothermal system (EGS) involves dynamic evolution of thermal-hydraulic-mechanical (THM) fields. The characteristics of discrete fracture network (DFN) in the reservoir also affect the thermal performance of EGS. In this paper, the influence of the DFN on the performance of EGS considering THM multi-physical field couple was numerically investigated. The effect of water property change and cold tension stress with temperature was considered. The influence of DFN characteristics (fracture density, fracture aperture, angle between fracture and well connection line and fracture pattern) was discussed. Results indicate that the effect of considering water property change on the Darcy velocity is larger than considering the stress field. Considering water property change and stress field both lead to a larger Darcy velocity of the fracture water and make the temperature field drop faster. With the increase of fracture density, the production Darcy's velocity increases gradually and the difference in thermal recovery efficiency is significant. Fracture aperture has a greater influence on the temperature field of the whole DFN reservoir than fracture density. The larger the fracture aperture, it will take away the heat energy from the heat reservoir faster. The smaller the angle between fracture and well connection line, the smaller the flow resistance of the working fluid, and the larger the equivalent permeability of the reservoir DFN system. The differences in the seepage field are small for the same range of statistical characteristics and parameter values for the DFN patterns. The DFN system with uniform fracture distribution should be selected for a better EGS reservoir, and the angle between the direction of the main fracture group and the direction of the well connection line should be at a certain acute angle.

摘要

增强型地热系统(EGS)深部热储内冷水的长期循环涉及热-流-固(THM)场的动态演化。储层中离散裂缝网络(DFN)的特性也会影响EGS的热性能。本文对考虑THM多物理场耦合的DFN对EGS性能的影响进行了数值研究。考虑了水性质变化和温度引起的冷拉应力的影响。讨论了DFN特性(裂缝密度、裂缝开度、裂缝与井连线夹角以及裂缝形态)的影响。结果表明,考虑水性质变化对达西流速的影响大于考虑应力场。同时考虑水性质变化和应力场会导致裂缝水的达西流速更大,使温度场下降更快。随着裂缝密度的增加,生产达西流速逐渐增大,热采收率差异显著。裂缝开度对整个DFN储层温度场的影响大于裂缝密度。裂缝开度越大,从热储带走的热能越快。裂缝与井连线夹角越小,工作流体的流动阻力越小,储层DFN系统的等效渗透率越大。对于相同统计特征范围和参数值的DFN模式,渗流场差异较小。为了获得更好的EGS储层,应选择裂缝分布均匀的DFN系统,且主裂缝组方向与井连线方向应呈一定锐角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff9f/12017569/7a4b2909d8f6/pone.0320015.g001.jpg

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