Effect of reservoir properties on the heat extraction performance in multi-well production EGS

IF 1.5 Q3 GEOSCIENCES, MULTIDISCIPLINARY Geosystem Engineering Pub Date : 2021-07-04 DOI:10.1080/12269328.2021.1949756
Songze Liu, J. Wei, Hongliang Liu, Xuemei Liu, Bingxu Yan
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Abstract

ABSTRACT A multi-well production enhanced geothermal system (EGS) with discrete fracture network is designed for heat extraction in this study. A thermal-hydraulic numerical simulation model is established, and the effect of reservoir properties on heat extraction is investigated. The results show that the growth rate of heat extraction efficiency will decrease as the mining time increases. The initial reservoir temperature has a positive correlation with average production temperature which provides a broad space for the use of extracted thermal energy. The variation of initial reservoir pressure has little effect on the heat extraction performance. A higher matrix permeability leads to a higher average production temperature and heat extraction ratio which prompts more working fluid flow into the matrix, the heat transfer process is enhanced. Under the conditions of this study, the preferred initial reservoir temperature is 493.15 K, the matrix permeability is 10−14m2.
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储层物性对多井采油EGS采热性能的影响
摘要本研究设计了一种具有离散裂缝网络的多井生产强化地热系统(EGS),用于提取热量。建立了热力水力学数值模拟模型,研究了储层性质对热采收率的影响。结果表明,随着开采时间的增加,采热效率的增长率会降低。初始储层温度与平均生产温度呈正相关,这为提取的热能的使用提供了广阔的空间。储层初始压力的变化对抽热性能影响不大。较高的基质渗透率导致较高的平均生产温度和热提取率,这促使更多的工作流体流入基质,从而增强了传热过程。在本研究条件下,优选的初始储层温度为493.15K,基质渗透率为10−14m2。
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来源期刊
Geosystem Engineering
Geosystem Engineering GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
2.70
自引率
0.00%
发文量
11
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