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首页> 外文期刊>Renewable energy >Closed-loop geothermal energy recovery from deep high enthalpy systems
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Closed-loop geothermal energy recovery from deep high enthalpy systems

机译:深环高焓系统闭环地热能恢复

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摘要

Closed-loop geothermal energy recovery technology has advantages of being independent of reservoir fluid and permeability, experiencing less parasitic load from pumps, and being technologically ready and widely used for heat exchange in shallow geothermal systems. Commercial application of closed-loop geothermal technology to deep high-enthalpy systems is now feasible given advances in drilling tech-nology. However, the technology it uses has been questioned due to differences in heat transport ca-pacities of convective flow within the wellbores and conductive flux in the surrounding rock. Here we demonstrate that closed-loop geothermal systems can provide reasonable temperature and heat duty for over 30 years using multiple laterals when installed in a suitable geological setting. Through use of two analytical methods, our results indicate that the closed-loop geothermal system is sensitive to reservoir thermal conductivity that controls the level of outlet temperature and interference between wells over time. The residence time of the fluid in the horizontal section, calculated as a ratio of the lateral length to flow rate, dictates heat transport efficiency. A long vertical production section could cause large drops in fluid temperature in a single lateral production system, but such heat loss can be reduced significantly in a closed-loop system with multiple laterals. Crown Copyright (c) 2021 Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:闭环地热能恢复技术具有独立于储层流体和渗透性的优点,经历较少的捕获量来自泵,并且在技术上准备好并广泛用于浅层地热系统中的热交换。闭环地热技术对深度高焓系统的商业应用现在可行的钻井技术的进步。然而,由于热传输在周围岩石中的霍尔钻和导电通量内的热传输Ca-Palities的差异,它使用的技术已经受到质疑。在这里,我们证明闭环地热系统可以在安装在合适的地质环境中时,使用多个侧面提供合理的温度和热量超过30年。通过使用两种分析方法,我们的结果表明闭环地热系统对储层导热率敏感,控制出口温度和随着时间的流畅之间的干扰。流体在水平截面中的停留时间,计算为横向长度与流速的比率,决定了传热效率。长时间的垂直生产部分可能在单个横向生产系统中造成液体温度的大滴,但是在具有多个侧向的闭环系统中可以显着降低这种热量损失。 Crown版权所有(c)2021由elsevier有限公司出版。这是CC下的公开访问文章,由许可证(http://creativecommons.org/licenses/by/4.0/)。

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