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A novel single-well geothermal system for hot dry rock geothermal energy exploitation

机译:一种用于热干岩地热能开发的新型单井地热系统

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Existing hot dry rock geothermal projects are commonly confronted with some technical issues, such as corrosion and scaling, and water loss. To resolve these issues, the present work proposes a novel system for mining hot dry rock geothermal energy, in which a reservoir is combined with a heat pipe system. The new system encompasses a heat pipe placed in a single-well to extract hot dry rock geothermal energy, while an artificial reservoir is built around the main endothermic region of the well, which is permeable and saturated with carbon dioxide (CO2). This wellbore structure design may stimulate a stronger natural convection in the reservoir, resulting in a higher thermal power production. To evaluate the proposed system, an extensive numerical investigation was conducted. The comparison of the proposed system with the conventional downhole heat exchanger (DHE) system in terms of heat extraction performance indicates clear superiority of the proposed system primarily due to the associated thermosyphon effect of CO2 fluid in the reservoir. To better understand how operating and design variables affect the heat extraction performance of the system, a detailed sensitivity analysis was conducted taking into consideration a wide range of possible configurations and working conditions. The eventually obtained knowledge will guide the design of the system in practice. (C) 2018 Elsevier Ltd. All rights reserved.
机译:现有的干热岩地热项目通常面临一些技术问题,例如腐蚀和结垢,以及水分流失。为了解决这些问题,本工作提出了一种新颖的用于开采热干岩地热能的系统,其中,储层与热管系统相结合。新系统包括一个放置在单井中的热管,以提取热的干燥岩石地热能,同时在该井的主要吸热区周围建立了一个人工储层,该储层是可渗透的并充满了二氧化碳(CO2)。这种井眼结构设计可能会激发储层中更强的自然对流,从而产生更高的热能产量。为了评估建议的系统,进行了广泛的数值研究。拟议系统与常规井下换热器(DHE)系统在吸热性能方面的比较表明,拟议系统的明显优势主要是由于储层中CO2流体的相关热虹吸效应。为了更好地了解操作和设计变量如何影响系统的散热性能,进行了详细的灵敏度分析,同时考虑了各种可能的配置和工作条件。最终获得的知识将在实践中指导系统的设计。 (C)2018 Elsevier Ltd.保留所有权利。

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