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Analysis of flow and thermal breakthrough in leaky downhole coaxial open loop geothermal system

机译:泄漏井下同轴开环地热系统流动和热突破分析

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Geothermal energy is crucial to energy transformation; however, the difficulty of reinjection and the low efficiency of heat extraction need to be solved urgently. Coaxial tube heat exchanger has no difficulty of reinjection, but the averaged heat output per unit length is very limited. A new type of leaky downhole coaxial open loop geothermal system using the technique of "no water withdrawn but heat only" is proposed, which makes full use of the convective heat transfer of the aquifer and the leakage characteristics of the aquitard. From the test, heat output is up to 930 kW, which is 3.5 times that of the traditional coaxial casing, which is a promising geothermal heat extraction technique. In this study, a coupled analytical and numerical simulation model of wellhole aquifer flow and heat transfer was established to study the heat extraction performance, as well as the flow and thermal breakthrough of the system. Through the analysis of calculation results and the introduction of critical Rayleigh number, which represents the degree of convection and heat conduction, the optimal correlation between the thickness of the aquitard, injection temperature, flow rate, and permeability ratio is established. Regarding the base case thickness of the aquitard, a value of 19.51 m was suggested, and K-ratio >= 20 was suggested regarding the reservoir structure, which provides quantitative guidance and is significant for system optimization design.
机译:地热能对能源转化至关重要;然而,回注困难和热抽效率低的问题亟待解决。同轴管换热器回注不困难,但单位长度的平均热输出非常有限。提出了一种利用含水层的对流换热和含水层的渗漏特性,采用“不取水,只供热”技术的新型井下同轴渗漏地热系统。试验结果表明,该系统的热输出高达930kw,是传统同轴套管的3.5倍,是一种很有前途的地热提取技术。本研究建立了井筒含水层流动与传热的耦合分析与数值模拟模型,研究了系统的吸热性能、流动与热突破。通过对计算结果的分析,引入代表对流和热传导程度的临界瑞利数,建立了隔水层厚度、注入温度、流速和渗透率比之间的最佳关系。关于隔水层的底壳厚度,建议值为19.51 m,关于储层结构,建议K比>=20,这提供了定量指导,对系统优化设计具有重要意义。

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