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Potential for heat production by retrofitting abandoned gas wells into geothermal wells

机译:通过将废弃的气井改造成地热井来产生热量的潜力

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摘要

Using abandoned gas wells as geothermal resources for energy production is an effective way to extract geothermal energy from geological formations. These abandoned wells have the potential to significantly contribute in the rising global demand for energy without requiring the land disruption resulting from deep drilling or digging, processes necessary for energy extraction from geological formations via more traditional methods. In this paper, a method to extract geothermal energy from abandoned gas wells is proposed. The method offers an efficient, economical, and environmentally-conscious way to generate electricity. A mathematical model of a thermal and hydraulic coupling process is constructed, and a 3D numerical model is generated to study the process of geothermal energy extraction by retrofitting an abandoned gas reservoir into a geothermal reservoir. Using the model, heat extraction and fluid flow are analyzed over a period of 50 years. The heat production, electricity generation, and thermal recovery over the lifetime of the reservoir indicate that a commercially viable geothermal dual well system can produce geothermal energy effectively. Dual-well systems contain at least one injection well and one production well. They are composed of a two-way flow system in which the fluid flows into the reservoir via an injection well and returns from the production well having absorbed thermal energy from the surrounding rocks. Sensitivity analysis of the main parameters controlling the average outlet temperature of the fluid from the sedimentary geothermal system reveals that abandoned gas wells are a suitable source of geothermal energy. This energy can be harvested via a method whose use of reservoir fluids differs from that of the traditional method of closed-loop circulation via a borehole heat exchanger. Here, it is demonstrated that abandoned oil and gas fields can be repurposed to be geothermal energy sources that provide low-cost electricity and are economically sustainable.
机译:利用废弃的气井作为地热资源进行能源生产是从地质构造中提取地热能的有效途径。这些废弃的井有可能在全球不断增长的能源需求中发挥重要作用,而无需因深层钻探或挖掘,通过更传统的方法从地质构造中提取能量所必需的过程而破坏土地。本文提出了一种从废弃气井中提取地热能的方法。该方法提供了一种高效,经济,环保的发电方式。建立了热力和水力耦合过程的数学模型,并生成了3D数值模型来研究通过将废弃的气藏改建为地热储层来提取地热能的过程。使用该模型,分析了50年内的热量提取和流体流动。在储层寿命期间的热量产生,发电和热采收表明,商业上可行的地热双井系统可以有效地生产地热能。双井系统包含至少一口注入井和一口生产井。它们由双向流动系统组成,其中流体通过注入井流入储层,并从已从周围岩石吸收热能的生产井返回。对控制来自沉积地热系统流体平均出口温度的主要参数的敏感性分析表明,废弃的气井是合适的地热能源。可以通过一种方法收集这种能量,该方法的储层流体使用方法不同于传统的通过钻孔热交换器进行闭环循环的方法。在此证明,废弃的油气田可以重新用作地热能源,从而提供低成本的电力并且在经济上可持续。

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