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A numerical investigation into the use of directionally drilled wells for the extraction of geothermal energy from abandoned oil and gas wells

机译:从废油和气体井中萃取地热能使用方向钻井井的数值调查

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Geothermal energy is an ideal renewable resource for power production since it is not limited by the intermittency issues associated with other renewables like wind and solar. Despite its ability to provide a steady supply of electricity on demand, the adoption of geothermal is not widespread, largely due to the high cost of drilling. One way to mitigate this cost is to use abandoned oil and gas wells, which are abundant (with an estimated 2.3 million in the United States) but pose a potential hazard to the environment. Studies in the literature have proposed installing heat exchangers in vertical wells to solve this problem. Vertical designs, however, would undergo high friction and temperature losses due to the use of internal piping. Such designs also do not enable the use of the L-shaped directionally drilled wells which have greater contact with the ground at high temperatures. This paper proposes an approach for extracting geothermal energy from abandoned oil and gas wells by using directionally drilled wells, thereby improving upon the existing designs by eliminating internal piping and maximizing contact with high ground temperatures. Through additional drilling, two adjacent wells can be connected to create a continuous loop from which thermal energy can be collected for use in a power cycle. The proposed geometry was studied numerically to determine the outlet temperatures and heat extraction rates from the system for the prediction of thermal energy extraction and electrical power production. The results show that a system with 4000 m deep vertical wells and a 4800 m horizontal section could produce approximately 2 MW of thermal energy and 200 kW of power using an organic Rankine cycle. Moreover, these wells are capable of providing a heat source for electricity generation for several decades.
机译:地热能量是一种理想的可再生能源资源,因为它不受与风和太阳能等可再生能源相关的间歇性问题的限制。尽管有能力提供稳定的电力供应,但地热采用并不普遍,主要是由于钻井成本高。减轻这种成本的一种方法是使用废弃的石油和天然气井,这是丰富的(在美国估计为230万),但对环境造成了潜在的危害。文献中的研究已经提出在垂直井中安装热交换器来解决这个问题。然而,由于使用内部管道,垂直设计将经历高摩擦和温度损失。这种设计也不能使用L形方向钻孔的井,其在高温下与地面具有更大接触。本文提出了一种通过使用方向钻孔井从废弃的油气井中提取地热能的方法,从而通过消除内部管道并最大化与高地温度的接触来改善现有设计。通过额外的钻孔,可以连接两个相邻的孔以产生连续环,从中可以收集热能以用于电源循环。所提出的几何形状是在数值上进行研究的,以确定从系统预测热能提取和电力生产系统的出口温度和热提取率。结果表明,具有4000米的垂直井和4800米水平部分的系统可以使用有机朗肯循环产生大约2兆瓦的热能和200kW的电力。此外,这些井能够为几十年提供发电的热源。

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