高地温梯度田外发电闭环地热系统的局限性。

Sri Kalyan Tangirala, Víctor Vilarrasa
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摘要

闭环地热系统(CLGS)通过几个井眼大小的平行分支连接注入井和生产井,而不是通过裂缝网络循环工作流体。许多公司已经获得了数百万美元的投资,因为他们声称CLGS在供暖和发电方面都是可扩展的。研究表明,由于井周围岩石基体的快速冷却,水平段的高流速会导致生产温度急剧下降。为了克服CLGS的物理限制,需要钻几个分支井来降低横向流速,这是一项昂贵的任务。然而,模拟结果表明,对于温度为180°C的油藏,即使有30条多边井段和75 kg/s的产量,这些系统的总收益也无法收回所产生的生命周期成本,这清楚地表明CLGS不能扩展到单独发电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the limitations of closed-loop geothermal systems for electricity generation outside high-geothermal gradient fields.

Closed-Loop Geothermal Systems (CLGS) involve connecting the injection and production wells through several borehole-sized parallel laterals instead of circulating a working fluid through a fracture network. Companies have garnered millions of dollars in investments on the claim that CLGS is truly scalable for both heating and electricity generation purposes. We show that high flow rates in the laterals lead to a steep drop in production temperatures because of a rapid cooling of the rock matrix surrounding the wells. Overcoming this physical limitation of CLGS demands an expensive task of drilling several multilaterals to reduce the lateral flow rate. Yet, simulation results indicate that, for a reservoir temperature of 180 °C, the total revenue of these systems fail to recover the lifetime costs incurred, even with 30 multilaterals and a production rate of 75 kg/s, which clearly indicates that CLGS are not scalable for solely electricity generation.

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