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January 22, 2026Sustainability0 citationsOpen Access

Field Test Investigation into Heat Transfer Performance of Coaxial Casing Heat Exchanger Associated with Deep Geothermal Wells

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YSYuliang SunQWQilong WangYWYijie Wang

Key Points

  • The research aims to investigate the heat transfer performance of coaxial casing heat exchangers in deep geothermal wells.
  • Conducted field tests in the Guanzhong Basin, China.
  • Installed a distributed temperature sensing system with over 3000 m-depth optical fiber.
  • Monitored inlet/outlet water temperature and flow rate using an integrated temperature-pressure system.
  • Analyzed heat transfer patterns during deep geothermal well operation.
  • Higher flow rates significantly enhance heat transfer capacity of heat exchangers.
  • Increased inlet temperature has minimal effect on outlet temperature but reduces heat transfer capacity.
  • Geothermal gradient in the near-wellbore formation declines as heat exchange duration extends.

Abstract

Rapid economic growth has directly driven up energy demand, and the gradual depletion of traditional fossil fuels has severely hindered sustainable development. Developing green and efficient geothermal exploitation technologies constitutes a crucial measure for tackling this sustainable development issue. This paper presents a field test associated with a clean energy system conducted in the Guanzhong Basin, China, with the core component of a coaxial casing deep geothermal well. A distributed temperature sensing system (DTS system) with over 3000 m-depth optical fiber installed and adopted to monitor near-wellbore formation temperature changes. Combining information on the inlet/outlet water temperature and flow rate monitored by an integrated temperature–pressure monitoring system, the heat transfer patterns during the operation of the deep geothermal well are deeply investigated. The research results demonstrate that a higher operation parameter of flow rates has a significant increasing effect on the heat transfer capacity of heat exchangers for coaxial casing deep geothermal wells. Although the increase in inlet temperature has minimal effect on the outlet temperature, it leads to a continuous decline in heat transfer capacity. In addition, as heat exchange duration extends, the geothermal gradient of the near-wellbore formation progressively declines.

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Cite This Study

Sun et al. (2026) studied this question.

synapsesocial.com/papers/6971bdad642b1836717e2601https://doi.org/10.3390/su18021038
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