煤炭工程 ›› 2026, Vol. 58 ›› Issue (6): 207-213.doi: 10.11799/ce202606026

• 研究探讨 • 上一篇    下一篇

防冻型翅片相变式重力热管换热器换热特性实验研究

王 硕,张昌建,罗景辉,朱梦锴,平天祎,王 森   

  1. 1. 河北工程大学 能源与环境工程学院,河北 邯郸 056038

    2. 河北省暖通空调工程技术创新中心,河北 邯郸 056038

  • 收稿日期:2025-09-08 修回日期:2025-11-03 出版日期:2026-06-15 发布日期:2026-06-24
  • 通讯作者: 罗景辉 E-mail:luojinghui@hebeu.edu.cn

Experimental study on heat transfer characteristics of an anti-freezing finned-tube phase-change gravity heat exchanger #br#

  • Received:2025-09-08 Revised:2025-11-03 Online:2026-06-15 Published:2026-06-24

摘要:

为解决低温环境下换热器正常工作的问题,研究了防冻型重力热管技术,该热管技术在低温环境下仍能高效工作,为寒冷地区的矿井取暖提供了有效的解决方案。文章通过对防冻型重力热管实验数据的分析,探讨了不同充注量条件下重力热管的换热性能。通过测量进回水温度、质量流量、进出口风温、风速等数据,计算不同充注量下的换热量、传热系数、热阻等关键参数的变化规律。实验结果表明,在20~60 ℃的矿井典型温度区间内,热管换热量随温度升高单调递增;热管最佳充注量对应为蒸发段容积的43%~57%(90~120g),换热量较30 g低充注量提高121.21%~131.45%,此区间传热系数为58.09~61.78 W/(m2·℃,热阻低至0. 0806~0.0843℃/W。该研究为重力热管在矿井取热领域的工程应用提供关键参数依据,有望提升矿井取热效率与稳定性。

关键词:

矿井防冻, 防冻型重力热管, 换热特性, 充注量, 相变传热

Abstract:

Air-water heat exchangers are widely used in mine heat extraction owing to their advantages like simple structure and convenient installation and maintenance. Nevertheless, they are significantly influenced by air temperature; in low-temperature environments, they may even cause freezing at mine inlets, which in turn leads to the cracking of heat exchangers. Anti-freezing gravity heat pipes, a type of heat pipe technology capable of operating efficiently even in low-temperature conditions, offer an effective solution for mine heating in cold regions. This study investigates the heat transfer performance of gravity heat pipes under different charge amounts by analyzing experimental data of anti-freezing gravity heat pipes. By measuring data such as inlet and return water temperatures, mass flow rate, inlet and outlet air temperatures, and wind speed, the variation laws of key parameters like heat transfer rate, heat transfer coefficient, and thermal resistance under different charge amounts were calculated. The experimental results indicate that within the typical mine temperature range of 20 - 60 ℃, the heat transfer rate of the heat pipe increases monotonically with the rise in temperature. The optimal charge amount of the heat pipe corresponds to 43%-57% of the evaporator section volume (90-120 g), and the heat transfer rate is 121.21%-131.45% higher than that with the low charge amount of 30g. In this range, the heat transfer coefficient is 58.09-61.78 W/(m2·℃), and the thermal resistance is as low as 0.0806 - 0.0843 ℃/W. This research provides a basis for key parameters for the engineering application of gravity heat pipes in the field of mine heat extraction, and is expected to improve the efficiency and stability of mine heat extraction.

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