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Near-field ground thermal response to heating of a geothermal energy pile: Observations from a field test

机译:对地热能堆加热的近场地面热响应:现场测试的观察结果

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摘要

Field observations from a heating test conducted on a geothermal energy pile, containing two Osterberg cells, installed in a dense sandy material are reported. An instrumented pile and two boreholes were installed for this purpose. The pile was heated for various time intervals and the ground heat response was observed via thermocouples installed at various depths in the two boreholes. A time lag in the diffused heat wavefront arrival was consistently observed in the borehole farthest from the heat source (i.e. pile). This suggests heat diffused slowly in the ground and its intensity reduced with distance from the heat source. Heat transfer was affected by the ground stratigraphy. The pile and the ground were allowed to cool by letting heat dissipate naturally once the heating test was completed. It was found that both the pile and the ground required at least more than twice the heating time to have full thermal recovery from the heating process. A constant heat exchange rate (or heat rejection rate) of 100–125 W/m2 was achieved, despite continuous rise in temperature of the pile and the ground.
机译:据报道,在一个装有两个Osterberg电池的地热能堆上进行的加热试验进行了现场观察,该堆安装在稠密的沙质材料中。为此目的,安装了一个仪器桩和两个钻孔。将桩加热不同的时间间隔,并通过安装在两个钻孔中不同深度的热电偶观察地热响应。在距热源(即堆)最远的井眼中始终观察到扩散热波前到达的时滞。这表明热量在地下缓慢扩散,其强度随距热源的距离而减小。传热受地层影响。加热测试完成后,通过自然散热,使桩和地面冷却。已经发现,桩和地面都需要至少两倍以上的加热时间才能从加热过程中完全回收热量。尽管桩和地面的温度不断升高,但仍实现了100-125 W / m2的恒定热交换率(或排热率)。

著录项

  • 作者

    Singh, RM; Bouazza, A; Wang, B;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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