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首页> 外文期刊>Rudarsko-Geolosko-Naftni Zbornik >STEADY-STATE HEAT REJECTION RATES FOR A COAXIAL BOREHOLE HEAT EXCHANGER DURING PASSIVE AND ACTIVE COOLING DETERMINED WITH THE NOVEL STEP THERMAL RESPONSE TEST METHOD
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STEADY-STATE HEAT REJECTION RATES FOR A COAXIAL BOREHOLE HEAT EXCHANGER DURING PASSIVE AND ACTIVE COOLING DETERMINED WITH THE NOVEL STEP THERMAL RESPONSE TEST METHOD

机译:新型热响应试验法确定被动和主动冷却过程中同轴孔换热器的稳态传热速率

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摘要

At three locations in Zagreb, classical and extended thermal response test (TRT) was conducted on installed coaxial heat exchangers. With classic TR test, thermogeological properties of the ground and thermal resistance of the borehole were determined at each location. It is seen that thermal conductivity of the ground varies, due to difference in geological profile of the sites. In addition, experimental research of steady-state thermal response step test (SSTRST) was carried out to determine heat rejection rates for passive and active cooling in steady state regime. Results showed that heat rejection rate is only between 8-11 W/m, which indicates that coaxial system is not suitable for passive cooling demands. Furthermore, the heat pump in passive cooling mode uses additional plate heat exchanger where there is additional temperature drop of working fluid by approximately 1,5 ?°C. Therefore, steady-state rejection rate for passive cooling is even lower for a real case project. Coaxial heat exchanger should be always designed for an active cooling regime with an operation of a heat pump compressor in a classical vapour compression refrigeration cycle.
机译:在萨格勒布的三个地点,对已安装的同轴热交换器进行了经典和扩展的热响应测试(TRT)。通过经典的TR试验,可以在每个位置确定地面的热地质特性和井眼的热阻。可以看出,由于场地地质剖面的不同,地面的热导率会发生变化。此外,还进行了稳态热响应阶跃试验(SSTRST)的实验研究,以确定稳态下被动和主动冷却的散热率。结果表明,散热率仅在8-11 W / m之间,这表明同轴系统不适合被动冷却需求。此外,在被动冷却模式下的热泵使用附加的板式热交换器,其中工作流体的附加温度下降约1.5°C。因此,对于实际项目,被动冷却的稳态抑制率甚至更低。同轴换热器应始终设计为在经典的蒸气压缩式制冷循环中通过热泵压缩机的运行进行主动冷却。

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