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Butane heat pipes for stagnation temperature reduction of solar thermal collectors

机译:丁烷热管用于太阳能热收集器的停滞温度降低

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Heat pipes in solar thermal collectors enable to reduce the temperature loads in the solar circuit during stagnation periods by exploiting their dry out limit. Typically water, pentane or acetone are used as heat transfer media in collector heat pipes. Butane is very suitable to reach a high temperature gradient of the dry out even if the maximum temperature in the fluid circuit should be designed to 120°C or below. The paper presents experimental results with butane heat pipes that operate up to a maximum temperature of 120°C with a high temperature gradient in the dry-out region. This ensures that the collector performance in the operating range (typically up to 100°C) is not affected negatively by the dry-out. Different approaches to increase the thermal conductance of butane heat pipes by enhancing the inner surface of the condenser or of both, the condenser and the evaporator are experimentally assessed and discussed. Measurement results report an increase of the heat pipes' thermal conductance from 3 W/K (standard geometry) to 23 W/K.
机译:太阳能热量器中的热管通过利用它们的干燥限制来降低停滞期内太阳能电路中的温度载荷。通常,水,戊烷或丙酮被用作收集器热管中的传热介质。即使流体回路中的最高温度应该设计为120°C或更低,丁烷也非常适合于达到干燥的高温梯度。本文介绍了丁烷热管的实验结果,该丁烷热管可在干出区的高温梯度下运行到120℃的最高温度。这确保了干燥的工作范围(通常高达100°C)中的收集器性能不受干扰的影响。不同的方法通过提高冷凝器或两者的内表面以增加丁烷热管的热导率,所述冷凝器和所述蒸发器进行了实验评估和讨论。测量结果报告从3W / k(标准几何形状)到23W / k的热管的热敏的增加。

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