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Comparison of heat sink and fan combinations and thermal electric coolers for use in the Mars Gravity Biosatellite

机译:用于火星重力生物卫星的散热器和风扇组合以及热电冷却器的比较

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摘要

An experiment was conducted to help compare possible cooling methods for the payload module of the Mars Gravity Biosatellite. The Satellite will be launched into space with 15 mice on board and rotated to create a 0.38g centrifugal acceleration, the acceleration due to gravity on Mars. The mission will last 5 weeks and take valuable data on mammal's responses to extended periods of time in reduced gravity. Because of a large heat shield needed for reentering the Earth's atmosphere, the payload module is nearly perfectly insulated. It is therefore necessary to actively transport heat out of the capsule and radiate it off into space. A thermal electric cooler and a heat sink and fan combination were compared in this experiment for that purpose, using a Styrofoam cooler as a model payload. It was found that the fan and heat sink combination was more efficient than the thermal electric cooler. The coefficient of performances of the respective cooling elements was found to be 5.89 for the fan and heat sink while only 1.67 for the thermal electric cooler. However, it was also observed that the thermal electric cooler, while less efficient, could transport much more heat than the fan and heat sink alone, 26.4 Watts compared to 9.73 Watts in the experimental set up. It has been recommended that a combination of a fan and heat sink be used in the payload module of the satellite.
机译:进行了一项实验,以帮助比较火星重力生物卫星有效载荷模块的可能冷却方法。卫星将搭载15只老鼠升空进入太空,并旋转以产生0.38克离心加速度,该加速度是火星上的重力所致。该任务将持续5周,并收集有关哺乳动物在重力降低的情况下对较长时间响应的有价值的数据。由于需要重新进入地球大气层的大型隔热罩,有效负载模块几乎可以完全绝缘。因此,有必要将热量主动从胶囊中运出并将其辐射到太空中。为此,在本实验中使用聚苯乙烯泡沫塑料冷却器作为模型有效负载,比较了热电冷却器以及散热器和风扇的组合。发现风扇和散热器的组合比热电冷却器更有效。风扇和散热器的各个冷却元件的性能系数为5.89,而热电冷却器的系数仅为1.67。但是,还观察到,热电冷却器虽然效率较低,但与单独的风扇和散热器相比,其传输的热量要多得多,为26.4瓦,而实验设置为9.73瓦。建议在卫星的有效载荷模块中使用风扇和散热器的组合。

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