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THERMOELECTRIC COOLER BASED REGENERATIVE ADSORPTION REFRIGERATION SYSTEM FOR HIGH TEMPERATURE ELECTRONICS

机译:基于热电冷却器的高温电子再生吸附制冷系统

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This paper presents the analytical study of a thermoelectric cooler (TEC) based two-stage regenerative adsorption cycle with evaporator temperature ranging from 80C to 180C and heat rejection temperature ranging from 200 C to 230 C. This proposed cycle restricts the highest temperature at which the TEC regenerates heat by reducing the maximum bed temperature during the desorption phase, which leads to the possibility of the system being realized with commercially available TECs and a reasonable TEC coefficient of performance (COP~ 0.4). The low COP (<1) of the TEC results in excess heat at the desorption bed during heat regeneration. If the excess heat is rejected to the environment, COP gains arising from regeneration are reduced. Using the TEC to regenerate only part of the heat helps to mitigate this problem. The adsorption cycle in conjunction with TEC can pump heat through larger temperature differences with system efficiency much greater than that of a TEC used alone under identical conditions. The study aims to extend the limits of the adsorption refrigeration systems to provide compact cooling devices for harsh environments.
机译:本文提出一种基于一个热电冷却器(TEC)两阶段再生吸附循环与蒸发器的温度范围为80℃〜180℃,排热温度范围从200℃至230℃。该提议循环限制的最高温度的分析研究在该TEC回收物加热由在解吸阶段,其被与市售的TECs和性能的合理TEC系数(COP〜0.4)来实现通向系统的可能性降低最大床温度。在解吸床多余热量的TEC结果的低COP(<1)的热再生期间。如果多余的热量被排放到环境中,从再生产生COP增益减小。使用TEC再生的热量中的一部分,有助于缓解这一问题。与TEC结合的吸附循环可通过与系统效率远远大于在相同条件下单独使用一个TEC的较大温度差泵送热。该研究的目的是延长吸附制冷系统的极限,以用于恶劣环境中提供紧凑的冷却装置。

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