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Waste Heat Driven Multi-Bed Adsorption Chiller: Heat Exchangers Overall Thermal Conductance on Chiller Performance

机译:废热驱动的多床吸附式制冷机:热交换器对制冷机性能的总体导热系数

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The results of an analytic investigation on the influence of the thermal conductance of a sorption element (adsorber/desorber), evaporator, and condenser on the performance of a three-bed silica-gel-water adsorption chiller are presented with consideration given to the thermal capacitance ratio of the adsorbent and metal of the adsorber/desorber heat exchanger. The analysis was performed by using a cycle-simulation model developed by the authors. The chiller is driven by exploiting waste heat at a temperature 60 and 95℃ with a cooling source at 30℃ for air conditioning purpose. The results show that the cycle performance is strongly affected by the thermal capacitance ratio and sorption element thermal conductance due to several sensible heating/cooling requirements resulting from batched cycle operation. The model is somewhat sensitive to the thermal conductance of the evaporator, and the thermal conductance of the condenser is the least sensitive parameter.
机译:给出了吸附元件(吸附器/解吸器),蒸发器和冷凝器的热传导对三床硅胶-水吸附式冷却器的性能影响的分析研究结果。吸附器/解吸器热交换器的吸附剂与金属的电容比。通过使用作者开发的循环模拟模型进行分析。通过利用温度为60和95℃的废热以及30℃的冷却源来驱动冷水机来进行空调。结果表明,由于分批循环操作产生了一些明显的加热/冷却要求,因此循环性能受热容比和吸附元件热导率的强烈影响。该模型对蒸发器的热导有些敏感,而冷凝器的热导是最不敏感的参数。

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