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A new ideal evaporative freezing cycle

机译:新的理想蒸发冷冻循环

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A new ideal evaporative freezing cycle for freezing of water is proposed and analyzed by using the conservation of energy and the conservation of mass principles. The proposed cycle utilizes low temperature heat sources such as solar energy, geothermal energy, and waste heat, and consists of a freezing chamber, an air-to-air heat exchanger, a desiccant chamber, an air-to-water heat exchanger, and a fan through which air circulates at atmospheric pressure. The operating principles of the cycle is based on the fact that as dry air picks up moisture from water, the water vapor absorbs heat primarily from the remaining body of the water, and thus the water is cooled and frozen. It is shown that the proposed system can produce 28.4 g ice/kg dry air circulated at most and have a thermal coefficient of performance up to 0.47. The proposed evaporative freezing cycle offers a viable alternative to the conventional refrigeration methods and provides refrigeration by using the inexpensive source of thermal energy source. Also, various aspects of the cycle proposed is discussed.
机译:通过能量守恒和质量守恒原理,提出并分析了一种新的理想的水冻结蒸发冷冻循环。拟议的循环利用了低温热源,例如太阳能,地热能和废热,并包括一个冷冻室,一个空气-空气热交换器,一个干燥剂室,一个空气-水热交换器和一个在大气压下空气流通的风扇。循环的工作原理基于以下事实:当干燥的空气从水中吸收水分时,水蒸气主要从水的其余部分吸收热量,因此水被冷却和冻结。结果表明,所提出的系统最多可产生28.4 g冰/ kg干燥空气循环,热性能系数高达0.47。所提出的蒸发冷冻循环提供了常规制冷方法的可行替代方案,并通过使用廉价的热能源来提供制冷。另外,讨论了所提出的循环的各个方面。

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