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A new absorption-compression refrigeration system using a mid-temperature heat source for freezing application

机译:一种新的吸收压缩制冷系统,使用中温热源进行冷冻施用

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The use of an absorption refrigeration system is a promising way to utilize waste heat from industrial processes. Ammonia-water absorption refrigeration system is commonly used for freezing applications with temperatures lower than 0 °C. When the refrigeration temperature is lower than -30 °C, the performance dramatically decreases. We proposed a new absorption-compression refrigeration system to produce cooling energy at -30 °C to -55 °C. The proposed system comprised three subsystems, namely, a power generation subsystem using an ammonia-water mixture as the working fluid, an ammonia-water absorption refrigeration subsystem, and a CO2 compression refrigeration subsystem. The system utilized the heat source in a cascade manner. The power subsystem converted the high-temperature portion of heat into power to drive the CO2 compression refrigeration subsystem, thereby resulting in the generation of low-temperature cooling energy. The low-temperature portion of heat is converted into cooling energy to offer the heat sink of the CO2 compression refrigeration subsystem. A simulation study was conducted, and results showed that the coefficient of performance of the proposed system was 0.277, which was approximately 50% higher than that of a conventional two-stage absorption refrigeration system. This work may provide a new way to produce low-temperature cooling energy using mid-temperature heat source.
机译:吸收制冷系统的使用是利用来自工业过程的废热的有希望的方法。氨 - 吸水式制冷系统通常用于冷冻施加温度低于0℃。当制冷温度低于-30°C时,性能显着降低。我们提出了一种新的吸收压缩制冷系统,在-30℃至-55℃下产生冷却能量。所提出的系统包括三个子系统,即使用氨水混合物作为工作流体的发电子系统,氨吸水制冷子系统和CO2压缩制冷子系统。该系统以级联方式利用热源。功率子系统将热量的高温部分转换为驱动CO2压缩制冷子系统,从而导致产生低温冷却能量。将低温部分的热部分转化为冷却能量,以提供CO2压缩制冷子系统的散热器。进行了仿真研究,结果表明,所提出的系统的性能系数为0.277,比常规两级吸收制冷系统高约50%。这项工作可以提供一种使用中温热源产生低温冷却能的新方法。

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