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首页> 外文期刊>International Journal of Refrigeration >Simulation of an ammonia-water compression-absorption refrigeration system for water chilling application
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Simulation of an ammonia-water compression-absorption refrigeration system for water chilling application

机译:用于水冷应用的氨水压缩吸收式制冷系统的仿真

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摘要

A detailed simulation of a 400 kW ammonia-water compression-absorption refrigeration system has been carried out for water chilling application for summer air conditioning. Simulation has been performed for three different configurations of system having 17%, 23%, and 30% relative solution heat exchanger areas. The effect of relative solution heat exchanger area and mass flow rate of weak solution on the COP, cooling capacity and absorber heat load has been studied. The results show that the COP of the system can be increased by maintaining low mass flow rate of weak solution and large relative solution heat exchanger area. Increase in the relative solution heat exchanger area from 10 to 30% resulted in an increase in COP by about 16%. Further increase in relative SHX area revealed that there exists an optimum area at which COP becomes maximum. The performance of this system has been compared with that of a conventional R 22 vapor compression type chiller.
机译:对于夏季空调的水冷应用,已经对400 kW氨水压缩吸收式制冷系统进行了详细的模拟。已经对具有17%,23%和30%相对溶液热交换器面积的三种不同配置的系统执行了仿真。研究了溶液相对换热器面积和稀溶液质量流量对COP,冷却能力和吸收塔热负荷的影响。结果表明,通过保持弱溶液的低质量流量和较大的溶液相对热交换器面积,可以提高系统的COP。相对溶液热交换器的面积从10%增加到30%,导致COP增加约16%。 SHX相对面积的进一步增加表明存在一个使COP变为最大的最佳区域。该系统的性能已与常规R 22蒸气压缩式冷却器进行了比较。

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