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A feasibility analysis of replacing the standard ammonia refrigeration device with the cascade NH3/CO2 refrigeration device in the food industry

机译:食品工业中用级联NH3 / CO2制冷装置代替标准氨制冷装置的可行性分析

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The thermodynamic analysis demonstrates the feasibility of replacing the standard ammonia refrigeration device with the cascade NH3/CO2 refrigeration device in the food industry. The main reason for replacement is to reduce the total amount of ammonia in spaces like deep-freezing chambers, daily chambers, working rooms and technical passageways. An ammonia-contaminated area is hazardous to human health and the safety of food products. Therefore the preferred reduced amount of ammonia is accumulated in the Central Refrigeration Engine Room, where the cascade NH3/CO2 device is installed as well. Furthermore, the analysis discusses and compares two left Carnot¢s refrigeration cycles, one for the standard ammonia device and the other for the cascade NH3/CO2 device. Both cycles are processes with two-stage compression and two-stage throttling. The thermodynamic analysis demonstrates that the selected refrigeration cycle is the most cost-effective process because it provides the best numerical values for the total refrigeration factor with respect to the observed refrigeration cycle. The chief analyzed influential parameters of the cascade device are: total refrigeration load, total reactive power, mean temperature of the heat exchanger, evaporating and condensing temperature of the low-temperature part.
机译:热力学分析证明了在食品工业中用级联NH3 / CO2制冷设备代替标准氨制冷设备的可行性。更换的主要原因是为了减少深冷冻室,日用室,工作室和技术通道等空间中氨的总量。被氨污染的区域对人体健康和食品安全具有危害。因此,优选的减少量的氨会积聚在中央制冷机房中,在该机房中还安装了级联NH3 / CO2设备。此外,分析讨论并比较了两个左卡诺的制冷循环,一个用于标准氨装置,另一个用于级联NH3 / CO2装置。两个循环都是具有两阶段压缩和两阶段节流的过程。热力学分析表明,所选的制冷循环是最具成本效益的过程,因为相对于观察到的制冷循环,它为总制冷因子提供了最佳的数值。分析的主要影响级联设备的参数是:总制冷负荷,总无功功率,热交换器的平均温度,低温部分的蒸发和冷凝温度。

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