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Analysis and Measurement of Bubble Pumps and Impact on Single Pressure Absorption Refrigeration Cycle

机译:气泡泵的分析与测量及其对单压吸收式制冷循环的影响

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Albert Einstein invented a refrigeration cycle nearly eight decades ago. However, neither the cycle, nor a key component - the bubble pump, has been well investigated. In this paper, experimental results for a 20 percent ammonia, 4 bar, solution bubble pump test have been applied to evaluate the Einstein cycle analytically. For a bubble pump temperature of 160 degree C and an evaporator cold temperature of 12 degree C yields coefficient of performance (COP) of 0.29. This COP is 40 percent higher than the COPs that other researchers have obtained using a modified air lift pump model and the water-filled experimental rig. Based on these results, the feasibility of exploiting the cycle as a domestic air conditioning system is more economically viable.
机译:Albert爱因斯坦在近八十年前发明了一种制冷循环。然而,循环和关键部件 - 气泡泵都没有得到很好的研究。本文施加了20%氨,4巴,溶液泡沫泵试验的实验结果已应用于分析评估爱因斯坦循环。对于160摄氏度的气泡泵温度和12℃的蒸发器冷温度产生0.29的性能系数(COP)。该警察比其他研究人员使用改进的空气提升泵模型和充满水的实验钻机获得的警察高40%。基于这些结果,作为国内空调系统开采循环的可行性更为可行。

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