基于R125和R134A制冷剂的单级吸收系统

A. Levy, M. Jelínek, I. Borde
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引用次数: 7

摘要

目前吸收技术的发展包括研究新的工作对和新的超前循环,这将有助于提高吸收装置的效率,并扩大对不同温度范围的适用性。评估了作为氟氯化碳替代品的两种制冷剂四氟乙烷(R134a)和五氟乙烷(R125)与吸收剂二甲基醚三甘醇(DMETEG)结合在低温热源驱动的吸收机中的可能利用情况。计算机模拟程序用于比较不同的制冷剂-吸收剂对。该项目基于一个先进的单级循环,其中包含一个喷射器。吸收循环用每个组分的热量和质量平衡来表示,计算是基于我们实验室测量和评估的制冷剂-吸收剂对的热物理性质。循环分析的目的是评价在一定的蒸发水和冷却水温度下,不同发电机组温度下的最高性能系数(COP)和最低循环比(f)。在最大COP条件下,研究了蒸发器和冷却水温度对COP和循环比f的影响。
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Single stage absorption system based on refrigerants R125 and R134A with DMETEG
Current developments in absorption technology include the research for new working pairs and new advance cycles that would facilitate increased efficiency of absorption units and extend applicability to different temperature ranges. Two refrigerants tetrafluoroethane (R134a) and pentafluoroethane (R125) that are alternatives to chlorofluorocarbons, in combination with absorbent dimethylether teraethylene glycol (DMETEG) were evaluated for possible utilization in absorption machines powered by low temperature heat sources. A computerized simulation program was used to compare the different refrigerant-absorbent pairs. The program was based on an advance single-stage cycle containing a jet ejector. The absorption cycle was represented in terms of heat and mass balance for each component and the calculations were based on the thermophysical properties of the refrigerant-absorbent pairs measured and evaluated in our laboratory. The aim of the cycle analysis was to evaluate the highest coefficient of performance (COP) and the lowest circulation ratio (f), which can be obtained for different generator temperatures under a constant evaporating and cooling water temperatures. The effects of changes in the evaporator and the cooling water temperatures on the COP and the circulation ratio, f, were also examined at the generator temperature at maximum COP.
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