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Numerical investigation of a two-stage air-cooled absorption refrigeration system for solar cooling: Cycle analysis and absorption cooling performances

机译:两级风冷吸收式制冷系统的数值研究:循环分析和吸收式制冷性能

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摘要

Two-stage air-cooled ammonia-water absorption refrigeration system could make good use of low-grade solar thermal energy to produce cooling effect. The system simulation results show that thermal COP is 0.34 and electrical COP is 26 under a typical summer condition with 85 ℃ hot water supplied from solar collector. System performances under variable working conditions are also analyzed. Circular finned tube bundles are selected to build the air-cooled equipment. The condenser should be arranged in the front to get an optimum system performance. The mathematical model of the two-stage air-cooled absorber considering simultaneous heat and mass transfer processes is developed. Low pressure absorber should be arranged in front of middle pressure absorber to minimize the absorption length. Configuration of the air-cooled equipment is suggested for a 5 kW cooling capacity system. Temperature and concentration profiles along the finned tube length show that mass transfer resistance mainly exists in liquid phase while heat transfer resistance mainly exists in cooling air side. The impacts on system refrigeration capacities related to absorption behaviors under variable working conditions are also investigated. Both cycle analysis and absorption performances show that two-stage air-cooled ammonia-water absorption chiller is technically feasible in practical solar cooling applications.
机译:两级风冷氨水吸收式制冷系统可以很好地利用低等级的太阳能来产生制冷效果。系统仿真结果表明,在典型的夏季条件下,由太阳能集热器提供的热水为85℃时,热COP为0.34,电COP为26。还分析了在可变工作条件下的系统性能。选择圆形翅片管束来构建风冷设备。冷凝器应布置在前面,以获得最佳系统性能。建立了同时考虑传热和传质过程的两级风冷吸收器的数学模型。低压吸收器应布置在中压吸收器的前面,以最小化吸收长度。建议为5 kW制冷量系统配置风冷设备。沿着翅片管长度的温度和浓度曲线表明,传质阻力主要存在于液相中,而传热阻力主要存在于冷却空气侧。还研究了与可变工作条件下的吸收行为有关的系统制冷能力的影响。循环分析和吸收性能均表明,两级风冷氨水吸收式冷却器在实际的太阳能冷却应用中在技术上是可行的。

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