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A novel low-grade heat-driven absorption refrigeration system with LiCl-H2O and LiBr-H2O working pairs

机译:具有LiCl-H2O和LiBr-H2O工作对的新型低级热驱动吸收式制冷系统

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摘要

A novel low grade heat-driven absorption refrigeration system is proposed, where LiCl-H2O with higher vapor pressure is used in the high-pressure cycle and LiBr-H2O with lower vapor pressure is employed in the low-pressure cycle. Effects of key parameters on the system performance are analyzed, and different heat source utilization modes are considered: parallel modes (PM-1 and PM-2) and serial mode (SM). What's more, comparisons among the PM-1, PM-2, SM and the traditional double-stage LiBr-H2O absorption system (TDS) are made. Results show that the PM-1 has much higher COP than the TDS under small ranges of working conditions, with the maximum COP improvement 26.7%, while the PM-2 shows prominent advantages under wider ranges, with the maximum COP improvement 35%. In addition, The PM-1 shows much higher COP than the SM under higher condensing temperature and evaporation temperature, while the SM has much lower heat source outlet temperature which is at most 12 degrees C lower than that of the PM-1. The intermediate pressure is important for the system performance and the optimum value is 2.27 kPa in the PM-1 and 2.5 kPa in the SM. For the PM-2, the intermediate pressure should be chosen to achieve low circulation ratio in the low pressure cycle. (C) 2015 Elsevier Ltd and IIR. All rights reserved.
机译:提出了一种新型的低级热驱动吸收式制冷系统,在高压循环中使用蒸气压较高的LiCl-H2O,在低压循环中使用蒸气压较低的LiBr-H2O。分析了关键参数对系统性能的影响,并考虑了不同的热源利用模式:并行模式(PM-1和PM-2)和串行模式(SM)。此外,还对PM-1,PM-2,SM和传统的两级LiBr-H2O吸收系统(TDS)进行了比较。结果表明,在小范围的工作条件下,PM-1的COP高于TDS,最大COP改善了26.7%,而PM-2在更宽的范围内显示了显着的优势,最大COP改善了35%。另外,在较高的冷凝温度和蒸发温度下,PM-1的COP值要比SM高得多,而SM的热源出口温度要低得多,最多比PM-1低12摄氏度。中压对于系统性能至关重要,最佳压力值在PM-1中为2.27 kPa,在SM中为2.5 kPa。对于PM-2,应选择中压以在低压循环中实现低循环比。 (C)2015 Elsevier Ltd和IIR。版权所有。

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