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Evaluation Of Adding Flash Tank To Solar Combined Ejector–Absorption Refrigeration System

机译:太阳能联合喷射吸收吸收式制冷系统增加闪蒸罐的评估

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摘要

Performance of the absorption cooling system is still a challenge due to the coefficient of performance (COP) that is generally poor when compared with the conventional vapor compression cycle. High solar radiation in hot climates is usually associated with high ambient temperature and consequently peak cooling demand. Absorption cooling cycles can be powered by solar but the performance is limited by heat source temperature (solar collector) and high ambient temperature that can affect the condensation process. Efficiency enhancement of the system components is essential to increase the COP of the system. A modification in the combined absorption–ejector cooling system is adopted. Adding a removable flash tank between the condenser and evaporator could improve entrainment ratio of the ejector, along with improving the cooling effect inside the evaporator. A computer simulation program is developed to evaluate the performance of the modified combined cycle using aqua-ammonia (NH3–H2O) refrigerant. The performance of the proposed combined cooling cycle is compared with basic absorption, and combined absorption–ejector cooling cycles. Results showed a significant improvement in the COP of the modified cycle at different operating conditions. Cooling effect and capacity of the evaporator is enhanced due to the reduction of flash gas delivered to the evaporator. Furthermore, the flash tank optimized the ejector entertainment ratio and consequently increasing the condenser pressure. This optimization will enable the system to perform well in hot climates where the condenser efficiency is limited by ambient temperature.
机译:吸收式冷却系统的性能仍然是一个挑战,因为与常规蒸汽压缩循环相比,性能系数(COP)通常很差。炎热气候中的高太阳辐射通常与高环境温度有关,因此导致制冷需求高峰。吸收式冷却循环可以由太阳能驱动,但性能受到热源温度(太阳能收集器)和会影响冷凝过程的高环境温度的限制。系统组件的效率提高对于提高系统的COP至关重要。对吸收-喷射器组合冷却系统进行了修改。在冷凝器和蒸发器之间增加可移动的闪蒸罐可以提高喷射器的夹带率,并改善蒸发器内部的冷却效果。开发了一个计算机模拟程序,以评估使用氨水(NH3-H2O)制冷剂进行的联合循环的性能。拟议的联合冷却循环的性能与基本吸收以及联合吸收-喷射器冷却循环的性能进行了比较。结果表明,在不同的操作条件下,改进循环的COP显着提高。由于减少了输送到蒸发器的闪蒸气体,因此增强了蒸发器的冷却效果和容量。此外,闪蒸罐优化了喷射器娱乐比,因此提高了冷凝器压力。这种优化将使系统在冷凝器效率受环境温度限制的炎热气候中表现良好。

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