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Unsteady thermodynamic analysis for a solar driven dual storage absorption refrigeration cycle in Saudi Arabia

机译:沙特阿拉伯太阳能驱动双存储吸收式制冷循环的非稳态热力学分析

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摘要

The impact of unsteady solar intensity and ambient conditions on operation and performance parameters of an aqua-ammonia absorption chiller of 5 kW cooling power is explored. Unsteady analysis for five representative days in summer and winter in Dhahran, Saudi Arabia, is presented. The results give the variation of the absorption-chiller parameters every one hour. The absorption chiller comprises a dual (ammonia and ice) storage system to ensure cooling effect during nighttime. This storage system consists of an ice tank, one ammonia tank and two aqua-ammonia tanks. Capacity of these tanks and the required solar collector area are computed for 24-hour operation per day at a constant 5 kW cooling power. The results show that, for the given cooling power and ambient conditions, the coefficient of performance is better in winter than in summer (0.57 as compared to 0.39) but the required solar collector field area is more in winter than in summer. (C) 2014 Elsevier Ltd. All rights reserved.
机译:研究了不稳定的太阳强度和环境条件对5 kW制冷功率的氨吸收式制冷机的运行和性能参数的影响。本文介绍了沙特阿拉伯达兰夏季和冬季五个代表性日的不稳定分析。结果给出了每隔一小时吸收式冷却器参数的变化。吸收式制冷机包括双重(氨和冰)存储系统,以确保夜间的制冷效果。该存储系统由一个冰罐,一个氨罐和两个氨水罐组成。这些水箱的容量和所需的太阳能收集器面积是在恒定的5 kW制冷功率下每天24小时运行时计算得出的。结果表明,在给定的冷却功率和环境条件下,冬季的性能系数要好于夏季(0.57,而0.39),但冬季所需的太阳能集热器场面积要大于夏季。 (C)2014 Elsevier Ltd.保留所有权利。

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