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Energetic performance analysis of a solar-driven hybrid ejector cooling and humidification-dehumidification desalination system

机译:太阳能驱动的混合喷射器冷却和加湿除湿脱水系统的能量性能分析

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One technique for improving energy efficiency is combining two or more energy systems to form a hybrid one that utilizes a single energy source. The use of renewable energy, such as solar heat to power hybrid systems, is another advantage. This paper introduces a novel hybrid ejector cooling-desalination system driven by an evacuated tube solar collector. The ejector cooling cycle (ECC) is combined with a closed-air, open-water, water-heated humidification dehumidification (HDH) desalination system. A thermodynamic model of the hybrid system has been developed, validated, evaluated, and presented in this paper, considering different refrigerants for the ejector cycle. The results indicate that the hybrid system achieved an energy utilization factor (EUF) of 1.4 with R600 as the ECC refrigerant. This represents the highest value (about 4e27%) than the other selected refrigerants. Hence, R600 is selected as the best refrigerant for the hybrid system. A case study of the hybrid system has been presented, considering several cities in Saudi Arabia using solar energy as the only source of energy. Results indicate about 15% energy input saving by the hybrid system for the specified outputs for Qassim city.(c) 2021 Elsevier Ltd. All rights reserved.
机译:一种提高能量效率的一种技术是组合两个或更多个能量系统以形成利用单个能量源的混合动力。使用可再生能源,例如太阳能热到电力混合系统,是另一个优势。本文介绍了一种由抽空管太阳能收集器驱动的混合喷射器冷却脱盐系统。喷射器冷却循环(ECC)与封闭式开放式水加热的加湿除湿(HDH)脱盐系统组合。在本文中开发,验证,评估和介绍了混合系统的热力学模型,考虑了用于喷射器周期的不同制冷剂。结果表明,混合体系的能量利用因子(EUF)为1.4,R600作为ECC制冷剂。这表示比其他选择的制冷剂的最高值(约4E27%)。因此,R600被选为混合系统的最佳制冷剂。提出了对混合动力系统的案例研究,考虑到沙特阿拉伯的几个城市使用太阳能作为唯一能量来源。结果表示QASSIM城市规定输出的约15%能量输入节省。(c)2021 elestvier有限公司保留所有权利。

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