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Assessment of parabolic trough solar collector assisted solar still at various saline water mediums via energy, exergy, exergoeconomic, and enviroeconomic approaches

机译:抛物面槽太阳能收集器的评估辅助太阳能通过能量,暴风,exergoonomic和环境的盐水介质在各种盐水介质上进行评估

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The performance of parabolic trough solar collector (PTC) coupled with single slope solar still at various water mediums is assessed based on productivity, energy, exergy, exergoeconomic, and enviroeconomic methodologies and also Energy payback time. Six solar still systems are considered; conventional solar still (CSS), CSS coupled with PTC (CSS + PTC), CSS contains steel wire mesh in the basin (CSS + WM), CSS contains wire mesh and coupled with PTC (CSS + WM + PTC), CSS contains sand in the basin (CSS + SD), and CSS contains sand and integrated with PTC (CSS + SD + PTC). Experiments are conducted under hot and cold climate conditions of Sohag city, Egypt. Findings show that the maximum freshwater yield in summer is achieved in case of CSS + SD + PTC with an increase of 1.21% compared to CSS and 102.1% compared to CSS + SD + PTC in winter. The maximum increase of the energy and exergy output per year compared to CSS is achieved in case of CSS + SD + PTC of 216.6% and 325%, respectively. Incorporation PTC with the still for all studied water mediums is found promising in terms of energy payback time, cost and freshwater yield compared to CSS without PTC. The exergoeconomic and environmental parameters of the active systems are found more effective related to those of passive systems. (C) 2020 Elsevier Ltd. All rights reserved.
机译:抛物线槽太阳能收集器(PTC)的性能与单斜率太阳能仍然在各种水介质上,基于生产率,能量,出境,exergo经济学和环境回报措施和能量回收时间来评估。考虑六种太阳静止系统;传统的太阳能静止(CSS),CSS与PTC(CSS + PTC)相结合,CSS在盆地(CSS + WM)中含有钢丝网,CSS含有线网,并与PTC(CSS + WM + PTC)耦合,CSS含有沙子在盆地(CSS + SD)中,CSS含有砂并与PTC集成(CSS + SD + PTC)。实验是在埃及索汉格市的炎热和冷气候条件下进行的。结果表明,在CSS + SD + PTC的情况下,与CSS + SD + PTC相比,夏季的最大淡水产量在CSS + SD + PTC增加1.21%,冬季CSS + SD + PTC相比。在CSS + SD + PTC分别为216.6%和325%的情况下,实现了每年能量和电力输出的最大增加。与所有研究的水介质的仍然有静止的PTC在能量投资回收期,成本和淡水产量与没有PTC的CSS相比的情况下有希望。发现活性系统的Exergo经济和环境参数与被动系统的效力更有效。 (c)2020 elestvier有限公司保留所有权利。

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