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Thermodynamic investigation of a concentrating solar collector based combined plant for poly-generation

机译:多相浓缩太阳能收集器组合厂的热力学研究

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The detailed thermodynamic evaluation for combined system assisted on solar energy for poly-generation are studied in this paper. This poly-generation cycle is operated by the concentrating solar radiation by using the parabolic dish solar collector series. The beneficial exits of this integrated plant are the electricity, fresh-water, hot-water, heating-cooling, and hydrogen while there are different heat energy recovery processes within the plant for development performance. A Rankine cycle with three turbines is employed for electricity production. In addition to that, the desalination aim is performed by utilizing the waste heat of electricity production cycle in a membrane distillation unit for freshwater generation. Also, a PEM electrolyzes sub-component is utilized for hydrogen generation aim in the case of excess power generation. Finally, the hot-water production cycle is performed via the exiting working fluid from the very high-temperature generator of the cooling cycle. Moreover, based on the thermodynamic assessment outputs, the whole energy and exergy efficiencies of 58.43% and 54.18% are computed for the investigated solar plant, respectively. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文研究了辅助太阳能的组合系统的详细热力学评价。通过使用抛物面盘太阳能电池系列,通过浓缩太阳辐射操作该多相循环。该综合设备的有益进口是电力,淡水,热水,加热冷却和氢气,而植物内有不同的热能回收过程以进行开发性能。用三个涡轮机的朗肯循环用于电力生产。除此之外,通过利用膜蒸馏装置中的电力生产循环的废热来进行脱盐旨在进行淡水产生。此外,在过量发电的情况下,PEM电解用于子组分用于氢气产生目的。最后,通过从冷却循环的非常高温发生器的离开工作流体进行热水生产循环。此外,基于热力学评估产出,分别为调查的太阳能植物计算了58.43%和54.18%的整个能量和漏洞。 (c)2019氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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