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A novel vacuum discharge thermal energy combined desalination and power generation system utilizing R290/R600a

机译:利用R290 / R600a的新型真空放电热能联合淡化发电系统

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The aim of this research is to analyse the performance of a new combined vacuum desalination and power system as a heat recovery unit. Here, DTECD-ORC (Discharge Thermal Energy Combined Desalination-Organic Rankine Cycle) is a developed form of the DTECD (discharge thermal energy combined desalination) unit. This system can run on waste steam and an organic working fluid. Here, a gas recovery plant is considered as a base case to couple with this cogeneration system. Four scenarios were modelled incorporating different mixture of the propane (R290) and isobutane (R600a) to find the more efficient option. Exergy and parametric analyses were conducted to predict the efficiency of the proposed model. Based on the proposed scenarios, up to 26% improvement in the exergy flow is achievable compared with the base case. Utilizing this system recovers the discharge thermal energy and reduces CO2 emission level. Besides, an economic analysis performed and the result indicates that the system is economic. The result illustrated that the overall performance of the introduced system is comparable with the primary DTECD system utilizing ammonia mixture. However, the proposed system produces more fresh water; it involves simple process; its working fluid is less corrosive and more convenient to operate. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是分析作为真空回收装置的新型真空脱盐和动力系统组合的性能。在此,DTECD-ORC(排放热能联合淡化-有机朗肯循环)是DTECD(排放热能联合淡化)单元的发展形式。该系统可以在废蒸汽和有机工作流体上运行。在这里,天然气回收厂被认为是与该热电联产系统相结合的基础案例。对四种情况进行了建模,其中包括丙烷(R290)和异丁烷(R600a)的不同混合物,以找到更有效的选择。进行了火用和参数分析以预测所提出模型的效率。根据建议的方案,与基本情况相比,火用流可实现多达26%的改善。利用该系统可回收排放的热能并降低CO2排放水平。此外,进行了经济分析,结果表明该系统是经济的。结果表明,引入系统的整体性能与使用氨混合物的主要DTECD系统相当。但是,建议的系统将产生更多的淡水。它涉及简单的过程;其工作液腐蚀性较小,操作更方便。 (C)2016 Elsevier Ltd.保留所有权利。

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