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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Proposal and analysis of a new combined cogeneration system based on the GT-MHR cycle
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Proposal and analysis of a new combined cogeneration system based on the GT-MHR cycle

机译:基于GT-MHR循环的新型联合热电联产系统的建议和分析

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摘要

In this paper, the waste heat from a gas turbine-modular helium reactor (GT-MHR) is utilized to produce power through two Organic Rankine Cycles (ORCs) and pure water by means of distillation processes. An Absorption heat transformer (AHT) is employed to upgrade the lower temperature waste heat in order to run the desalination system. Detailed thermodynamic analyses for the proposed combined cogeneration cycle (CC cycle) are presented and the effects of important parameters on the cycle performance were studied. The proposed cycle performance is then optimized based on the first law of thermodynamics. The results show that the first law efficiency of the CC cycle, at the optimum conditions, is around 7% higher than that of the GT-MHR cycle. It was also concluded that for each 50 °C increase in the gas turbine inlet temperature, the thermal efficiency is increased by around 2.5-4% and the pure water production rate is decreased by around 6.5%. The results also showed that employing R1234yf as working fluid in the ORCs instead of R123 gives almost the same results in the cycle performance.
机译:在本文中,来自燃气轮机模块化氦反应堆(GT-MHR)的废热用于通过两个有机朗肯循环(ORC)和纯水通过蒸馏过程发电。为了运行脱盐系统,采用了吸收式热转换器(AHT)来升级较低温度的废热。提出了建议的联合热电联产循环(CC循环)的详细热力学分析,并研究了重要参数对循环性能的影响。然后根据热力学第一定律对建议的循环性能进行优化。结果表明,在最佳条件下,CC循环的第一定律效率比GT-MHR循环高约7%。还得出结论,燃气轮机进口温度每升高50°C,热效率提高约2.5-4%,纯水生产率降低约6.5%。结果还表明,在ORC中使用R1234yf代替R123作为工作流体,在循环性能方面几乎具有相同的结果。

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