首页> 外文期刊>Journal of Mechanical Science and Technology >Thermodynamic analysis of a dual loop cycle coupled with a marine gas turbine for waste heat recovery system using low global warming potential working fluids
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Thermodynamic analysis of a dual loop cycle coupled with a marine gas turbine for waste heat recovery system using low global warming potential working fluids

机译:使用低全球变暖潜在工作液与船用燃气涡轮机联接的双环循环的热力学分析

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The combined use of generation and propulsion gas turbines and steam turbines is efficient and can meet the environmental regulations. In this study, the thermodynamic performance of waste heat recovery systems of a marine gas turbine was analyzed. These systems combine the steam Rankine cycle and the organic Rankine cycle to form a dual-loop cycle. Working fluids R32, R134a, R152a and R1234yf, that are low-global warming potential, were selected for the organic Rankine cycle. All of the working fluids exhibited better performance than for the single-loop cycle, and R134a exhibited the greatest efficiency with energy and exergy efficiencies of 29.50 % and 45.58 %, respectively. The most important components contributing to the exergy destruction of the cycle were the heat exchangers. Therefore, it is essential to select the optimum heat exchanger as well as the working fluid in the waste heat recovery system for marine gas turbines.
机译:结合使用的发电和推进燃气轮机和蒸汽涡轮机是有效的,可以满足环境规则。 在这项研究中,分析了海洋燃气轮机废热回收系统的热力学性能。 这些系统将蒸汽朗肯循环和有机朗肯循环结合在一起形成双环循环。 选择有机朗肯循环的工作流体R32,R134A,R152A和R1234YF,即低全球变暖潜力。 所有工作流体表现出比单环循环更好的性能,而R134A分别表现出最大的效率和45.58%的能量和高度效率。 导致循环的漏洞破坏的最重要组成部分是热交换器。 因此,必须选择最佳的热交换器以及用于海运燃气轮机的废热回收系统中的工作流体。

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