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Working Fluid Selection and Technoeconomic Optimization of a Turbocompression Cooling System

机译:涡轮模压冷却系统的工作流体选择和技术经济优化

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Low grade waste heat recovery presents an opportunity to utilize typically wasted energy to reduce overall energy consumption and improve system efficiencies. In this work, the technoeconomic performance of a turbocompression cooling system (TCCS) driven by low grade waste heat in the engine coolant of a large marine diesel generator set is investigated. Five different working fluids were examined to better understand the effects of fluid characteristics on system performance: R134a, R245fa, R1234ze(E), R152a, and R600a. A coupled thermodynamic, heat exchanger, and economic simulation was developed to calculate the simple payback period of the waste heat recovery system, which was minimized using a search and find optimization routine with heat exchanger effectiveness as the optimization parameter. A sensitivity study was performed to understand which heat exchanger effectiveness had the largest impact on payback period. Of the five working fluids examined, a TCCS with R152a as the working fluid had the lowest payback period of 1.46 years with an initial investment of $181,846. The R152a system was most sensitive to the two-phase region of the power cycle condenser. The R1234ze(E) system provided the largest return on investment over a ten year lifetime of $1,399,666.
机译:低级废热回收呈现出利用通常浪费的能量以降低整体能耗并改善系统效率的机会。在这项工作中,研究了在大型船用柴油发电机组的发动机冷却剂中由低级废热驱动的涡轮变形冷却系统(TCC)的技术经济性能。检查五种不同的工作流体以更好地了解流体特性对系统性能的影响:R134A,R245FA,R1234ZE(E),R152A和R600A。开发了一种耦合的热力学,热交换器和经济模拟,以计算废热回收系统的简单投资回收期,其使用搜索和查找热交换器有效性作为优化参数的优化例程最小化。进行敏感性研究以了解哪种热交换器效率对回收期的影响最大。在检查的五个工作流体中,作为工作流体的R152a的TCCS具有最低投资期1.46年,初始投资181,846美元。 R152A系统对功率循环冷凝器的两相区域最敏感。 R1234ZE(e)制度提供了最大的投资回报率为1,399,666美元的十年终身。

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