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Thermo-economic analysis of combined cycle configurations with intercooling and reheating

机译:间隙和再加工的热经济分析

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摘要

Combined cycles have integration of different cycles for the effective utilization of heat energy. Among different measures the intercooling and reheating are the commonly used techniques for improving the performance of thermal power cycles. Here, the study of combined cycle configurations having gas turbine, steam turbine and ammonia-water turbine with intercooling and reheating has been undertaken. The present paper analyzes the different configurations of intercooled reheat gas turbine cycle based combined cycle configurations using steam and/or ammonia-water mixture as coolant to gas turbine blades for fixed design condition - turbine inlet temperature of 2000K, cycle pressure ratio 40 and ambient condition of 303K. The comparison of different configurations shows that the work output of 1789.39 kJ/kg of air is obtained. First law and second law efficiencies of 62.50% and 60.7% is maximum for triple pressure heat recovery generator having ammonia-water turbine at each pressure level. The cost of electricity production is minimum for maximum work output and corresponds to 0.06727USD/ kWh.
机译:组合循环具有不同循环的整合,以便有效利用热能。在不同的测量中,中间冷却和再加热是用于提高热功率循环性能的常用技术。这里,已经进行了具有燃气轮机,蒸汽轮机和氨水涡轮机的组合循环构造,其具有中间冷却和再加工。本文分析了使用蒸汽和/或氨水混合物作为用于固定设计条件 - 涡轮机入口温度为2000k,循环压力比40和环境条件的冷却剂的汽轮机叶片的基于汽轮机叶片的不同配置基于汽轮机的组合循环配置的不同配置。 303k。不同配置的比较表明,获得1789.39 kJ / kg空气的工作输出。第一法律和第二律效率为62.50%和60.7%,最大用于在每个压力水平下具有氨水涡轮机的三压力热回收发生器。最大工作输出的电力生产成本最低,相当于0.06727USD /千瓦时。

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