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A UNIQUE APPROACH FOR THERMO-ECONOMIC OPTIMIZATION OF AN INTERCOOLED, REHEAT AND RECUPERATED GAS TURBINE FOR COGENERATION APPLICATIONS

机译:用于电机应用的中间冷却,再加热和恢复燃气轮机的热经济优化的独特方法

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In the present paper, a comprehensive methodology for the thermo-economic performance optimization of an intercooled reheat (ICRH) gas turbine with recuperation for cogenerative applications has been presented covering a wide range of power-to-heat ratio values achievable. To show relative changes in the thermo-economic performance for the recuperated ICRH gas turbine cycle, results for ICRH, recuperated Brayton and simple Brayton cycles are also included in the paper. For the three load cases investigated, the recuperated ICRH gas turbine cycle provides the highest values of electric efficiency and Energy Saving Index for the cogenerative systems requiring low thermal loads (high power-to-heat ratio) compared to the other cycles. Also, this study showed, in general, that the recuperated ICRH cycle permits wider power-to-heat ratio range compared to the other cycles and for different load cases examined, a beneficial thermodynamic characteristic for the cogeneration applications. Furthermore, this study clearly shows that implementation of the recuperated ICRH cycle in a cogeneration system will permit to design a gas turbine which has the high specific work capacity and high electric efficiency at low value of the overall cycle pressure ratio compared to the other cycles studied. Economic performance of the investigated gas turbine cycles have been found dependent on the power-to-heat ratio value and the selected cost structure (fuel cost, electric sale price, steam sale price etc.), the results for a selected cost structure in the study are discussed in this paper.
机译:在本文中,已经介绍了具有用于加源性应用的恢复的间隙再热(ICRH)燃气轮机的热经济性能优化的综合方法已经介绍了可实现的各种电力与热比值。为了表明对恢复的ICRH燃气涡轮循环的热经济性能的相对变化,纸张还包括ICRH,恢复布雷顿和简单的Brayton循环的结果。对于调查的三种负载盒,恢复的ICRH燃气轮机循环为需要低热负荷(高功率与热比)的加工系统提供了最高值的电效率和节能指数,与其他循环相比。此外,该研究通常显示,与其他循环相比,恢复的ICRH循环允许更宽的电力 - 热比范围,并针对不同的载荷盒,用于热电化应用的有益热力学特性。此外,本研究清楚地表明,与所研究的其他循环相比,热电联产系统中,在热电联产系统中的实施方式将允许设计具有高特定工作能力和高功率的燃气涡轮机,与所研究的其他循环相比,在整个循环压力比的低值下具有高特定的工作能力和高电效率。已经发现所调查的燃气轮机循环的经济性能取决于能量 - 热比值和所选成本结构(燃料成本,电销价格,蒸汽销售价格等),结果为选定的成本结构本文讨论了研究。

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