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Comparative analysis on off-design performance of a gas turbine and ORC combined cycle under different operation approaches

机译:不同运行方式下燃气轮机与ORC联合循环设计外性能的比较分析

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This paper presents a comparative analysis on the off-design performance of a gas turbine and organic Rankine cycle (GT-ORC) combined cycle under different operation approaches. A new solving procedure for off-design performance evaluation of the GT-ORC combined cycle was proposed and optimal design parameters for this GT-ORC combined cycle were given. Then simulations were conducted based on the mathematical model and assumptions. The inlet guide vane (IGV) control was applied to regulate the topping GT cycle. Results showed that the sliding pressure operation had an optimal sliding condition to make the GT-ORC combined cycle have the best off-design performance. This condition was a fixed superheat degree of 0.1 K for organic vapor, and the operation approach under such condition was named modified sliding pressure operation (MSPO). Simulation results showed the MSPO performed better than the constant pressure operation and bivariate operation under off-design conditions. Therefore, the MSPO might be more suitable for the off-design operation of the GT-ORC combined cycle. Finally, the sensitivity analysis indicated that the MSPO was more favorable for the GT-ORC combined cycle to reduce the influence of ambient temperature. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文对燃气轮机和有机朗肯循环(GT-ORC)联合循环在不同运行方式下的非设计性能进行了比较分析。提出了一种新的GT-ORC联合循环非设计性能评估的求解程序,并给出了该GT-ORC联合循环的最佳设计参数。然后根据数学模型和假设进行仿真。应用了进口导向叶片(IGV)控制器来调节打顶GT循环。结果表明,滑动压力操作具有最佳的滑动条件,使GT-ORC联合循环具有最佳的非设计性能。该条件是有机蒸气的固定过热度为0.1 K,在这种条件下的操作方法称为修正滑动压力操作(MSPO)。仿真结果表明,MSPO在非设计条件下的性能要优于恒压运行和双变量运行。因此,MSPO可能更适合GT-ORC联合循环的非设计操作。最后,敏感性分析表明,MSPO更有利于GT-ORC联合循环,以减少环境温度的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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