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Modelling and simulation of the effect of ambient parameters on the performance of a combined cycle gas turbine power plant

机译:环境参数对联合循环燃气轮机发电厂性能影响的建模和仿真

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Gas turbine combined cycle power plants are one of the most efficient energy conversion systems. These systems encompass: a gas turbine cycle, steam turbine cycle and heat recovery steam generator. The electrical power of a gas turbine combined cycle power plant heavily depends on ambient parameters ¿¿¿ mainly on temperature. A variation of ambient parameters changes the compressor's working point, hence the temperature and stream of the flue gas leaving a gas turbine can be changed. In consequence, boiler efficiency, steam flow and parameters can also be changed. The article presents a numerical analysis of the influence of ambient parameters on energy operating indicators of the gas turbine, double pressure heat recovery steam generator and the steam turbine. The effect of the variation of the ambient temperature on gas turbine electrical power, flue gas stream and temperature at the outlet of turbine is modelled with the use of correction curves. A mathematical model of a heat recovery steam generator is based on mass and energy equations and additional equations which describe the heat transfer process. Unknown parameters which occur in empirical equations have been estimated on the basis of measure results. The model of the steam turbine contains a balance model and a theoretical-empirical model of the steam expansion line in the turbine. The calculation method and exemplary calculation results have been presented.
机译:燃气轮机联合循环发电厂是最高效的能量转换系统之一。这些系统包括:燃气轮机循环,蒸汽轮机循环和热量回收蒸汽发生器。燃气轮机联合循环发电厂的电力在很大程度上取决于环境参数,主要取决于温度。环境参数的变化会改变压缩机的工作点,因此可以改变离开燃气轮机的烟气的温度和流。因此,锅炉效率,蒸汽流量和参数也可以改变。本文对环境参数对燃气轮机,双压热回收蒸汽发生器和蒸汽轮机的能量运行指标的影响进行了数值分析。使用校正曲线来模拟环境温度变化对燃气轮机电力,烟道气和涡轮出口温度的影响。热量回收蒸汽发生器的数学模型基于描述热量传递过程的质量和能量方程式以及其他方程式。根据测量结果估算了经验公式中出现的未知参数。汽轮机模型包含汽轮机中蒸汽膨胀线的平衡模型和理论-经验模型。已经给出了计算方法和示例性计算结果。

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