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GAS TURBINE-BASED COMBINED CYCLE POWER PLANT MODELING AND EFFECTS OF AMBIENT TEMPERATURE

机译:基于燃气轮机的联合循环电厂建模及环境温度的影响

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This paper presents results of the combined cycle power plant (CCPP) modeling when the ambient temperature is varying. The model of the CCPP was developed using a gas turbine and a heat recovery steam generator (HRSG) models that had been already developed and validated. The model of the components was developed based on an actual existing power plant and then the operational data of the power plant was used to validate the model. The results of running the model for various ambient temperatures demonstrated that the performance of the gas turbine part of the cycle was heavily affected by the changes in the ambient temperature, particularly the output power of the gas turbines. However, the performance of the steam cycle was almost untouched by the changes of ambient temperature. This suggests that operation of the CCPP is more stable than stand-alone gas turbine in hot summer days especially if the cycle is not equipped with an inlet air cooling system.
机译:本文介绍了当环境温度变化时联合循环发电厂(CCPP)建模的结果。 CCPP模型是使用已经开发和验证的燃气轮机和热回收蒸汽发生器(HRSG)模型开发的。基于实际的现有电厂来开发组件的模型,然后使用电厂的运行数据来验证模型。在各种环境温度下运行该模型的结果表明,循环的燃气轮机部分的性能受环境温度(尤其是燃气轮机的输出功率)变化的严重影响。但是,蒸汽循环的性能几乎不受环境温度变化的影响。这表明在炎热的夏季,CCPP的运行要比独立式燃气轮机稳定,尤其是在循环未配备进气冷却系统的情况下。

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