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首页> 外文期刊>Journal of Mechanical Science and Technology >Performance maximization of IGCC plant considering operating limitations of a gas turbine and ambient temperature
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Performance maximization of IGCC plant considering operating limitations of a gas turbine and ambient temperature

机译:考虑燃气轮机的运行限制和环境温度,IGCC设备的性能最大化

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We predicted the available maximum power output of Integrated gasification combined cycle (IGCC) plants under the operating limitations of a gas turbine. The power block of the IGCC using an F-class gas turbine was modeled, and its interactions of mass and energy with other components such as a gasifier and an air separation unit were considered. Variation in the gas turbine power output with nitrogen dilution was simulated, and the operating conditions under which the power should be limited below an allowable maximum were determined. The maximum net power output of the IGCC plant under the restrictions of syngas turbine power (232 MW) and blade temperature were estimated in a wide range in terms of ambient temperature and integration degree, and the optimal integration degree for each ambient temperature is suggested. At relatively high temperatures over 19A degrees C, zero integration degree (air for the air separation unit is supplied solely from the ambient) provides the highest net power output and efficiency. As ambient temperature decreases, a higher integration degree provides higher net power. The optimal net IGCC power output varies from 260 MW to 347 MW (33%) in the ambient temperature range of 40A degrees C to -10A degrees C, while the optimal net efficiency varies by about one percentage point.
机译:我们预测了在燃气轮机运行限制下的整体气化联合循环(IGCC)装置的可用最大功率输出。对使用F级燃气轮机的IGCC动力块进行了建模,并考虑了其质量和能量与气化炉和空气分离装置等其他组件的相互作用。模拟了氮气稀释后燃气轮机功率输出的变化,并确定了将功率限制在允许的最大值以下的运行条件。 IGCC装置在合成气轮机功率(232 MW)和叶片温度的限制下,在环境温度和集成度的大范围内估算了最大净功率输出,并建议了每种环境温度的最佳集成度。在高于19A摄氏度的较高温度下,零集成度(空气分离单元的空气仅从周围环境提供)提供了最高的净功率输出和效率。随着环境温度的降低,更高的集成度将提供更高的净功率。在40A摄氏度至-10A摄氏度的环境温度范围内,最佳IGCC净输出功率从260 MW到347 MW(33%)变化,而最佳净效率变化约一个百分点。

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