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Dynamic simulation of a HRSG system for a given start-up/shut down curve

机译:给定启动/关闭曲线的HRSG系统的动态仿真

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An inappropriate design of HRSG (Heat Recovery Steam Generator) may lead to mechanical problems including the fatigue failure caused by rapid load change such as operating trip, start-up or shut down. The performance of HRSG with dynamic analysis should be investigated in case of start-up or shutdown. In this study, dynamic analysis for the HRSG system was carried out by commercial software. The HRSG system was modeled with HP, IP, LP evaporator, duct burner, superheater, reheater and economizer. The main variables for the analysis were the temperature and mass flow rate from gas turbine and fuel flow rate of duct burner for given start-up (cold/warm/hot) and shutdown curve. The results showed that the exhaust gas condition of gas turbine and fuel flow rate of duct burner were main factors controlling the performance of HRSG such as flow rate and temperature of main steam from final superheater and pressure of HP drum. The time delay at the change of steam temperature between gas turbine exhaust gas and HP steam was within 2 minutes at any analysis cases.
机译:HRSG(热回收蒸汽发生器)的不当设计可能导致机械问题,包括由快速负载变化引起的疲劳失效,例如运行跳闸,启动或关闭。在启动或关闭的情况下,应调查HRSG具有动态分析的性能。在这项研究中,通过商业软件进行了HRSG系统的动态分析。 HRSG系统采用HP,IP,LP蒸发器,管道燃烧器,过热器,再热器和经济化器进行建模。分析的主要变量是来自燃气涡轮机的温度和质量流量和管道燃烧器的燃料流速,用于给定启动(冷/暖/热)和关闭曲线。结果表明,管道燃烧器燃气轮机和燃料流速的废气状况是控制HRSG的性能和主蒸汽的流量和温度从最终的过热器和HP鼓的压力的主要因素。在任何分析情况下,燃气涡轮机废气和HP蒸汽之间蒸汽温度变化的时间延迟在2分钟内。

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