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    • 3. 发明授权
    • Rapid power producing system and method for steam turbine
    • 蒸汽轮机快速发电系统及方法
    • US06766646B1
    • 2004-07-27
    • US10715364
    • 2003-11-19
    • John Edward FordSeyfettin Can Gulen
    • John Edward FordSeyfettin Can Gulen
    • F01K1302
    • F01K7/165F01K13/02F01K23/101Y02E20/16
    • A method to rapidly change a power output level of a steam turbine including the steps of: operating the steam turbine at a continuous power output level including regulating a steam temperature to a constant steam temperature set point; receiving a demand for a rapid change in the power output level of the steam turbine; adjusting the steam temperature set point to a temporary temperature excursion limit selected to achieve the demand for the rapid power change; regulating the steam temperature in the turbine to the temporary temperature excursion limit; operating the turbine at a temporary power output level achieved using the temporary excursion limit; generating power by the turbine using steam regulated to the temporary temperature limit, and changing the temperature used to regulate the turbine after a predetermined period.
    • 一种快速改变蒸汽轮机的功率输出水平的方法,包括以下步骤:将蒸汽轮机以连续的功率输出水平运行,包括将蒸汽温度调节到恒定的蒸汽温度设定点; 满足对蒸汽轮机功率输出水平快速变化的需求; 将蒸汽温度设定值调整到临时温度偏移极限,以达到快速变更的需求; 将涡轮机中的蒸汽温度调节到临时温度偏移极限; 在使用临时偏移极限实现的临时功率输出水平下操作涡轮机; 通过调节到临时温度极限的蒸汽由涡轮发电,并且在预定时间段之后改变用于调节涡轮机的温度。
    • 7. 发明申请
    • Supercritical steam combined cycle and method
    • 超临界蒸汽联合循环和方法
    • US20090090111A1
    • 2009-04-09
    • US11905846
    • 2007-10-04
    • Leroy Omar TomlinsonRaub Warfield SmithJatila RanasingheSeyfettin Can GulenDiego Fernando Rancruel
    • Leroy Omar TomlinsonRaub Warfield SmithJatila RanasingheSeyfettin Can GulenDiego Fernando Rancruel
    • F02C6/04
    • F01K23/106Y02E20/16
    • A supercritical steam combined cycle system including a gas turbine; a supercritical steam turbine system including a supercritical section, a high pressure section, an intermediate pressure section and at least one low pressure section; and a supercritical steam heat recovery steam generator (HRSG) for receiving exhaust gas from the gas turbine for heating fluid from the steam turbine system. The HRSG includes a supercritical evaporator arranged to supply steam to a superheater between the supercritical evaporator and the inlet of the HRSG and a reheater receiving cold reheat steam from and returning reheated steam to the steam turbine system. The reheater includes a first section disposed downstream of and a second section disposed upstream of the supercritical evaporator along the exhaust gas flow path. Cool reheat steam from the steam turbine system is received by the first reheater section and steam leaving the first reheater section is supplied to the second reheater section upstream of the supercritical evaporator.
    • 包括燃气轮机的超临界蒸汽联合循环系统; 包括超临界部分,高压部分,中间压力部分和至少一个低压部分的超临界汽轮机系统; 以及用于接收来自燃气轮机的废气的超临界蒸汽热回收蒸汽发生器(HRSG),用于从蒸汽轮机系统加热流体。 HRSG包括一个超临界蒸发器,用于向超临界蒸发器和HRSG入口之间的过热器供应蒸汽,再加热器接收冷再热蒸汽并将再热蒸汽返回到蒸汽涡轮机系统。 再热器包括沿排气流路设置在超临界蒸发器的上游的第一部分和设置在超临界蒸发器的上游的第二部分。 来自蒸汽轮机系统的冷再热蒸汽由第一再热器部分接收,并且离开第一再热器部分的蒸汽被供应到超临界蒸发器上游的第二再热器部分。