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    • 84. 发明申请
    • Method of controlling a power generation system
    • 控制发电系统的方法
    • US20060042258A1
    • 2006-03-02
    • US10928524
    • 2004-08-27
    • Satish GaddeChristopher HumphreyStefan SchneiderFadi TadrosJatinder Singh
    • Satish GaddeChristopher HumphreyStefan SchneiderFadi TadrosJatinder Singh
    • F02C9/20
    • F02C9/22F01D17/162F02C3/30F02C9/26F05D2270/303Y02E20/16
    • A method of controlling a gas turbine system (10) may include controlling an inlet guide vane position (98) to maintain a turbine (24) exhaust temperature at a corrected value that is a function of a compressor (12) inlet temperature and a turbine (24) normalized load. The method may include selecting the minimum value (138) of a part load tunable value, a part load maximum value and a fixed maximum value of a turbine (24) exhaust temperature for the corrected value. A corrected value setpoint may be determined (94) for the gas turbine system (10) operating at a part load condition where at least one of a fuel flow rate and the inlet guide vane position is controlled (98) so the corrected value does not exceed the corrected value setpoint. The corrected value may prevent a turbine (24) engine from exceeding its firing temperature during operation and ensure the engine operates within combustor dynamics and emissions limits.
    • 控制燃气涡轮机系统(10)的方法可以包括控制入口引导叶片位置(98)以将涡轮机(24)的排气温度维持在作为压缩机(12)入口温度和涡轮机的函数的校正值 (24)归一化负载。 该方法可以包括为校正值选择部分负载可调整值的最小值(138),部分负载最大值和涡轮机(24)排气温度的固定最大值。 可以在控制燃料流量和入口引导叶片位置中的至少一个(98)的部分负载状态下操作的燃气轮机系统(10)确定校正值设定点(94),使得校正值不 超过校正值设定值。 校正值可以防止涡轮(24)发动机在运行期间超过其燃烧温度,并且确保发动机在燃烧室动力学和排放限制内运行。
    • 85. 发明授权
    • Gas turbine installation
    • 燃气轮机安装
    • US06973772B2
    • 2005-12-13
    • US10917286
    • 2004-08-13
    • Shigeo HatamiyaMasahiko YamagishiOsamu YokomizoYoshiki NoguchiMoriaki Tsukamoto
    • Shigeo HatamiyaMasahiko YamagishiOsamu YokomizoYoshiki NoguchiMoriaki Tsukamoto
    • F02C3/30F02C7/143F02C7/10
    • F02C3/305F02C3/30F02C7/08F02C7/10F02C7/1435
    • Disclosed is a gas turbine power generating system capable of achieving a high output power and a high power generating efficiency under conditions with a small amount of supplied water and less change in design of a gas turbine.A fine water droplet spraying apparatus (11) is disposed in a suction air chamber (22) on the upstream side of an air compressor (2), and a moisture adding apparatus (7) for adding moisture to high pressure air supplied from the compressor (2) is disposed. A regenerator (5) for heating the air to which moisture has been added by using gas turbine exhaust gas as a heat source is also provided. With this configuration, there can be obtain an effect of reducing a power for the compressor (2) and an effect of increasing the output power due to addition of moisture to air (20) for combustion. Further, since the used amount of fuel is reduced by adopting a regenerating cycle, the power generating efficiency is improved.
    • 公开了一种燃气轮机发电系统,其能够在少量供水的条件下和燃气轮机的设计变化较小的情况下实现高输出功率和高发电效率。 在空气压缩机(2)的上游侧的吸入空气室(22)中配置有微细的水滴喷射装置(11),以及将来自压缩机(2)供给的高压空气中的水分添加到水分添加装置 (2)。 还提供了一种用于通过使用燃气轮机废气作为热源来加热已经添加了水分的空气的再生器(5)。 通过这种结构,可以获得降低压缩机(2)的功率的效果,以及由于向空气(20)中添加水分而增加输出功率的效果,用于燃烧。 此外,由于通过采用再生循环来减少使用的燃料量,所以发电效率提高。