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    • 2. 发明授权
    • Gas turbine control method and apparatus
    • 燃气轮机控制方法及装置
    • US5584171A
    • 1996-12-17
    • US365439
    • 1994-12-28
    • Isao SatoFumiyuki HiroseMinoru TakabaAkira ShimuraShoei TakahashiHiraku Ikeda
    • Isao SatoFumiyuki HiroseMinoru TakabaAkira ShimuraShoei TakahashiHiraku Ikeda
    • F02C9/50
    • F02C9/50F05D2270/071
    • A gas turbine engine control method and apparatus as disclosed for optimizing fuel/air mixture, especially during decreasing load conditions. In a large capacity gas turbine engine system used for generation of electric power, the system is designed to operate at a relatively constant rotational speed of the turbine which drives an electric generator unit. The load of the turbine engine varies throughout the day due to changes in electrical power demands. During normal rated load conditions, the control of the fuel/air mixture is by way of changes in fuel supply, corrected to return the turbine exhaust temperature to a desired rated temperature. During this mode of operation, the compressor inlet guide vanes are maintained in a substantially constant open position. For accommodating decreasing load conditions where the temperature drops below a predetermined temperature level below the rated temperature operation, the system is switched to an inlet guide vane control mode of operation. During the guide vane control mode of operation, the inlet guide vanes are controlled at a more precise temperature correction sensitivity than is the case for normal load operations. This more precise inlet guide vane control during decreasing load conditions assures improved fuel/air mixture during decreasing load and consequent improved efficiency and minimal NO.sub.x compound emissions, especially during changing ambient temperature conditions where cold air would otherwise increase the air supply.
    • 公开的用于优化燃料/空气混合物的燃气涡轮发动机控制方法和装置,特别是在减小负载条件下。 在用于产生电力的大容量燃气涡轮发动机系统中,该系统设计成以驱动发电机单元的涡轮机的相对恒定的转速运行。 由于电力需求的变化,涡轮发动机的负载在一整天内变化。 在正常的额定负载条件下,燃料/空气混合物的控制是通过燃料供应的变化来进行的,这被校正以将涡轮排气温度恢复到所需的额定温度。 在这种操作模式下,压缩机入口导叶保持在基本恒定的打开位置。 为了适应温度下降到低于额定温度运行的预定温度水平的降低负载条件,系统被切换到入口导叶控制操作模式。 在导叶控制操作模式下,入口导流叶片的控制精度比正常加载操作更为精确。 在降低负载条件下,这种更为精确的入口引导叶片控制确保了在减少负载的同时改善了燃料/空气混合物,从而提高了效率和最小化的NOx化合物排放,特别是在其他空气会增加空气供给的环境温度变化的环境中。
    • 5. 发明授权
    • Control apparatus and a control method of a gas turbine combustor
    • 燃气轮机燃烧器的控制装置和控制方法
    • US5339620A
    • 1994-08-23
    • US872139
    • 1992-04-22
    • Hiraku IkedaTetsuo SasadaIsao SatoYoshikazu MoritomoKoji TakahashiMinoru Takaba
    • Hiraku IkedaTetsuo SasadaIsao SatoYoshikazu MoritomoKoji TakahashiMinoru Takaba
    • F02C9/28F02C9/50F23R3/26
    • F23R3/26
    • A control apparatus of a gas turbine combustor obtains a stable combustion with limited NOx emission through a control of a fuel flow rate according to a turbine output and a control of a flow rate of intake air mixed with the fuel. The control apparatus includes an apparatus for detecting at least one of the temperature and the humidity of intake air taken into the combustor, an apparatus for determining and storing, in advance, a stable combustion limit line between a stable combustion region and an unstable combustion region, on a plane of coordinates of a ratio of fuel flow rate to an intake air flow rate or an intake air flow rate and the temperature or the humidity of the intake air, on each turbine load, an apparatus for detecting an instant operational point of the combustor on the plane of coordinates, and an apparatus for correcting the intake air flow rate or the ratio of fuel flow rate to the intake air flow rate according to an increase in the detected temperature or humidity so that the instant operational point does not cross the stable combustion limit line.
    • 燃气轮机燃烧器的控制装置通过根据涡轮机输出控制燃料流量和控制与燃料混合的进气的流量来获得具有有限NOx排放的稳定燃烧。 控制装置包括用于检测进入燃烧器的进气的温度和湿度中的至少一个的装置,用于预先确定和存储稳定燃烧区域和不稳定燃烧区域之间的稳定燃烧极限线的装置 在每个涡轮机负载上的燃料流量比与进气流量或进气流量之比的坐标平面和进气的温度或湿度之间,检测即时操作点的装置 坐标平面上的燃烧器,以及用于根据检测到的温度或湿度的增加来校正进气流量或燃料流量与进气流量比的装置,使得即时操作点不交叉 稳定燃烧极限线。
    • 6. 发明授权
    • Control apparatus and a control method of a gas turbine combustor
    • 燃气轮机燃烧器的控制装置和控制方法
    • US5477670A
    • 1995-12-26
    • US260231
    • 1994-06-14
    • Hiraku IkedaTetsuo SasadaIsao SatoYoshikazu MoritomoKoji TakahashiMinoru Takaba
    • Hiraku IkedaTetsuo SasadaIsao SatoYoshikazu MoritomoKoji TakahashiMinoru Takaba
    • F02C9/28F02C9/50F23R3/26
    • F23R3/26
    • A control apparatus of a gas turbine combustor for effecting a stable combustion with limited NOx emission through a control of a fuel flow rate according to a turbine output and a control of a flow rate of intake air mixed with the fuel comprises: means for detecting at least one of the temperature and the humidity of an intake air to be taken into the combustor; means for determining and storing, in advance, a stable combustion limit line between a stable combustion region and an unstable combustion region, on a plane of coordinates of a ratio of fuel flow rate/intake air flow rate or an intake air flow rate and the temperature or the humidity of the intake air, on each turbine load; means for detecting an instant operational point of the combustor on the plane of coordinates; and means for correcting an intake air flow rate or a ratio of fuel flow rate to the intake air flow rate according to an increase in the detected temperature or humidity so that the operational point does not cross the stable combustion limit line.
    • 一种燃气轮机燃烧器的控制装置,用于通过根据涡轮机输出控制燃料流量和控制与燃料混合的进气的流量来实现有限的NOx排放的稳定燃烧,包括:用于在 进入燃烧器的进气的温度和湿度中的至少一个; 用于在燃料流量/进气流量或进气流量比的坐标平面上预先确定和存储稳定燃烧区域和不稳定燃烧区域之间的稳定燃烧极限线的装置,以及 温度或进气的湿度,在每个涡轮机负载上; 用于在坐标平面上检测燃烧器的即时操作点的装置; 以及用于根据检测到的温度或湿度的增加来校正进气流量或燃料流量与进气流量比的比例的装置,使得操作点不超过稳定燃烧极限线。
    • 9. 发明授权
    • Remote monitoring diagnostic system and method thereof
    • 远程监控诊断系统及其方法
    • US06999903B2
    • 2006-02-14
    • US11033318
    • 2005-01-12
    • Hiraku IkedaZenji YamaguchiAkiyo IchihashiAkira Okabe
    • Hiraku IkedaZenji YamaguchiAkiyo IchihashiAkira Okabe
    • G06F19/00
    • G05B23/0264G05B23/027G05B2219/24048G05B2219/24084G05B2223/06Y02P90/86
    • The remote monitoring diagnostic system and method includes a data storage file used to collect the plant data representing the operation status of a plant and to store the plant data, a monitoring system to monitor the field plant according to the collected plant data, a database storing the past plant data associated with errors having occurred to the plant and actions taken to cope with the errors, a diagnostic system to analyze the plant data sent according to the database, and a reporting system to send a report to the user of the plant regarding the causes for the error and/or actions taken to cope with the error based on the result of the analysis. An error is judged in a combustor, when a difference in temperature of two exhaust gas temperature datum detected from adjacent combustors is larger than a predetermined value.
    • 远程监控诊断系统和方法包括用于收集表示工厂操作状态的工厂数据并存储工厂数据的数据存储文件,根据收集的工厂数据监控现场设备的监控系统,存储 与工厂发生的错误相关联的过去工厂数据以及用于处理错误的动作,用于分析根据数据库发送的工厂数据的诊断系统,以及向工厂用户发送报告的报告系统 基于分析结果的错误和/或采取的处理错误的原因。 当从相邻燃烧器检测到的两个排气温度数据的温差相差大于预定值时,在燃烧室中判断出误差。