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    • 16. 发明申请
    • Systems and Methods For Optimizing Stoichiometric Combustion
    • 用于优化化学计量燃烧的系统和方法
    • US20130125555A1
    • 2013-05-23
    • US13805646
    • 2011-06-27
    • Franklin F. MittrickerRichard A. Huntington
    • Franklin F. MittrickerRichard A. Huntington
    • F02C9/20F01K23/10F02C3/34
    • F02C9/20F01K23/10F02C3/34F02C9/50F05D2270/08F05D2270/083Y02E20/16Y02T50/677
    • Provided are more efficient techniques for operating gas turbine systems. In one embodiment a gas turbine system comprises an oxidant system, a fuel system, a control system, and a number of combustors adapted to receive and combust an oxidant from the oxidant system and a fuel from the fuel system to produce an exhaust gas. The gas turbine system also includes a number of oxidant-flow adjustment devices, each of which are operatively associated with one of the combustors, wherein an oxidant-flow adjustment device is configured to independently regulate an oxidant flow rate into the associated combustor. An exhaust sensor is in communication with the control system. The exhaust sensor is adapted to measure at least one parameter of the exhaust gas, and the control system is configured to independently adjust each of the oxidant-flow adjustment devices based, at least in part, on the parameter measured by the exhaust sensor.
    • 提供了用于操作燃气轮机系统的更有效的技术。 在一个实施方案中,燃气轮机系统包括氧化剂系统,燃料系统,控制系统和适于从氧化剂系统接收和燃烧氧化剂的燃烧器以及来自燃料系统的燃料以产生废气。 燃气轮机系统还包括多个氧化剂流量调节装置,每个氧化剂流量调节装置与燃烧器中的一个可操作地相关联,其中氧化剂流量调节装置被配置为独立地调节进入相关燃烧器的氧化剂流量。 排气传感器与控制系统连通。 排气传感器适于测量废气的至少一个参数,并且控制系统被配置为至少部分地基于由排气传感器测量的参数独立地调节每个氧化剂流量调节装置。