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    • 2. 发明公开
    • SYSTEM FOR CONTROLLING A COMBUSTION CHAMBER
    • 系统ZUR STEUERUNG EINER BRENNKAMMER
    • EP3139088A2
    • 2017-03-08
    • EP16185928.5
    • 2015-09-09
    • Honeywell International Inc.
    • SUPER, WillemVERMAAS, PeterVAN DER MEI, Hans M.THIEWES, RoelofKASPRZYK, Donald J.YOUNG, Gregory
    • F23N5/18F23N1/02
    • F23N1/022F23N1/002F23N5/184F23N2025/06F23N2900/05181
    • A system for controlling activity in a combustion chamber. The system does not necessarily need to be mechanically adjusted and yet may provide precise control of a fuel air mixture ratio. A sensing module of the system may have a mass flow sensor that relates to air flow and another sensor that relates to fuel flow. Neither sensor may need contact with fuel. Fuel and air to the system may be controlled. Pressure of the fuel and/or air may be regulated. The sensors may provide signals to a processor to indicate a state of the fuel and air in the system. The processor, with reliance on a programmed curve, table or the like, often based on data, in a storage memory, may regulate the flow or pressure of the fuel and air in a parallel fashion to provide an appropriate fuel-air mixture to the combustion chamber.
    • 一种控制燃烧室活动的系统。 该系统不一定需要机械调节,并且可以提供燃料空气混合比的精确控制。 系统的感测模块可以具有与气流相关的质量流量传感器和与燃料流相关的另一传感器。 两个传感器都不需要与燃料接触。 可以控制燃料和空气到系统。 可调节燃料和/或空气的压力。 传感器可以向处理器提供信号以指示系统中的燃料和空气的状态。 处理器依赖于编程曲线,表等通常基于数据在存储存储器中,可以以并行方式调节燃料和空气的流量或压力,以向燃料 - 空气混合物提供适当的燃料 - 空气混合物 燃烧室。
    • 5. 发明公开
    • SYSTEM FOR CONTROLLING A COMBUSTION CHAMBER
    • 控制燃烧室的系统
    • EP2995860A2
    • 2016-03-16
    • EP15184490.9
    • 2015-09-09
    • Honeywell International Inc.
    • SUPER, WillemVERMAAS, PeterVAN DER MEI, Hans M.THIEWES, RoelofKASPRZYK, Donald J.YOUNG, Gregory
    • F23N5/18
    • F23N1/022F23N1/002F23N5/184F23N2025/06F23N2900/05181
    • A system for controlling activity in a combustion chamber. The system does not necessarily need to be mechanically adjusted and yet may provide precise control of a fuel air mixture ratio. A sensing module of the system may have a mass flow sensor that relates to air flow and another sensor that relates to fuel flow. Neither sensor may need contact with fuel. Fuel and air to the system may be controlled. Pressure of the fuel and/or air may be regulated. The sensors may provide signals to a processor to indicate a state of the fuel and air in the system. The processor, with reliance on a programmed curve, table or the like, often based on data, in a storage memory, may regulate the flow or pressure of the fuel and air in a parallel fashion to provide an appropriate fuel-air mixture to the combustion chamber.
    • 一种用于控制燃烧室中的活动的系统。 该系统不一定需要机械调整,而是可以精确控制燃料空气混合比。 系统的感测模块可具有涉及空气流量的质量流量传感器和涉及燃料流量的另一个传感器。 传感器都不需要接触燃料。 系统中的燃料和空气可能受到控制。 燃料和/或空气的压力可以被调节。 传感器可以向处理器提供信号以指示系统中的燃料和空气的状态。 通常基于数据的处理器依赖于程序化曲线,工作台等,存储在存储器中,可以以平行的方式调节燃料和空气的流量或压力,以提供合适的燃料 - 空气混合物给 燃烧室。