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    • 1. 发明授权
    • Flow control system
    • 流量控制系统
    • US5819721A
    • 1998-10-13
    • US768952
    • 1996-12-18
    • Larry L. CarrDennis S. Mizerak
    • Larry L. CarrDennis S. Mizerak
    • F23N1/02F23N5/18F24H9/20F24H3/00
    • F24H9/2085F23N1/022F23N2005/181F23N2005/182F23N2025/02F23N2025/04F23N2027/02F23N2027/04F23N2027/22F23N2033/04F23N2033/10F23N2035/16F23N2035/18F23N2037/02
    • A control system for regulating a flow rate of a heat transfer fluid in a heat transfer system, the heat transfer system having a heat transfer fluid flow path, flow control device for creating flow along the path, a fuel source for providing a combustible fuel to the path, an air source for providing combustion air to the path, and an assembly for combusting the fuel and air, the control system comprising a sensor for sensing a measured flow value at the air source, a controller for storing an optimum flow value at the air source and for storing a range of operating control values for the flow control device, the operating control values corresponding to the optimum flow value, a system for calculating a deviation between the measured flow value and the optimum flow value, and a system for varying the operation of the flow control means in accordance with the deviation.
    • 一种用于调节传热系统中的传热流体的流量的控制系统,具有传热流体流路的传热系统,用于沿着路径产生流动的流量控制装置,用于提供可燃燃料的燃料源 所述路径,用于向所述路径提供燃烧空气的空气源和用于燃烧所述燃料和空气的组件,所述控制系统包括用于感测所述空气源处的测量流量值的传感器,用于将最佳流量值存储在 空气源和用于存储用于流量控制装置的一系列操作控制值,对应于最佳流量值的操作控制值,用于计算测量流量值和最佳流量值之间的偏差的系统,以及用于 根据偏差改变流量控制装置的操作。
    • 2. 发明授权
    • Flow control system
    • 流量控制系统
    • US5601071A
    • 1997-02-11
    • US378481
    • 1995-01-26
    • Larry L. CarrDennis S. Mizerak
    • Larry L. CarrDennis S. Mizerak
    • F23N1/02F23N5/18F24H9/20F24H3/00
    • F24H9/2085F23N1/022F23N2005/181F23N2005/182F23N2025/02F23N2025/04F23N2027/02F23N2027/04F23N2027/22F23N2033/04F23N2033/10F23N2035/16F23N2035/18F23N2037/02
    • A control system for regulating a flow rate of a heat transfer fluid in a heat transfer system, the heat transfer system having a heat transfer fluid flow path, flow control device for creating flow along the path, a fuel source for providing a combustible fuel to the path, an air source for providing combustion air to the path, and an assembly for combusting the fuel and air, the control system comprising a sensor for sensing a measured flow value at the air source, a controller for storing an optimum flow value at the air source and for storing a range of operating control values for the flow control device, the operating control values corresponding to the optimum flow value, a system for calculating a deviation between the measured flow value and the optimum flow value, and a system for varying the operation of the flow control means in accordance with deviation.
    • 一种用于调节传热系统中的传热流体的流量的控制系统,具有传热流体流路的传热系统,用于沿着路径产生流动的流量控制装置,用于提供可燃燃料的燃料源 所述路径,用于向所述路径提供燃烧空气的空气源和用于燃烧所述燃料和空气的组件,所述控制系统包括用于感测所述空气源处的测量流量值的传感器,用于将最佳流量值存储在 空气源和用于存储用于流量控制装置的一系列操作控制值,对应于最佳流量值的操作控制值,用于计算测量流量值和最佳流量值之间的偏差的系统,以及用于 根据偏差改变流量控制装置的操作。
    • 3. 发明授权
    • Apparatus and method for continuously measuring mass flow
    • 连续测量质量流量的装置和方法
    • US4622858A
    • 1986-11-18
    • US715692
    • 1985-03-25
    • Dennis S. Mizerak
    • Dennis S. Mizerak
    • G01F1/80G01F1/64G01F1/84
    • G01F1/8413G01F1/8436G01F1/8495
    • An apparatus and method for measuring mass flow rate utilizes a pair of parallel conduits having fixed ends. A driving mechanism is connected between the conduits near their mid-point for applying transverse oscillations to the conduits at a selected frequency. The fluid whose mass flow rate is to be measured is divided roughly equally and supplied through the parallel conduits. A motion sensor upstream of the driving mechanism and another one downstream of the driving mechanism produce signals which have the same frequency as the driving frequency but which lead or lag the driving frequency with regard to phase. This difference is phase is a measurement of mass flow rate.
    • 用于测量质量流量的装置和方法利用具有固定端的一对平行导管。 驱动机构连接在其中点附近的导管之间,以选定的频率施加横向振荡到导管。 要测量质量流量的流体大致相等地分配,并通过平行导管供给。 驱动机构上游的运动传感器和驱动机构下游的运动传感器产生与驱动频率相同的频率但相对于相位导致或延迟驱动频率的信号。 这个差别是质量流量的测量。