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    • 6. 发明授权
    • Method for monitoring an ultrasound flowmeter system and/or process
    • 用于监测超声波流量计系统和/或过程的方法
    • US07886615B2
    • 2011-02-15
    • US11992486
    • 2006-09-07
    • Thomas FroehlichAndreas BergerKlaus Bussinger
    • Thomas FroehlichAndreas BergerKlaus Bussinger
    • G01F1/66
    • G01F1/667
    • A method for system- and/or process-monitoring in the case of an ultrasound flow measuring device having a plurality of measuring channels, wherein a medium flows though a pipeline or measuring tube in the direction of a longitudinal axis of the pipeline or measuring tube. Ultrasonic measuring signals are coupled into the pipeline or measuring tube and coupled out of the pipeline or measuring tube in such a way that they travel through the medium along different sound paths. Following passage through the pipeline or measuring tube, the ultrasonic measuring signals are detected in the individual measuring channels, wherein at least one actual quantity describing the ultrasonic measuring signal of each measuring channel is ascertained. The actual quantity is compared with a desired quantity captured under predetermined system- or process-conditions, and a report is output in the case of a difference between the ascertained, actual quantity and the captured, desired quantity.
    • 一种在具有多个测量通道的超声波流量测量装置的情况下进行系统和/或过程监视的方法,其中介质沿管线或测量管的纵向轴线的方向流过管道或测量管 。 超声波测量信号被耦合到管道或测量管中,并且以这样的方式耦合到管道或测量管外,使得它们沿着不同的声音路径行进通过介质。 在通过管道或测量管之后,在各个测量通道中检测超声波测量信号,其中确定描述每个测量通道的超声波测量信号的至少一个实际量。 将实际数量与在预定的系统或过程条件下捕获的期望数量进行比较,并且在确定的,实际的数量和所捕获的期望数量之间的差异的情况下输出报告。
    • 7. 发明申请
    • Method for Monitoring an Ultrasound Flowmeter System and/or Process
    • 监测超声波流量计系统和/或过程的方法
    • US20100139415A1
    • 2010-06-10
    • US11992486
    • 2006-09-07
    • Andreas BergerKlaus BussingerThomas Frohlich
    • Andreas BergerKlaus BussingerThomas Frohlich
    • G01F1/66
    • G01F1/667
    • A method for system- and/or process-monitoring in the case of an ultrasound flow measuring device having a plurality of measuring channels, wherein a medium flows though a pipeline or measuring tube in the direction of a longitudinal axis of the pipeline or measuring tube. Ultrasonic measuring signals are coupled into the pipeline or measuring tube and coupled out of the pipeline or measuring tube in such a way that they travel through the medium along different sound paths. Following passage through the pipeline or measuring tube, the ultrasonic measuring signals are detected in the individual measuring channels, wherein at least one actual quantity describing the ultrasonic measuring signal of each measuring channel is ascertained. The actual quantity is compared with a desired quantity captured under predetermined system- or process-conditions, and a report is output in the case of a difference between the ascertained, actual quantity and the captured, desired quantity.
    • 一种在具有多个测量通道的超声波流量测量装置的情况下进行系统和/或过程监视的方法,其中介质沿管线或测量管的纵向轴线的方向流过管道或测量管 。 超声波测量信号被耦合到管道或测量管中,并且以这样的方式耦合到管道或测量管外,使得它们沿着不同的声音路径行进通过介质。 在通过管道或测量管之后,在各个测量通道中检测超声波测量信号,其中确定描述每个测量通道的超声波测量信号的至少一个实际量。 将实际数量与在预定的系统或过程条件下捕获的期望数量进行比较,并且在确定的,实际的数量和所捕获的期望数量之间的差异的情况下输出报告。
    • 9. 发明申请
    • Device for Determining and/or Monitoring the Volume- and/or Mass-Flow of a Medium
    • 用于确定和/或监测介质的体积和/或质量流量的装置
    • US20080148866A1
    • 2008-06-26
    • US11579815
    • 2005-05-04
    • Thomas FrohlichKlaus BussingerJacobson Saul
    • Thomas FrohlichKlaus BussingerJacobson Saul
    • G01F1/66
    • G01F1/66
    • A device for determining and/or monitoring the volume, and/or mass, flow of a medium flowing through a containment in a stream direction. The device includes: At least one ultrasonic transducer, which emits and/or receives ultrasonic measuring signals; and a control/evaluation unit, which determines the volume, and/or mass, flow of the medium in the containment on the basis of the ultrasonic measuring signals according to the travel time difference principle or the Doppler principle. A first clock-pulse generator having a first pulse rate and a second clock-pulse generator having a second pulse rate are provided, with the first pulse rate of the first clock-pulse generator being greater than the second pulse rate of the second clock-pulse generator. The control/evaluation unit operates the first clock-pulse generator intermittently. The control/evaluation unit sizes the duration of a switch-on, or measuring, phase and/or a resting phase as a function of the available energy.
    • 一种用于确定和/或监测在流动方向上流过容纳物的介质的体积和/或质量流量的装置。 该装置包括:至少一个发射和/或接收超声波测量信号的超声换能器; 以及控制/评估单元,其根据行进时差原理或多普勒原理,基于超声波测量信号来确定容纳物中的介质的体积和/或质量流量。 提供具有第一脉冲速率的第一时钟脉冲发生器和具有第二脉冲速率的第二时钟脉冲发生器,其中第一时钟脉冲发生器的第一脉冲频率大于第二时钟脉冲发生器的第二脉冲发生器, 脉冲发生器。 控制/评估单元间歇地操作第一时钟脉冲发生器。 控制/评估单元根据可用能量来确定接通或测量,相位和/或静止阶段的持续时间。
    • 10. 发明授权
    • Device for determining and/or monitoring the volume-and/or mass-flow of a medium
    • 用于确定和/或监测介质的体积和/或质量流量的装置
    • US07552652B2
    • 2009-06-30
    • US11579815
    • 2005-05-04
    • Thomas FröhlichKlaus BussingerJacobson Saul
    • Thomas FröhlichKlaus BussingerJacobson Saul
    • G01F1/66
    • G01F1/66
    • A device for determining and/or monitoring the volume, and/or mass, flow of a medium flowing through a containment in a stream direction. The device includes: At least one ultrasonic transducer, which emits and/or receives ultrasonic measuring signals; and a control/evaluation unit, which determines the volume, and/or mass, flow of the medium in the containment on the basis of the ultrasonic measuring signals according to the travel time difference principle or the Doppler principle. A first clock-pulse generator having a first pulse rate and a second clock-pulse generator having a second pulse rate are provided, with the first pulse rate of the first clock-pulse generator being greater than the second pulse rate of the second clock-pulse generator. The control/evaluation unit operates the first clock-pulse generator intermittently. The control/evaluation unit sizes the duration of a switch-on, or measuring, phase and/or a resting phase as a function of the available energy.
    • 一种用于确定和/或监测在流动方向上流过容纳物的介质的体积和/或质量流量的装置。 该装置包括:至少一个发射和/或接收超声波测量信号的超声换能器; 以及控制/评估单元,其根据行进时差原理或多普勒原理,基于超声波测量信号来确定容纳物中的介质的体积和/或质量流量。 提供具有第一脉冲速率的第一时钟脉冲发生器和具有第二脉冲速率的第二时钟脉冲发生器,其中第一时钟脉冲发生器的第一脉冲频率大于第二时钟脉冲发生器的第二脉冲发生器, 脉冲发生器。 控制/评估单元间歇地操作第一时钟脉冲发生器。 控制/评估单元根据可用能量来确定接通或测量,相位和/或静止阶段的持续时间。