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    • 2. 发明申请
    • Device for Determining and/or Monitoring the Volume or Mass Flow Rate of a Medium in a Pipe Conduit
    • 用于确定和/或监测管道中介质的体积或质量流量的装置
    • US20110023623A1
    • 2011-02-03
    • US12224546
    • 2007-03-09
    • Oliver BerberigAndreas BergerPatrick OudoireAchim Wiest
    • Oliver BerberigAndreas BergerPatrick OudoireAchim Wiest
    • G01F1/66
    • G01F1/667G01F1/662G10K11/004
    • An apparatus for ascertaining, and/or monitoring, volume- or mass-flow of a medium flowing through a pipeline in the direction of the longitudinal axis of the pipeline. The apparatus includes: at least one ultrasonic sensor, which radiates/receives ultrasonic measuring signals at an angle of incidence/emergence into/out-of the pipeline; and a control/evaluation unit which provides, based on the ultrasonic measuring signals, information concerning volume- and/or mass-flow of the medium through the pipeline. The ultrasonic sensor includes at least one sound-producing element, a coupling shoe and a coupling adapter. The end region of the coupling adapter facing the coupling shoe has a securement mechanism for releasable securement of the coupling adapter to the coupling shoe. The end region of the coupling adapter facing the pipeline is embodied as a function of the pipeline in such a manner that it is form-fittingly securable to the pipeline.
    • 一种用于确定和/或监测在管道的纵向方向上流过管道的介质的体积或质量流量的装置。 该装置包括:至少一个超声波传感器,其以入射/出射的角度辐射/接收超声波测量信号进/出管道; 以及控制/评估单元,其基于超声波测量信号提供关于通过管道的介质的体积和/或质量流量的信息。 超声波传感器包括至少一个声音产生元件,耦合靴和耦合适配器。 联接适配器面向联接靴的端部区域具有用于将联接适配器可释放地固定到联接器鞋的固定机构。 面向管道的联接适配器的端部区域以这样的方式被实现为管道的功能,使得其与管道形状适合地固定。
    • 3. 发明申请
    • Device for Determining and/or Monitoring a Volume Flow and/or a Mass Flow
    • 用于确定和/或监测体积流量和/或质量流量的装置
    • US20090095088A1
    • 2009-04-16
    • US11795894
    • 2005-12-16
    • Andreas BergerAchim WiestPatrick Oudoire
    • Andreas BergerAchim WiestPatrick Oudoire
    • G01F1/00
    • G01F1/662
    • An apparatus for ascertaining and/or monitoring volume- and/or mass-flow of a measured medium flowing in a flow direction through a measuring tube of predetermined inner diameter. The apparatus includes a plurality of ultrasonic sensors, which transmit and/or receive ultrasonic measuring signals along different, defined measuring paths, and a control/evaluation unit, which ascertains volume- and/or mass-flow of the measured medium in a pipeline/in the measuring tube on the basis of the ultrasonic measuring signals according to a sound entrainment method or the echo principle. At least two ultrasonic sensors, which transmit and/or receive the ultrasonic measuring signals on different measuring paths, are positioned in an opening located in the wall of the measuring tube.
    • 用于确定和/或监测沿流动方向流过预定内径的测量管的测量介质的体积和/或质量流量的装置。 该设备包括多个超声波传感器,其传送和/或接收沿着不同的定义的测量路径的超声波测量信号,以及控制/评估单元,其确定测量的介质在管道中的体积和/或质量流量, 在测量管中基于超声波测量信号,根据声音夹带方法或回波原理。 在不同测量路径上传输和/或接收超声波测量信号的至少两个超声波传感器位于测量管壁中的开口中。
    • 5. 发明授权
    • Apparatus for determining and/or monitoring volume- and/or mass-flow of a medium in a pipeline
    • 用于确定和/或监测管道中介质的体积和/或质量流量的装置
    • US07373839B2
    • 2008-05-20
    • US10576280
    • 2004-10-13
    • Achim WiestAndreas BergerPatrick Oudoire
    • Achim WiestAndreas BergerPatrick Oudoire
    • G01F1/32
    • G01F1/662G01F15/00
    • An apparatus for determining and/or monitoring volume- and/or mass-flow of a medium flowing through a pipeline in a stream direction. At least two ultrasonic sensors are included, which are secured in a defined measuring positional relationship on the outer wall of the pipeline and alternately emit and receive ultrasonic measuring signal. A control/evaluation unit, which determines volume- and/or mass-flow of the medium in the pipeline on the basis of the travel time difference of ultrasonic measuring signals in the stream direction and opposite to the stream direction is also provided. For assuring rapid mounting and demounting of the ultrasonic flow measuring device on a pipeline, the at least two ultrasonic sensors are secured on a pliers-like clamping unit, which is embodied in a manner such that the ultrasonic sensors are brought into a measuring positional relationship by simple clamping onto the pipeline.
    • 一种用于确定和/或监测在流动方向上流过管道的介质的体积和/或质量流量的装置。 包括至少两个超声波传感器,它们以规定的测量位置关系固定在管道的外壁上,交替地发射和接收超声波测量信号。 还提供了一种控制/评估单元,其基于流方向上和与​​流方向相反的超声波测量信号的行进时间差来确定管道中的介质的体积和/或质量流量。 为了确保在管道上快速安装和拆卸超声波流量测量装置,将至少两个超声波传感器固定在钳子状的夹紧单元上,该夹紧单元以使得超声波传感器处于测量位置关系 通过简单的夹紧到管道上。
    • 6. 发明申请
    • Apparatus for controlling temperature of an inline measuring device
    • 用于控制在线测量装置的温度的装置
    • US20060005957A1
    • 2006-01-12
    • US11106444
    • 2005-04-15
    • Thierry MoserRoland UntersehMichael FuchsPatrick Oudoire
    • Thierry MoserRoland UntersehMichael FuchsPatrick Oudoire
    • F28F3/12
    • G01F1/849F28D2021/0077F28F3/12G01F1/8409G01F1/8413G01F1/8477G01F15/02Y10T29/4935Y10T29/49364Y10T29/49366Y10T29/49368
    • The apparatus includes at least one heat exchanger (30) secured on the inline measuring device. Temperature-control fluid flows through the heat exchanger (30), at least at times during operation, for the purpose of transporting heat. The apparatus additionally includes securement means (50, 60) for the, especially releasable, fixing of the heat exchanger (30) externally on the inline measuring device (1). The heat exchanger (30) has an inner wall (32), especially a trough- or dish-shaped inner wall, contacting the inline measuring device (1) externally at least partially flushly, as well as an outer wall (31) fixed to the inner wall (32). The outer wall (31) is connected with the inner wall (32) via a connecting seam (90) running along an edge region and sealing against escape of the temperature-control fluid, and via a plurality of, especially point, or ring, shaped, inner connection locations (80), which are arranged spaced from one another in an inner region at least partially enclosed by the edge connection seam (90). Between the inner wall (32) and the outer wall (31) is at least one chamber (H) having a plurality of sections communicating with one another and serving to convey the temperature-control fluid. The chamber (H) is connected into a piping system conveying the temperature-control fluid via openings (33A, 34A) opening into the chamber.
    • 该装置包括固定在在线测量装置上的至少一个热交换器(30)。 至少在操作期间,温度控制流体流过热交换器(30),以便传输热量。 该装置还包括用于在外部测量装置(1)上热交换器(30)特别可释放地固定的固定装置(50,60)。 热交换器(30)具有内壁(32),特别是槽形或碟状的内壁,其将外部测量装置(1)至少部分地与外部接触,以及外壁(31),固定到 内壁(32)。 外壁(31)通过沿着边缘区域延伸的连接接缝(90)与内壁(32)连接,并且密封防止温度控制流体的逸出,并且经由多个,特别是点或环, 内部连接位置(80),其在至少部分地由边缘连接接缝(90)包围的内部区域中彼此间隔开排列。 内壁(32)和外壁(31)之间的至少一个腔室(H)具有多个部分,这些部分彼此连通并用于输送温度控制流体。 室(H)通过开口(33A,34A)连接到输送温度控制流体的管道系统中。
    • 7. 发明申请
    • Measuring system having a measuring transducer of vibration-type
    • 具有振动型测量传感器的测量系统
    • US20120123705A1
    • 2012-05-17
    • US13292168
    • 2011-11-09
    • Wolfgang DrahmHao ZhuAlfred RiederMichael WiesmannPatrick Oudoire
    • Wolfgang DrahmHao ZhuAlfred RiederMichael WiesmannPatrick Oudoire
    • G01F1/20G06F19/00
    • G01F1/8413G01F1/8436G01F1/8472G01F15/022
    • A measuring system comprises: a measuring transducer; transmitter electronics; at least one measuring tube; and at least one oscillation exciter. The transmitter electronics delivers a driver signal for the at least one oscillation exciter, and for feeding electrical, excitation power into the at least one oscillation exciter. The driver signal, has a sinusoidal signal component which corresponds to an instantaneous eigenfrequency, and in which the at least one measuring tube can execute, or executes, eigenoscillations about a resting position. The eigenoscillations have an oscillation node and in the region of the wanted, oscillatory length exactly one oscillatory antinode. The driver signal has, a sinusoidal signal component with a signal frequency, which deviates from each instantaneous eigenfrequency of each natural mode of oscillation of the at least one measuring tube, in each case, by more than 1 Hz and/or by more than 1% of said eigenfrequency.
    • 测量系统包括:测量传感器; 变送器电子; 至少一个测量管; 和至少一个振荡激励器。 所述发射机电子装置为所述至少一个振荡激励器提供驱动器信号,并且向所述至少一个振荡激励器馈送电,激励功率。 驱动器信号具有对应于瞬时本征频率的正弦信号分量,并且其中至少一个测量管可以执行或执行关于静止位置的本征振荡。 特征振荡具有振荡节点,并且在所需的振荡长度的区域中恰好是一个振荡波腹。 驱动器信号具有信号频率的正弦信号分量,其偏离每个情况下每个自然振荡模式的每个瞬时本征频率超过1Hz和/或大于1 %的本征频率。
    • 8. 发明授权
    • Flow monitoring apparatus having an ultrasonic sensor with a coupling adapter having securing mechanism
    • 具有超声波传感器的流量监测装置,其具有具有固定机构的联接适配器
    • US08047081B2
    • 2011-11-01
    • US12224546
    • 2007-03-09
    • Oliver BerberigAndreas BergerPatrick OudoireAchim Wiest
    • Oliver BerberigAndreas BergerPatrick OudoireAchim Wiest
    • G01F1/66G01R33/20
    • G01F1/667G01F1/662G10K11/004
    • An apparatus for ascertaining, and/or monitoring, volume-or mass-flow of a medium flowing through a pipeline in the direction of the longitudinal axis of the pipeline. The apparatus includes: at least one ultrasonic sensor, which radiates/receives ultrasonic measuring signals at an angle of incidence/emergence into/out-of the pipeline; and a control/evaluation unit which provides, based on the ultrasonic measuring signals, information concerning volume- and/or mass-flow of the medium through the pipeline. The ultrasonic sensor includes at least one sound-producing element, a coupling shoe and a coupling adapter. The end region of the coupling adapter facing the coupling shoe has a securement mechanism for releasable securement of the coupling adapter to the coupling shoe. The end region of the coupling adapter facing the pipeline is embodied as a function of the pipeline in such a manner that it is form-fittingly securable to the pipeline.
    • 一种用于确定和/或监测在管道的纵向轴线方向上流过管道的介质的体积或质量流量的装置。 该装置包括:至少一个超声波传感器,其以入射/出射的角度辐射/接收超声波测量信号进/出管道; 以及控制/评估单元,其基于超声波测量信号提供关于通过管道的介质的体积和/或质量流量的信息。 超声波传感器包括至少一个声音产生元件,耦合靴和耦合适配器。 联接适配器面向联接靴的端部区域具有用于将联接适配器可释放地固定到联接器鞋的固定机构。 面向管道的联接适配器的端部区域以这样的方式被实现为管道的功能,使得其与管道形状适合地固定。