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    • 41. 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。
    • 42. 发明申请
    • Device for Determining or Monitoring a Medium Volume or Mass Flow Rate in a Conduit
    • 用于确定或监测管道中的中等体积或质量流量的装置
    • US20100024570A1
    • 2010-02-04
    • US12083215
    • 2006-09-07
    • Andreas BergerOliver BrumbergAchim Wiest
    • Andreas BergerOliver BrumbergAchim Wiest
    • G01F1/66
    • G01F1/667
    • An ultrasonic, flow measuring device having a plurality of measuring channels. At least one ultrasonic sensor is situated in a first region of a pipeline, or measuring tube; at least two ultrasonic sensors are situated in a second region of the pipeline (5), or measuring tube, in such a manner that the ultrasonic measuring signals travel through the pipeline, or measuring tube, in, or opposite to, a stream direction of the medium, on sound paths of different lengths. A transmitting stage simultaneously excites the ultrasonic sensor, or the ultrasonic sensors, of the first or second region for transmitting the ultrasonic measuring signals. Due to the different lengths of the sound paths, the receiving stage detects the ultrasonic measuring signals incoming to the ultrasonic sensors of the second or first region at separate times. The evaluating stage ascertains, on the basis of travel-time difference of the ultrasonic measuring signals on the individual sound paths, in, and opposite to, the stream direction, volume- and/or mass-flow of the medium in the pipeline, or measuring tube.
    • 一种具有多个测量通道的超声波流量测量装置。 至少一个超声波传感器位于管道的第一区域或测量管中; 至少两个超声波传感器位于管道(5)的第二区域或测量管中,使得超声波测量信号通过管道或测量管行进或流过管道 介质,在不同长度的声音路径上。 发射台同时激发用于发射超声波测量信号的第一或第二区域的超声波传感器或超声波传感器。 由于声道的长度不同,接收台在分开的时间检测超声波测量信号进入第二或第一区域的超声波传感器。 评估阶段基于各个声道上的超声波测量信号的行进时间差,确定管道中的介质的流方向,体积和/或质量流量,或相反的方向,或者 测量管。
    • 43. 发明授权
    • Device for determining and/or monitoring 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
    • US07448282B2
    • 2008-11-11
    • US11666659
    • 2005-10-25
    • Achim WiestAndreas Berger
    • Achim WiestAndreas Berger
    • G01F1/66
    • G01P5/24G01F1/662
    • A device for determining and/or monitoring volume and/or mass flow rate of a medium that flows in a direction of flow through a pipeline/measuring tube of inner diameter. The device comprises at least two ultrasonic transducers that emit and/or receive ultrasonic measuring signals along defined sonic paths and a control/evaluation device which determines the volume flow rate and/or the mass flow rate of the medium to be measured inside said pipeline/measuring tube based on the ultrasonic measuring signals according to the travel-time difference principle. In order to provide a multichannel ultrasonic flowmeter, at least one reflector element is placed in the interior of the pipeline/measuring tube. The reflector element has a defined distance from the inner surface of the pipeline/measuring tube and is placed within the sonic path of the ultrasound measuring signals running through the pipeline/measuring tube.
    • 一种用于确定和/或监测在流过内径的管道/测量管的流动方向上流动的介质的体积和/或质量流率的装置。 该装置包括至少两个超声波换能器,其沿着限定的声波路径发射和/或接收超声波测量信号;以及控制/评估装置,其确定所述管道内的待测介质的体积流量和/或质量流量, 测量管根据超声波测量信号根据行程时差原理。 为了提供多通道超声波流量计,至少一个反射器元件被放置在管道/测量管的内部。 反射器元件具有与管道/测量管的内表面的限定距离,并且被放置在超过通过管道/测量管的超声波测量信号的声波路径内。
    • 46. 发明授权
    • Flowmeter mounted on a containment
    • 安装在安全壳上的流量计
    • US07469599B2
    • 2008-12-30
    • US10531441
    • 2003-10-15
    • Thomas FroehlichAchim WiestTorsten Strunz
    • Thomas FroehlichAchim WiestTorsten Strunz
    • G01F1/66
    • G01F1/66
    • Flowmeter comprising at least two ultrasonic transducers that are mounted on a container which is penetrated by a medium in a certain direction of flow. The ultrasonic transducers alternately transmit and receive ultrasonic test signals in the direction of flow and counter to the direction of flow. The flowmeter further comprises a control/evaluation unit which determines and/or monitors the volume flow of the medium inside the container based on the difference in the travel time of the ultrasonic test signals propagating in the direction of flow and counter to the direction of flow. The ultrasonic transducers are configured such that they transmit and receive ultrasonic test signals or sound fields having a large aperture angle or a great beam expansion.
    • 流量计包括至少两个超声波换能器,其安装在容器上,所述容器在一定方向的流动下被介质穿透。 超声波换能器在流动方向和流向方向交替地发送和接收超声波测试信号。 流量计还包括控制/评估单元,其基于在流动方向上传播的超声波测试信号的行进时间的差异和与流动方向相反来确定和/或监视容器内的介质的体积流量 。 超声波换能器被配置为使得它们发射和接收具有大孔径角或大光束扩展的超声波测试信号或声场。
    • 47. 发明申请
    • Flowmeter
    • 流量计
    • US20060117867A1
    • 2006-06-08
    • US10531441
    • 2003-10-15
    • Thomas FroehlichAchim WiestTorsten Strunz
    • Thomas FroehlichAchim WiestTorsten Strunz
    • G01F1/66
    • G01F1/66
    • flowmeter comprising at least two ultrasonic transducers that are mounted on a container which is penetrated by a medium in a certain direction of flow. The ultrasonic transducers alternately transmit and receive ultrasonic test signals in the direction of flow and counter to the direction of flow. The flowmeter further comprises a control/evaluation unit which determines and/or monitors the volume flow of the medium inside the container based on the difference in the travel time of the ultrasonic test signals propagating in the direction of flow and counter to the direction of flow. The ultrasonic transducers are configured such that they transmit and receive ultrasonic test signals or sound fields having a large aperture angle or a great beam expansion.
    • 流量计包括至少两个超声换能器,其安装在容器上,所述容器在一定方向的流动下被介质穿透。 超声波换能器在流动方向和流向方向交替地发送和接收超声波测试信号。 流量计还包括控制/评估单元,其基于在流动方向上传播的超声波测试信号的行进时间的差异和与流动方向相反来确定和/或监视容器内的介质的体积流量 。 超声波换能器被配置为使得它们发射和接收具有大孔径角或大光束扩展的超声波测试信号或声场。