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    • 61. 发明授权
    • Ultrasonic, flow measuring device
    • 超声波,流量测量装置
    • US09140594B2
    • 2015-09-22
    • US14117666
    • 2012-04-27
    • Achim WiestAndreas Berger
    • Achim WiestAndreas Berger
    • G01F1/66
    • G01F1/662G01F1/667
    • An ultrasonic, flow measuring device, which includes a measuring tube having a straight measuring tube axis, a transmitter for sending an acoustic signal on a first signal path, a receiver for receiving the acoustic signal on the first signal path and at least a first reflection surface, on which the acoustic signal is reflected at least once on the first signal path. The acoustic signal incident on the first reflection surface propagates along a first straight subsection, which has a first separation from the measuring tube axis, wherein the transmitter, the receiver and the first reflection surface are so oriented relative to one another and arranged in or on the measuring tube that the acoustic signal on the first signal path from the first transmitter to the first receiver is so reflected on the at least a first reflection surface that the acoustic signal reflected on the first reflection surface propagates through the measuring tube on the first signal path along a second straight subsection. A surface normal to the first reflection surface has an angle relative to the measuring tube axis, which is other than 90°.
    • 一种超声波流量测量装置,其包括具有直的测量管轴的测量管,用于在第一信号路径上发送声学信号的发射器,用于在第一信号路径上接收声学信号的接收器和至少第一反射 其中声信号在第一信号路径上至少反射一次。 入射在第一反射表面上的声学信号沿着与测量管轴线具有第一分离的第一直的子部分传播,其中发射器,接收器和第一反射表面相对于彼此定向并且布置在 从第一发射器到第一接收器的第一信号路径上的声信号在至少第一反射表面上被反射的测量管,使得在第一反射表面上反射的声信号在第一信号上传播通过测量管 沿着第二个直线小节的路径。 与第一反射面垂直的表面相对于测量管轴线具有不同于90°的角度。
    • 62. 发明申请
    • Ultrasonic, Flow Measuring Device
    • 超声波,流量测量装置
    • US20150160052A1
    • 2015-06-11
    • US14117105
    • 2012-04-27
    • Achim WiestAndreas Berger
    • Achim WiestAndreas Berger
    • G01F1/66
    • G01F1/662G01F1/667Y10T29/49826
    • A method for manufacturing an ultrasonic, flow measuring device, characterized by method steps as follows: selecting a number larger than one of straight subsections of the first signal path, which should have different distances from the measuring tube axis; establishing the distances of the straight subsections from measuring tube axis; calculating values of lengths of the straight subsections, as projected on the measuring tube axis, as a function of the number of straight subsections with the same distance from the measuring tube axis and the respective distances from the measuring tube axis; and inserting the at least a first reflection surface in the measuring tube such that the acoustic signal on the path from the first transmitter to the first receiver is so reflected on at least the first reflection surface that the first signal path comprises the straight subsections with the selected distances and the calculated values of the lengths as projected on the measuring tube axis.
    • 一种用于制造超声波流量测量装置的方法,其特征在于方法步骤如下:选择大于第一信号路径的直线分段中的一个数字,该第一信号路径应与测量管轴线距离不同; 从测量管轴建立直线段的距离; 根据与测量管轴线相距的距离以及与测量管轴线的相应距离的直线分数的函数计算直线分段的长度的值,如投影在测量管轴上的长度; 以及将所述至少一个第一反射表面插入所述测量管中,使得从所述第一发射器到所述第一接收器的路径上的声信号至少在所述第一反射表面上被反射,使得所述第一信号路径包括直的子部分, 选择的距离以及投影在测量管轴上的长度的计算值。
    • 64. 发明授权
    • Ultrasonic sensor of a measuring system for determining and/or monitoring flow of a measured medium through a measuring tube
    • 用于通过测量管确定和/或监测测量介质的流量的测量系统的超声波传感器
    • US08356523B2
    • 2013-01-22
    • US13055657
    • 2009-07-07
    • Andreas BergerAchim Wiest
    • Andreas BergerAchim Wiest
    • G01F1/84
    • G01F1/662G01F1/667
    • An sensor of a measuring system for determining and/or monitoring the flow of a measured medium through a measuring tube, wherein the ultrasonic sensor is seated in a shiftable manner in a sensor housing parallel to a first inner surface of the sensor housing. The ultrasonic sensor has a coupling element and an electromechanical ultrasound transducer element, wherein the ultrasonic sensor can, at least at times, at least partially, lie against the first inner surface of the sensor housing, and that a guide hanger at least partially lies against a second inner surface of the sensor housing lying opposite the first inner surface, wherein the ultrasonic sensor is seated in a shiftable manner essentially perpendicularly to the first inner surface in the guide hanger, and wherein a spring between the guide hanger and ultrasonic sensor acts essentially perpendicularly to the first inner surface.
    • 一种测量系统的传感器,用于通过测量管确定和/或监测测量介质的流动,其中超声传感器以可移动的方式安置在平行于传感器壳体的第一内表面的传感器外壳中。 超声波传感器具有耦合元件和机电超声波换能器元件,其中超声波传感器至少有时至少部分地抵靠传感器外壳的第一内表面,并且导向悬架至少部分地抵靠 传感器壳体的与第一内表面相对的第二内表面,其中超声波传感器以基本上垂直于引导衣架中的第一内表面的可移动方式安置,并且其中引导衣架和超声波传感器之间的弹簧基本上起作用 垂直于第一内表面。
    • 67. 发明授权
    • Method and apparatus for ascertaining and/or monitoring a process variable
    • 用于确定和/或监测过程变量的方法和装置
    • US08156792B2
    • 2012-04-17
    • US11920853
    • 2006-05-08
    • Andreas BergerFrank WandelerAchim Wiest
    • Andreas BergerFrank WandelerAchim Wiest
    • G01N9/24H04B15/00
    • G01F1/667G01F23/296G01F23/2962
    • A method for ascertaining and/or monitoring a process variable, wherein a time-limited, exciting signal, which is described by at least one desired quantity, or by a desired signal form, is applied to a first piezoelectric element, or to a first polarized zone of a piezoelectric element. The response signal, which is described by at least one actual quantity, or actual signal form, corresponding, respectively, to the desired quantity, or desired signal form, is registered by a second piezoelectric element, or by a second polarized zone of the piezoelectric element, wherein the actual quantity, or the actual signal form, of the response signal and the desired quantity, or the designed signal form, of the response signal are compared with one another. On the basis of the ultrasonic measuring signal, which is describable by the defined desired quantity, or the defined, desired signal form, the process variable is ascertained via a sound-entrainment method or via an echo method.
    • 一种用于确定和/或监视过程变量的方法,其中通过至少一个所需量或由期望的信号形式描述的时间有限的激励信号被施加到第一压电元件或第一压电元件 压电元件的极化区域。 由至少一个实际数量或实际信号形式描述的响应信号分别对应于期望的量或期望的信号形式,由第二压电元件或压电元件的第二偏振区域 元件,其中响应信号的响应信号和期望数量或设计信号形式的实际量或实际信号形式彼此进行比较。 基于可由所定义的期望量描述的超声波测量信号或所定义的期望信号形式,通过声音夹带方法或通过回波方法确定过程变量。
    • 68. 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。
    • 69. 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。