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    • 2. 发明申请
    • METER ELECTRONICS AND METHODS FOR PROCESSING SENSOR SIGNALS FOR A MULTI-PHASE FLOW MATERIAL IN A FLOWMETER
    • 用于处理流量计中的多相流动材料的传感器信号的仪表电子学和方法
    • WO2007022118A1
    • 2007-02-22
    • PCT/US2006/031713
    • 2006-08-15
    • MICRO MOTION, INC.BELL, Mark, JamesMCANALLY, Craig, B.
    • BELL, Mark, JamesMCANALLY, Craig, B.
    • G01F1/84
    • G01F1/8477G01F1/8413G01F1/8436G01F15/024
    • Meter electronics (20) for processing sensor signals for a multi-phase flow material in a flowmeter (5) is provided according to an embodiment of the invention. The meter electronics (20) includes an interface (201) for receiving first and second sensor signals (210 and 211) for the multi-phase flow material and a processing system (203). The processing system (203) is configured to receive the first sensor signal (210) and the second sensor signal (211), generate a first ninety degree phase shift (213) from the first sensor signal (210) and generate a second ninety degree phase shift (214) from the second sensor signal (211), compute a frequency (221) using one of the first ninety degree phase shift (213) or the second ninety degree phase shift (214), compute a phase difference (220) using one or more of the first ninety degree phase shift (213) and the second ninety degree phase shift (214), and compute one or more of a mass flow rate (223), a density (224), or a volume flow rate (225) for the multi-phase flow material.
    • 根据本发明的实施例,提供了用于处理流量计(5)中的多相流材料的传感器信号的仪表电子(20)。 仪表电子设备(20)包括用于接收多相流材料的第一和第二传感器信号(210和211)的接口(201)和处理系统(203)。 处理系统(203)被配置为接收第一传感器信号(210)和第二传感器信号(211),从第一传感器信号(210)产生第一九十度相移(213),并产生第二九十度 使用第二传感器信号(211)的相移(214),使用第一九十度相移(213)或第二九十度相移(214)中的一个来计算频率(221),计算相位差(220) 使用第一九十度相移(213)和第二九十度相移(214)中的一个或多个,并且计算质量流率(223),密度(224)或体积流量 (225)用于多相流动材料。
    • 3. 发明申请
    • METER ELECTRONICS AND METHODS FOR RAPIDLY DETERMINING A MASS FRACTION OF A MULTI-PHASE FROM A CORIOLIS FLOW METER SIGNAL
    • 仪表电子学和方法,用于快速确定来自​​柯利流量计信号的多相质量分数
    • WO2006127527A1
    • 2006-11-30
    • PCT/US2006/019595
    • 2006-05-19
    • MICRO MOTION, INC.BELL, Mark, JamesMCANALLY, Craig, B.
    • BELL, Mark, JamesMCANALLY, Craig, B.
    • G01F1/74G01F1/84
    • G01F1/8477G01F1/74G01F1/8413G01F1/8436G01F15/024
    • Meter electronics (20) for determining a mass fraction of flow components in a flow material flowing is provided according to an embodiment of the invention. The meter electronics (20) include an interface (201) for receiving a frequency response of the flow material and a processing system (203). The processing system (203) receives the frequency response from the interface (201) and breaks out the frequency response into at least a gas frequency component and a fluid frequency component. The processing system (203) determines an overall density from the frequency response and determines a gas density from the gas frequency component. The processing system (203) determines the void fraction of gas from the frequency response and one or more of the gas frequency component and the fluid frequency component. The processing system (203) determines the mass fraction from the void fraction of gas multiplied by a ratio of the gas density divided by the overall density.
    • 根据本发明的一个实施例,提供了用于确定流动材料流中流动分量的质量分数的仪表电子装置(20)。 仪表电子设备(20)包括用于接收流动材料的频率响应的接口(201)和处理系统(203)。 处理系统(203)从接口(201)接收频率响应,并将频率响应分解为至少气体频率分量和流体频率分量。 处理系统(203)根据频率响应确定总体密度,并根据气体频率分量确定气体密度。 处理系统(203)根据频率响应和气体频率分量和流体频率分量中的一个或多个来确定气体的空隙率。 处理系统(203)根据气体的空隙率乘以气体密度的比率除以总体密度来确定质量分数。
    • 9. 发明申请
    • A FLOW DEVICE AND METHOD FOR OPERATING A FLOW DEVICE
    • 流动装置和操作流动装置的方法
    • WO2009048457A1
    • 2009-04-16
    • PCT/US2007/080722
    • 2007-10-08
    • MICRO MOTION, INC.MCANALLY, Craig, B.MAGINNIS, Richard, L.HAYS, Paul, J.
    • MCANALLY, Craig, B.MAGINNIS, Richard, L.HAYS, Paul, J.
    • G01F1/84
    • G01F1/8495G01F25/0007
    • The present invention relates to flow devices that measure a characteristic of a flowing substance and methods for operating flow devices. In one embodiment, a drive (40) is provided that receives a first signal (55) for vibrating at least one conduit (20) at a resonance frequency and a second signal (56) for vibrating the at least one conduit (20) at a frequency that is different than the resonance frequency. In another embodiment, a drive (140) is provided that alternates between receiving a drive signal (155) to vibrate at least one conduit (120) at a resonance frequency and providing a pick-off signal (145) for measuring motion of the at least one conduit (120). In another embodiment, one or more electronics (50, 150) are provided that determine a mode of vibration of at least one conduit (20, 120) and compare the determined mode of vibration to one or more reference modes of vibration to determine whether a substance is flowing within the at least one conduit (20, 120). The principals of the present invention may be used to determine whether a substance is flowing within a conduit (20), the direction which a substance is flowing within a conduit (20), and the mass flow rate of a substance flowing within a conduit (20). Furthermore, the principals of the present invention may be used to determine whether a pick-off (30) and another pick-off (30) are functioning properly on a flow device.
    • 本发明涉及测量流动物质的特性的流动装置和操作流动装置的方法。 在一个实施例中,提供了驱动器(40),其接收用于以共振频率振动至少一个导管(20)的第一信号(55)和用于使所述至少一个导管(20)振动的第二信号(56) 频率与谐振频率不同。 在另一个实施例中,提供驱动器(140),其在接收驱动信号(155)之间交替,以在谐振频率下振动至少一个导管(120),并提供用于测量at 至少一个导管(120)。 在另一个实施例中,提供一个或多个电子设备(50,150),其确定至少一个导管(20,120)的振动模式,并将所确定的振动模式与一个或多个参考振动模式进行比较,以确定是否 物质在至少一个导管(20,120)内流动。 本发明的原理可以用于确定物质是否在导管(20)内流动,物质在导管(20)内流动的方向以及在管道内流动的物质的质量流量( 20)。 此外,本发明的原理可以用于确定在流动装置上拾取器(30)和另一个拾取器(30)是否正常工作。