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    • 93. 发明申请
    • SINGLE INPUT, MULTIPLE OUTPUT FLOW METER
    • 单输入,多路输出流量计
    • WO2006091199A1
    • 2006-08-31
    • PCT/US2005/006138
    • 2005-02-23
    • MICRO MOTION, INC.SEDDON, StephenSHANAHAN, Eugene, M.JONES, Steven, M.STACK, Charles, Paul
    • SEDDON, StephenSHANAHAN, Eugene, M.JONES, Steven, M.STACK, Charles, Paul
    • G01F1/84G01F15/18
    • G01F1/8409G01F1/8413G01F1/8418G01F1/8477G01F1/8495G01F15/185
    • A single input, multiple output flow meter (200) is provided. The flow meter (200) includes an intake conduit (202) and a flow divider (203). The flow meter (200) further includes a first flow sensor element (204) coupled to the flow divider (203), including a first output conduit (206), and is configured to generate a first flow signal. The flow meter (200) further includes at least a second flow sensor element (205) coupled to the flow divider (203), including a second output conduit (207), and is configured to generate a second flow signal. The input flow can be metered through the first output conduit (206) by the first flow sensor element (204), can be metered through the second output conduit (207) by the second flow sensor element (205), or can be simultaneously metered through both the first output conduit (206) by the first flow sensor element (204) and through the second output conduit (207) by the second flow sensor element (205).
    • 提供单输入多输出流量计(200)。 流量计(200)包括进气管道(202)和分流器(203)。 流量计(200)还包括耦合到分流器(203)的第一流量传感器元件(204),包括第一输出管道(206),并且被配置为产生第一流量信号。 流量计(200)还包括至少一个耦合到分流器(203)的第二流量传感器元件(205),其包括第二输出管道(207),并且被配置为产生第二流量信号。 可以通过第一流量传感器元件(204)通过第一输出管道(206)计量输入流量,可以通过第二流量传感器元件(205)通过第二输出管道(207)计量,或者可以同时计量 通过第一流量传感器元件(204)通过第一输出管道(206)并且通过第二流量传感器元件(205)通过第二输出管道(207)。
    • 94. 发明申请
    • VIBRATORY SENSOR AND METHOD
    • 振动传感器和方法
    • WO2014163635A1
    • 2014-10-09
    • PCT/US2013/035154
    • 2013-04-03
    • MICRO MOTION, INC.
    • KRAVITZ, Andrew S.MCANALLY, Craig B.
    • G01N9/00G01F1/05G01N11/16G01F23/28
    • G01N9/00G01F1/05G01F1/66G01F1/86G01N9/002G01N11/16G01N2009/006
    • A vibratory sensor (5) includes a vibratory element (104) configured to generate a vibration signal and a meter electronics (20) coupled to the vibratory element (104) and receiving the vibration signal, with the meter electronics (20) including a gain stage (150) coupled to the vibratory element (104) and receiving the vibration signal, with the gain stage (150) amplifying the vibration signal by a predetermined gain to generate a saturated vibration signal, and a signal processor (156) coupled to the gain stage (150), with a first input (161) of the signal processor (156) receiving the saturated vibration signal and determining a vibration signal frequency from the saturated vibration signal and with a second input (162) of the signal processor (156) receiving the vibration signal and determining a vibration signal amplitude from the vibration signal.
    • 振动传感器(5)包括被配置为产生振动信号的振动元件(104)和耦合到所述振动元件(104)并接收所述振动信号的仪表电子器件(20),所述仪表电子器件(20)包括增益 (150),其耦合到所述振动元件(104)并且接收所述振动信号,所述增益级(150)将所述振动信号放大预定增益以产生饱和振动信号;以及信号处理器(156),耦合到所述振动信号 增益级(150),信号处理器(156)的第一输入端(161)接收饱和振动信号,并从饱和振动信号和信号处理器(156)的第二输入端(162)确定振动信号频率 )接收振动信号并从振动信号确定振动信号振幅。
    • 95. 发明申请
    • CORIOLIS FLOWMETER AND METHOD WITH IMPROVED METER ZERO
    • CORIOLIS流量计和具有改进的零度的方法
    • WO2014031103A1
    • 2014-02-27
    • PCT/US2012/051714
    • 2012-08-21
    • MICRO MOTION, INC.RAO, ManojVIDHATE, AnandCUNNINGHAM, Timothy, J.
    • RAO, ManojVIDHATE, AnandCUNNINGHAM, Timothy, J.
    • G01F1/84
    • G01F1/84G01F1/8427G01F1/8472
    • A Coriolis flowmeter (205) is provided. The Coriolis flowmeter (205) includes a flowmeter assembly (206) including one or more flowtubes (210), a driver (220) coupled to and configured to vibrate the flowmeter assembly (206), two or more pickoff sensors (230, 231) coupled to and configured to generate two or more vibration signals from the flowmeter assembly (206), and meter electronics (20) coupled to the driver (220) and the two or more pickoff sensors (230, 231), with the meter electronics (20) configured to provide a drive signal to the driver (220) and receive the resulting two or more vibration signals from the two or more pickoff sensors (230, 231), wherein the two or more pickoff sensors (230, 231) are affixed at two or more corresponding pickoff sensor locations that maximize a Coriolis vibration mode of the Coriolis flowmeter (205).
    • 提供科里奥利流量计(205)。 科里奥利流量计(205)包括包括一个或多个流管(210)的流量计组件(206),联接到并且构造成使流量计组件(206)振动的驱动器(220),两个或更多个传感器(230,231) 耦合到并被配置为从流量计组件(206)产生两个或更多个振动信号,以及与仪表电子装置(200)耦合的与驱动器(220)和两个或更多个传感器(230,231)耦合的仪表电子装置(20) 20),其被配置为向所述驱动器(220)提供驱动信号并从所述两个或更多个传感器(230,231)接收所得到的两个或更多个振动信号,其中所述两个或更多个传感器(230,231)被固定 在科里奥利流量计(205)的科里奥利振动模式最大化的两个或更多个对应的传感器位置处。
    • 96. 发明申请
    • VIBRATORY METER AND METHOD FOR DETERMINING RESONANT FREQUENCY
    • 振动仪和确定谐振频率的方法
    • WO2013009307A1
    • 2013-01-17
    • PCT/US2011/043861
    • 2011-07-13
    • MICRO MOTION, INC.MCANALLY, Craig, B.KRAVITZ, Andrew S.
    • MCANALLY, Craig, B.KRAVITZ, Andrew S.
    • G01F1/84
    • G01H13/00G01F1/8431G01F1/8436G01F1/8468G01F1/8472G01N9/002
    • A vibratory meter (5) is provided, including one or more flow conduits (103), one or more pickoff sensors (105, 105'), and a driver (104). Meter electronics (20) is configured to vibrate the one or more flow conduits (103) using a drive signal including an initial vibration frequency and to receive a pickoff sensor signal from the one or more pickoff sensors (105, 105') in response, iteratively offset a phase difference between the drive signal and the pickoff sensor signal by a predetermined phase increment and measure a resulting vibrational frequency and amplitude, with the offsetting operatively sweeping the vibration frequency over a predetermined vibration frequency range and therefore generating a plurality of vibration amplitudes and a corresponding plurality of vibration frequencies, and determine a substantially maximum amplitude response in the plurality of vibration amplitudes and designate the corresponding vibration frequency as comprising the resonant frequency.
    • 提供了振动计(5),包括一个或多个流动管道(103),一个或多个传感器(105,105')和驱动器(104)。 仪表电子设备(20)被配置为使用包括初始振动频率的驱动信号来振动一个或多个流动管道(103)并且响应于从一个或多个传感器(105,105')接收传感器信号, 迭代地将驱动信号和检测传感器信号之间的相位差以预定的相位增量偏移,并且测量所得到的振动频率和幅度,其中偏移可操作地将振动频率覆盖在预定的振动频率范围上,并且因此产生多个振幅 和相应的多个振动频率,并且确定多个振幅中的基本上最大振幅响应,并将相应的振动频率指定为包括谐振频率。
    • 100. 发明申请
    • VIBRATORY FLOW METER FOR DETERMINING ONE OR MORE FLOW FLUID CHARACTERISTICS OF A MULTI-PHASE FLOW FLUID
    • 用于确定多相流动流体的一个或多个流体流体特性的振动流量计
    • WO2009134830A1
    • 2009-11-05
    • PCT/US2009/042019
    • 2009-04-29
    • MICRO MOTION, INC.WEINSTEIN, Joel
    • WEINSTEIN, Joel
    • G01F1/84
    • G01F1/74G01F1/8436G01F1/8477G01F15/02G01F25/0007Y10T29/49826Y10T137/0402
    • A vibratory flow meter (5) for determining one or more flow fluid characteristics of a multi-phase flow fluid includes one or more flow conduits (103A,103B). The flow meter assembly (10) is configured to generate a very low frequency response that is below a predetermined minimum decoupling frequency for the flow fluid and to generate a very high frequency response that is above a predetermined maximum decoupling frequency for the flow fluid, independent of the foreign material size or the foreign material composition. The meter (100) further includes meter electronics (20) configured to receive one or more very low frequency vibrational responses and one or more very high frequency vibrational responses and determine the one or more flow fluid characteristics from the one or more very low frequency vibrational responses and the one or more very high frequency vibrational responses.
    • 用于确定多相流动流体的一个或多个流动流体特性的振动流量计(5)包括一个或多个流动管道(103A,103B)。 流量计组件(10)被配置为产生低于流动流体的预定最小去耦频率的非常低的频率响应并且产生高于流体流体的预定最大去耦频率的非常高的频率响应,独立的 的异物尺寸或异物组成。 仪表(100)还包括仪表电子设备(20),其被配置为接收一个或多个非常低频的振动响应和一个或多个非常高频率的振动响应,并且从一个或多个非常低频振动响应确定一个或多个流体流体特性 响应和一个或多个非常高频的振动响应。