SYSTEM AND METHOD FOR DETERMINING PRODUCTION FROM A PLURALITY OF WELLS

    公开(公告)号:US20190093474A1

    公开(公告)日:2019-03-28

    申请号:US15712477

    申请日:2017-09-22

    Abstract: A method includes receiving field measurement data of a plurality of well-pumps disposed respectively in a plurality of wells. The field measurement data are representative of speed data and run-time data of the plurality of well-pumps. The method further includes receiving commingled-flow measurement data. The commingled-flow measurement data are representative of a combined fluid flow data of the plurality of wells. The method further includes determining, by an optimizer unit, well-flow data of the plurality of wells based on the commingled-flow measurement data, the field measurement data, and a plurality of conservation constraints generated by a constraint generator. The well-flow data are representative of fluid flow data from each of the plurality of wells. The method also includes controlling operation of at least one of the plurality of well-pumps based on the well-flow data to control fluid production from the plurality of wells.

    SENSOR POSITIONING WITH NON-DISPERSIVE GUIDED WAVES FOR PIPELINE CORROSION MONITORING
    2.
    发明申请
    SENSOR POSITIONING WITH NON-DISPERSIVE GUIDED WAVES FOR PIPELINE CORROSION MONITORING 审中-公开
    用于管道腐蚀监测的非分散引导波导传感器定位

    公开(公告)号:US20160116440A1

    公开(公告)日:2016-04-28

    申请号:US14956423

    申请日:2015-12-02

    Abstract: An ultrasonic sensor assembly for testing a pipe includes a first and second transducer rings attached to the pipe and spaced apart along a length of the pipe. The first transducer ring includes a plurality of transmitters for transmitting a wave, such as a non-dispersive guided wave. The first transducer ring transmits the wave along the pipe. The second transducer ring includes a plurality of receivers for receiving the wave. A relative position of the first transducer ring with respect to a circumferential position of the second transducer ring is determined based on characteristics of the wave received by the second transducer ring. A method of positioning the ultrasonic sensor assembly on the pipe is also provided.

    Abstract translation: 用于测试管道的超声波传感器组件包括附接到管道并沿着管道的长度间隔开的第一和第二换能器环。 第一传感器环包括用于发射波的多个发射器,例如非分散波导。 第一个换能器环沿着管道传输波浪。 第二传感器环包括用于接收波的多个接收器。 基于由第二换能器环接收的波的特性确定第一换能器环相对于第二换能器环的圆周位置的相对位置。 还提供了将超声波传感器组件定位在管道上的方法。

    Sensor positioning with non-dispersive guided waves for pipeline corrosion monitoring
    3.
    发明授权
    Sensor positioning with non-dispersive guided waves for pipeline corrosion monitoring 有权
    传感器定位与非分散导波管道腐蚀监测

    公开(公告)号:US09228888B2

    公开(公告)日:2016-01-05

    申请号:US13747522

    申请日:2013-01-23

    Abstract: An ultrasonic sensor assembly for testing a pipe includes a first and second transducer rings attached to the pipe and spaced apart along a length of the pipe. The first transducer ring includes a plurality of transmitters for transmitting a wave, such as a non-dispersive guided wave. The first transducer ring transmits the wave along the pipe. The second transducer ring includes a plurality of receivers for receiving the wave. A relative position of the first transducer ring with respect to a circumferential position of the second transducer ring is determined based on characteristics of the wave received by the second transducer ring. A method of positioning the ultrasonic sensor assembly on the pipe is also provided.

    Abstract translation: 用于测试管道的超声波传感器组件包括附接到管道并沿着管道的长度间隔开的第一和第二换能器环。 第一传感器环包括用于发射波的多个发射器,例如非分散波导。 第一个换能器环沿着管道传输波浪。 第二传感器环包括用于接收波的多个接收器。 基于由第二换能器环接收的波的特性确定第一换能器环相对于第二换能器环的圆周位置的相对位置。 还提供了将超声波传感器组件定位在管道上的方法。

    SENSOR POSITIONIG WITH NON-DISPERSIVE GUIDED WAVES FOR PIPELINE CORROSION MONITORING
    4.
    发明申请
    SENSOR POSITIONIG WITH NON-DISPERSIVE GUIDED WAVES FOR PIPELINE CORROSION MONITORING 有权
    传感器POSITIONIG与非分散指导波形管道腐蚀监测

    公开(公告)号:US20140202249A1

    公开(公告)日:2014-07-24

    申请号:US13747522

    申请日:2013-01-23

    Abstract: An ultrasonic sensor assembly for testing a pipe includes a first and second transducer rings attached to the pipe and spaced apart along a length of the pipe. The first transducer ring includes a plurality of transmitters for transmitting a wave, such as a non-dispersive guided wave. The first transducer ring transmits the wave along the pipe. The second transducer ring includes a plurality of receivers for receiving the wave. A relative position of the first transducer ring with respect to a circumferential position of the second transducer ring is determined based on characteristics of the wave received by the second transducer ring. A method of positioning the ultrasonic sensor assembly on the pipe is also provided.

    Abstract translation: 用于测试管道的超声波传感器组件包括附接到管道并沿着管道的长度间隔开的第一和第二换能器环。 第一传感器环包括用于发射波的多个发射器,例如非分散波导。 第一个换能器环沿着管道传输波浪。 第二传感器环包括用于接收波的多个接收器。 基于由第二换能器环接收的波的特性确定第一换能器环相对于第二换能器环的圆周位置的相对位置。 还提供了将超声波传感器组件定位在管道上的方法。

    Sensor positioning with non-dispersive guided waves for pipeline corrosion monitoring
    6.
    发明授权
    Sensor positioning with non-dispersive guided waves for pipeline corrosion monitoring 有权
    传感器定位与非分散导波管道腐蚀监测

    公开(公告)号:US09588086B2

    公开(公告)日:2017-03-07

    申请号:US14956423

    申请日:2015-12-02

    Abstract: An ultrasonic sensor assembly for testing a pipe includes a first and second transducer rings attached to the pipe and spaced apart along a length of the pipe. The first transducer ring includes a plurality of transmitters for transmitting a wave, such as a non-dispersive guided wave. The first transducer ring transmits the wave along the pipe. The second transducer ring includes a plurality of receivers for receiving the wave. A relative position of the first transducer ring with respect to a circumferential position of the second transducer ring is determined based on characteristics of the wave received by the second transducer ring. A method of positioning the ultrasonic sensor assembly on the pipe is also provided.

    Abstract translation: 用于测试管道的超声波传感器组件包括附接到管道并沿着管道的长度间隔开的第一和第二换能器环。 第一传感器环包括用于发射波的多个发射器,例如非分散波导。 第一个换能器环沿着管道传输波浪。 第二传感器环包括用于接收波的多个接收器。 基于由第二换能器环接收的波的特性确定第一换能器环相对于第二换能器环的圆周位置的相对位置。 还提供了将超声波传感器组件定位在管道上的方法。

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