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    • 1. 发明授权
    • Water cut meter for measurement of water in crude oil
    • 用于测量原油中水分的切割仪
    • US07201068B2
    • 2007-04-10
    • US10611397
    • 2003-06-30
    • Gary C. FossMatthew R. TavaresRichard R. Basham
    • Gary C. FossMatthew R. TavaresRichard R. Basham
    • G01F1/28
    • G01N33/241G01F1/74G01F1/86
    • An apparatus, systems, and methods for measuring an amount of oil in a flow of fluid are provided. A housing defines an interior passage configured to pass a flow of fluid. A capacitance sensor, which suitably is a pair of insulated electrodes, is configured to respond to a capacitance of the flow of fluid is disposed within the interior passage of the housing. The capacitance sensor is coupled to conductors through which a first analog signal is generated. These conductors can be engaged to measure the capacitance of the flow of fluid. A conductance sensor configured to measure conductance of the flow of fluid also is disposed on the interior passage of the housing and generates a conductance signal as a second analog signal. The first and second analog signals can be used to assess the relative percentages of oil and water in the flow of fluid.
    • 提供了一种用于测量流体中的油量的装置,系统和方法。 壳体限定被配置成通过流体流的内部通道。 适当地是一对绝缘电极的电容传感器被配置为响应于流体流的电容被布置在壳体的内部通道内。 电容传感器耦合到通过其产生第一模拟信号的导体。 这些导体可以接合以测量流体的电容。 配置成测量流体流动的电导传感器也设置在壳体的内部通道上,并且产生作为第二模拟信号的电导信号。 第一和第二模拟信号可用于评估流体中油和水的相对百分比。
    • 3. 发明授权
    • Soft support systems and methods for dynamically testing structures
    • 软支持系统和动态测试结构的方法
    • US07328622B2
    • 2008-02-12
    • US11173584
    • 2005-06-30
    • Gary C. Foss
    • Gary C. Foss
    • G01M7/02
    • G01M17/007B64F5/60G01M7/00
    • Soft support systems and methods for dynamically testing structures are disclosed. In one embodiment, a soft support system adapted to decouple a structure from a support surface for dynamic testing includes a containment bag, an inflatable chamber disposed at least partially within the containment bag and adapted to engage with a portion of the structure, the inflatable chamber being further adapted to exert a lifting force on the portion of the structure during inflation of the inflatable chamber, and an inflator module coupled to the inflatable chamber and adapted to facilitate inflation of the inflatable chamber within the containment bag. In one embodiment, the inflatable chamber comprises a toroidally-shaped inflatable member defining a central opening adapted to at least partially receive a portion of the structure during inflation of the inflatable chamber.
    • 公开了用于动态测试结构的软支持系统和方法。 在一个实施例中,适于将结构与支撑表面分离以用于动态测试的软支撑系统包括容纳袋,至少部分地设置在容纳袋内并且适于与结构的一部分接合的可充气室, 进一步适于在所述可膨胀室的充气期间在所述结构的所述部分上施加提升力,以及联接到所述可充气室并且适于促进所述可充气室在所述容纳袋内的充气的充气器模块。 在一个实施例中,可膨胀室包括限定中心开口的环形形状的可充气构件,其适于在充气室的充气期间至少部分地容纳结构的一部分。
    • 5. 发明授权
    • Multi-phase flow meter for crude oil
    • 原油多相流量计
    • US06823271B1
    • 2004-11-23
    • US10611216
    • 2003-06-30
    • Gary C. Foss
    • Gary C. Foss
    • G01F1700
    • G01F1/74G01F23/24G01F23/26
    • An apparatus, systems, and method for measuring an amount of oil in a flow of fluid at varying depths of the flow of fluid are provided. A support structure is configured to be submerged in a flow of fluid and to support a plurality of sensors. A plurality of sensor arrays is disposed on the support structure with each of the sensor arrays being disposed at positions corresponding to varying depths of the flow of fluid and being configured to measure properties of a localized flow of fluid. Each of the sensor arrays includes a capacitance sensor being configured to respond to a localized capacitance of the localized flow of fluid adjacent to the capacitance sensor. Each of the sensor arrays also includes a conductance sensor configured to measure a localized conductance of the localized flow of fluid.
    • 提供了用于测量在流体流动的不同深度处的流体流中的油量的装置,系统和方法。 支撑结构被配置为浸没在流体流中并支撑多个传感器。 多个传感器阵列设置在支撑结构上,其中每个传感器阵列设置在对应于流体流的变化深度的位置处,并被配置成测量局部流体流的特性。 每个传感器阵列包括电容传感器,其被配置为响应与电容传感器相邻的流体的局部流动的局部电容。 每个传感器阵列还包括电导传感器,其配置成测量局部流体流动的局部电导。