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    • 7. 发明授权
    • Apparatus and method for fluid phase fraction determination using x-rays
    • 使用X射线进行流体相分数测定的装置和方法
    • US07684540B2
    • 2010-03-23
    • US11425285
    • 2006-06-20
    • Joel GrovesEtienne ValleePeter Wraight
    • Joel GrovesEtienne ValleePeter Wraight
    • G01N23/06
    • G01N33/28A61B6/4241G01N23/06G01N33/2841G01N33/2847G01N2223/313G01N2223/635
    • An apparatus and method for determining the phase fraction of a fluid collected downhole is shown comprising an x-ray generator, a filter, a sample cell, and a radiation detector. The filter produces a radiation spectrum with a high energy portion and a low energy portion. Filtered radiation is passed through a sample fluid and the resulting attenuated radiation signal is used in calculating the phase fractions of oil, water, and gas in the sample fluid. In one embodiment, a second reference radiation detector measures the radiation directly from the x-ray generator and this measurement is used in normalizing the fraction result. The ratio of the high energy signal to low energy signal of the reference detector is used in controlling the input voltage of the x-ray generator thus ensuring a stable spectrum.
    • 显示用于确定在井下收集的流体的相分数的装置和方法,其包括x射线发生器,滤光器,样品池和放射线检测器。 滤光器产生具有高能量部分和低能量部分的辐射光谱。 过滤的辐射通过样品流体,并且所得减弱的辐射信号用于计算样品流体中油,水和气体的相分数。 在一个实施例中,第二参考辐射检测器直接从x射线发生器测量辐射,并且使用该测量来对分数结果进行归一化。 参考检测器的高能量信号与低能量信号的比率用于控制x射线发生器的输入电压,从而确保稳定的光谱。
    • 9. 发明授权
    • Apparatus and method for fluid phase fraction determination using x-rays optimized for wet gas
    • 使用针对湿气优化的x射线进行流体相分数测定的装置和方法
    • US07903782B2
    • 2011-03-08
    • US11959917
    • 2007-12-19
    • Joel L. GrovesEtienne ValleePeter Wraight
    • Joel L. GrovesEtienne ValleePeter Wraight
    • G01N23/06
    • G01N23/12G01N33/2847
    • An apparatus for determining fractional amounts of each phase of a multiple phase fluid includes an x-ray generator includes a sample chamber is configured to admit therein a sample of fluid for analysis. The chamber is disposed in a radiation path output from the generator. A filter is disposed in the radiation path between the output of the generator and the radiation input of the sample chamber. A first radiation detector is positioned in a radiation path from the sample chamber after radiation has passed through the sample chamber. A thickness and a material of the filter are selected to optimize resolution of radiation detected by the first detector to changes in volume fraction of oil and water in the fluid sample when a gas fraction thereof is between about 90 to 100 percent.
    • 一种用于确定多相流体每相的分数量的装置包括:x射线发生器,其包括样品室,其被配置成允许用于分析的流体样品。 腔室设置在从发生器输出的辐射路径中。 过滤器设置在发生器的输出和样品室的辐射输入之间的辐射路径中。 辐射已经通过样品室之后,第一辐射探测器位于从样品室的辐射路径中。 选择过滤器的厚度和材料以优化当第一检测器的气体分数在约90至100%之间时,流体样品中的油和水的体积分数发生变化的第一检测器检测到的辐射的分辨率。
    • 10. 发明申请
    • Apparatus and Method for Fluid Phase Fraction Determination Using R-Rays Optimized for Wet Gas
    • 使用R-Rays优化湿气的流体相分数测定装置和方法
    • US20090161823A1
    • 2009-06-25
    • US11959917
    • 2007-12-19
    • Joel L. GrovesEtienne ValleePeter Wraight
    • Joel L. GrovesEtienne ValleePeter Wraight
    • G01N23/206
    • G01N23/12G01N33/2847
    • An apparatus for determining fractional amounts of each phase of a multiple phase fluid includes an x-ray generator includes a sample chamber is configured to admit therein a sample of fluid for analysis. The chamber is disposed in a radiation path output from the generator. A filter is disposed in the radiation path between the output of the generator and the radiation input of the sample chamber. A first radiation detector is positioned in a radiation path from the sample chamber after radiation has passed through the sample chamber. A thickness and a material of the filter are selected to optimize resolution of radiation detected by the first detector to changes in volume fraction of oil and water in the fluid sample when a gas fraction thereof is between about 90 to 100 percent.
    • 一种用于确定多相流体每相的分数量的装置包括:x射线发生器,其包括样品室,其被配置成允许用于分析的流体样品。 腔室设置在从发生器输出的辐射路径中。 过滤器设置在发生器的输出和样品室的辐射输入之间的辐射路径中。 辐射已经通过样品室之后,第一辐射探测器位于从样品室的辐射路径中。 选择过滤器的厚度和材料以优化当第一检测器的气体分数在约90至100%之间时,流体样品中的油和水的体积分数发生变化的第一检测器检测到的辐射的分辨率。