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Borehole Compensation During Pulsed-Neutron Porosity Logging

机译:脉冲中子孔隙率测井中的井眼补偿

摘要

Methods, tools, and systems for determining porosity in an earth formation are disclosed. Neutrons are emitted into the formation to induce inelastic scattering gamma rays and thermal capture gamma rays in the formation. The induced gamma rays are detected at a proximal gamma detector and a far gamma detector, which are spaced at different axial distances from the neutron source. A measured proximal-to-far inelastic ratio (a ratio of inelastic scattering gammas detected at the proximal and far detector) and a proximal-to-far thermal capture ratio (a ratio of thermal capture gammas detected at the proximal and far detector) are determined and used to calculate the formation porosity. Techniques are disclosed for removing borehole and casing configuration effects from the measured proximal-to-far thermal capture ratio, leaving only porosity dependence.
机译:公开了用于确定地层中的孔隙率的方法,工具和系统。中子被发射到地层中以在地层中引起非弹性散射伽马射线和热捕获伽马射线。感应的伽马射线在近端伽马探测器和远伽马探测器上检测到,它们与中子源的轴向距离不同。测得的近端至远端无弹性比(在近端和远端探测器处检测到的非弹性散射伽马的比率)和近端至远端热捕获率(在近端和远端探测器处检测到的热捕获伽马的比率)为确定并用于计算地层孔隙度。公开了用于从所测量的近端至远端热捕获率中去除井眼和套管构造影响的技术,仅保留孔隙率依赖性。

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