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首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >Improvement in the method for borehole caliper measurement based on azimuthal gamma-gamma density well logging
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Improvement in the method for borehole caliper measurement based on azimuthal gamma-gamma density well logging

机译:基于方位角γ-Gamma密度井测井的钻孔卡钳测量方法的改进

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Accurate characterization of the size and shape of the borehole is critical to the effective borehole correction for logging while drilling (LWD) measurements. It is also necessary for the real-time evaluation of geomechanical wellbore stability and for optimizing drilling operation and determining proper completion strategies. The pseudo-caliper measurement can be derived from LWD azimuthal density measurement, where a linear empirical model is employed to calculate the tool standoffs. However, we found that as the tool standoff continues to increase, the model could no longer describe the variation in borehole size accurately. In this paper, the responses of LWD azimuthal density measurement under different logging conditions are studied using the Monte Carlo modeling method. To improve the estimation of borehole geometry, a new model is proposed to determine tool standoffs and measure the borehole caliper. Simulation models with different degrees of borehole enlargement are built to investigate the performance of the model. Compared with the currently used method, the wellbore caliper values calculated using the new method are more consistent with the actual values. A field example with mechanical caliper measured from wireline logs is also presented to validate the effectiveness of the proposed method.
机译:精确表征钻孔的尺寸和形状对于在钻井(LWD)测量时对测井的有效钻孔校正至关重要。几何对地质力学井眼稳定性的实时评估也是必要的,并用于优化钻井操作并确定适当的完成策略。伪卡尺测量可以源自LWD方位角密度测量,其中采用线性经验模型来计算工具支架。然而,我们发现随着工具梯级继续增加,模型不能再准确地描述钻孔大小的变化。本文使用蒙特卡罗建模方法研究了在不同测井条件下的LWD方位角密度测量的响应。为了改善钻孔几何形状的估计,建议采用新模型来确定工具支架并测量钻孔卡钳。建立了具有不同钻孔扩大程度的仿真模型,以研究模型的性能。与目前使用的方法相比,使用新方法计算的井筒卡尺值与实际值更加一致。还提出了由有线日志测量的机械卡钳的领域示例以验证所提出的方法的有效性。

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