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High-resolution Images and Formation Evaluation in Slim Holes from a New Logging-while-drilling Azimuthal Laterolog Device (SPE-131513)

机译:来自新型钻井间隔外介质器件(SPE-131513)的高分辨率图像和纤细孔中的高分辨率图像和形成评估

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A new Logging While Drilling (LWD) device acquires laterolog resistivity logs and borehole images in 6 " holes drilled with conductive mud. On a single drill collar, the tool combines a standard laterolog azimuthal measurement with a new, high-resolution imaging capability. The tool uses two monitored button electrodes and five toroidal antennas to produce focused laterolog resistivity measurements with azimuthal sensitivity. The measurements are made at four depths of investigation with two inch vertical resolution. A new measurement configuration within the button electrodes gives downhole mud resistivity. The toroidal antennas provide bit resistivity and azimuthally averaged focused laterolog measurements at two depths of investigation. The orientation system in the tool uses the Earth magnetic field as a reference to determine the azimuthal tool position as it rotates. Together with the multi-depth sensitivities of the measurements, this allows structural and borehole invasion profile analysis. The four laterolog images can be compressed and transmitted uphole in real-time for well placement and for wellbore-stability applications. The high-resolution imager is an array of 8 button electrodes on a removable stabilizer. The resulting formation image combines the high resolution of wireline imager with the full borehole coverage of an LWD device. A dedicated data compression algorithm allows real-time transmission of this image with moderate resolution losses, enabling applications such as fracture detection while drilling. This paper describes the tool and its performancein field tests from various environments.
机译:一种新的随钻测井(LWD)装置获取侧向测井电阻率测井和井眼图像在6“孔钻有导电泥浆。在一个单一的钻铤,该工具结合了一个标准向测井方位角测量一个新的,高分辨率的成像能力。该工具使用两个监测按钮电极和五个环形天线,以产生集中向测井电阻率测量方位的灵敏度。测量在调查四个深度具有两个英寸垂直分辨率制备。该按钮的电极内的新的测量配置给井下泥浆电阻率。该环形天线提供位电阻率和方位角平均集中向测井测量在调查的两个深度。在该工具的定向系统使用地球磁场作为参考,以确定方位工具位置旋转时,加上的测量的多深度灵敏度,这使得结构和井眼入侵教授ILE分析。这四个侧向测井图像进行压缩和实时的井位和井眼稳定性的应用程序发送的井口。高分辨率成像器是8个按钮电极上的可移除的稳定剂的阵列。将得到的形成图像结合有线成像器的高分辨率与LWD装置的整个井眼覆盖。专用数据压缩算法允许该图像的实时传输具有中等分辨率的损失,从而使应用程序诸如裂缝检测随钻。本文介绍了工具和各种环境的performancein现场测试。

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