MIT/MTT and Visualization Logging Technology and Its Application

Zhengguo Yan, Yang LI, Jie Liu, Ke Li
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Abstract

With the number of casing damage wells in domestic oil and gas fields increases on a large scale, the problem of low accuracy in casing damage detection of Oil and gas Wells becomes increasingly serious. The Multi Finger Imaging Tool (MIT) and the Magnetic Thickness Tool (MTT) combination logging tool has unique advantages in detecting the change of casing diameter and wall thickness, but it is difficult to reflect the casing damage condition comprehensively and accurately. Considering that the VideoLog downhole TV can combine advantages with the former to make up for shortcomings, and further accurately detect casing loss, this paper proposes a visual combination logging technology scheme of MIT and MTT measurement. MIT/MTT and the VideoLog are mechanically connected by a special conversion head. The communication mode adopts the combination of downhole multi-core bus. By using parallel transmission technology and combining the characteristics of time-sharing operation of the instrument, the problem of signal transmission interference between the two is solved. It provides a set of innovative technical means of low cost, high efficiency and high value for the domestic and overseas field of coat damage detection.
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MIT/MTT与可视化测井技术及其应用
随着国内油气田套损井数量的大量增加,油气井套损检测精度低的问题日益严重。多指成像工具(MIT)和磁性厚度工具(MTT)组合测井工具在检测套管直径和壁厚变化方面具有独特的优势,但难以全面、准确地反映套管损伤情况。考虑到VideoLog井下电视可以结合前者的优点弥补其不足,进一步准确检测套管漏失,本文提出了MIT与MTT测量的可视化组合测井技术方案。MIT/MTT和VideoLog通过一个特殊的转换头机械连接。通信方式采用井下多芯总线组合。采用并行传输技术,结合仪器分时运行的特点,解决了两者之间的信号传输干扰问题。为国内外涂层损伤检测领域提供了一套低成本、高效率、高价值的创新技术手段。
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