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首页> 外文期刊>Petrophysics: The SPWLA Journal of Formation Evaluation and Reservoir Description >Through-Casing Formation Conductivity Measurement Based on Transient Electromagnetic Logging Data
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Through-Casing Formation Conductivity Measurement Based on Transient Electromagnetic Logging Data

机译:基于瞬态电磁记录数据的通壳形成电导测量

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摘要

Transient electromagnetic (TEM) logging is a promising noncontact method for through-casing formation conductivity measurements. We studied the through casing TEM logging method based on the processing of TEM logging data measured in a production well. Similar to Doll's work in borehole induction logging, we presented the expressions of the 'useful signal' and the 'useless signal' in casedhole logging based on which, the methods of removing the 'useless signal' and obtaining the formation conductivity curve are introduced. We analyzed the influence of the casing on the TEM signals, described the characteristics of TEM response signals, and obtained the 'useful signal' carrying formation conductivity data. Cascdhole formation conductivity curves, which are subsequently compared with the known openhole conductivity log, are obtained by dealing with the 'useful signal'. We identified the characteristics of casedhole formation conductivity curves. and some problems that need to be considered in their practical application. Due to the influence of the casing, the radial detection depth of the TEM logging tool in a cased hole is small, so the detection result is mainly the equivalent conductivity of the cement ring and formation near the outer casing wall. Although the casedhole conductivity curves are in good agreement with openhole logging results in regular formations, due to the influence of the casing and the changes in the physical environment in the well, complete consistency is unrealistic for these two kinds of curves in all well intervals. Therefore, a thorough analysis is required before practical application. Moreover, the effects of well temperature and casing deformation must be corrected for accordingly.
机译:瞬态电磁(TEM)测井是一种具有壳体形成电导率测量的有前途的非联系方法。我们通过在生产良好中测量的TEM测井数据的处理来研究通过套管TEM测井方法。类似于娃娃在钻孔感应测井中的工作,我们介绍了基于该套孔测井中的“有用信号”和“无用信号”的表达式,介绍了去除“无用信号”并获得形成形成电导率曲线的方法。我们分析了壳体对TEM信号的影响,描述了TEM响应信号的特性,并获得了携带形成电导数据的“有用信号”。 Cascdhole形成电导率曲线随后与已知的遮盖电导率对比进行比较,通过处理“有用信号”而获得。我们确定了套孔形成电导率曲线的特征。以及在实际应用中需要考虑的一些问题。由于壳体的影响,壳体孔中的TEM测井工具的径向检测深度很小,因此检测结果主要是外壳壁附近的水泥环和形成的等效电导率。虽然套孔电导率曲线与常规地层的透露伐木曲线吻合良好,但由于套管的影响和物理环境的变化在井中的变化,这两种曲线在所有井间隔内都是不现实的。因此,在实际应用之前需要彻底的分析。此外,必须相应地校正孔温度和壳体变形的效果。

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