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基于辅助传感器的钻孔瞬变电磁系统用于多管柱的无损检测

Auxiliary Sensor-Based Borehole Transient Electromagnetic System for the Nondestructive Inspection of Multipipe Strings.

作者信息

Dang Bo, Yang Ling, Du Na, Liu Changzan, Dang Ruirong, Wang Bin, Xie Yan

机构信息

Key Laboratory of Education Ministry for Photoelectric Logging and Detecting of Oil and Gas, Xi'an Shiyou University, Xi'an 710065, China.

School of Marine Science and Technology, Northwestern Polytechnical University, Xi'an 710072, China.

出版信息

Sensors (Basel). 2017 Aug 9;17(8):1836. doi: 10.3390/s17081836.

Abstract

Transient electromagnetic (TEM) techniques are widely used in the field of geophysical prospecting. In borehole detection, the nondestructive inspection (NDI) of a metal pipe can be performed efficiently using the properties of eddy currents. However, with increasing concern for safety in oil and gas production, more than one string of pipe is used to protect wellbores, which complicates data interpretation. In this paper, an auxiliary sensor-based borehole TEM system for the NDI of multipipe strings is presented. On the basis of the characteristics of the borehole TEM model, we investigate the principle behind the NDI of multipipe strings using multiple time slices of induced electromotive force (EMF) in a single sensor. The results show that the detection performance of NDI is strongly influenced by eddy-current diffusion in the longitudinal direction. To solve this problem, we used time slices of the induced EMF in both the main and auxiliary sensors. The performance of the proposed system was verified by applying it to an oil well with a production casing and liner. Moreover, field experiments were conducted, and the results demonstrate the effectiveness of the proposed method.

摘要

瞬变电磁(TEM)技术在地球物理勘探领域得到了广泛应用。在钻孔检测中,利用涡流特性可高效地对金属管道进行无损检测(NDI)。然而,随着对油气生产安全的关注度不断提高,人们使用多根管道来保护井筒,这使得数据解释变得复杂。本文提出了一种基于辅助传感器的用于多管柱无损检测的钻孔TEM系统。基于钻孔TEM模型的特性,我们研究了利用单个传感器中感应电动势(EMF)的多个时间切片对多管柱进行无损检测的原理。结果表明,无损检测的检测性能受纵向涡流扩散的影响很大。为解决这一问题,我们在主传感器和辅助传感器中都使用了感应EMF的时间切片。通过将该系统应用于一口带有生产套管和衬管的油井,验证了所提系统的性能。此外,还进行了现场实验,结果证明了所提方法的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e2f/5579722/505c9a8ae52b/sensors-17-01836-g001.jpg

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