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A Uniform Linear Multi-Coil Array-Based Borehole Transient Electromagnetic System for Non-Destructive Evaluations of Downhole Casings

机译:基于均匀线性多线圈阵列的井眼瞬变电磁系统用于井下套管的无损评估

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摘要

Borehole transient electromagnetic (TEM) techniques have been proven to be efficient for nondestructive evaluations (NDEs) of metal casings using eddy-current properties. However, physical limitations and bad borehole conditions restrict the use of eddy-current sensors, which makes downhole casing inspections very different from those of conventional NDE systems. In this paper, we present a uniform linear multi-coil array-based borehole TEM system for NDEs of downhole casings. On the basis of the borehole TEM signal model, a numerical multi-coil array approach using the Gauss–Legendre quadrature is derived. The TEM response can be divided into two independent parts related to the transmitting-receiving distance (TRD) and the observation time and casing thickness. Using this property, the signal received by the multi-coil array is weighted to cancel the influence of the TRDs of the different array elements to obtain the optimal response according to the linearly constrained minimum variance criterion, which can be shown to be identical to that of achieving the maximum signal-to-noise ratio. The effectiveness of the proposed method was verified by applying the uniform linear multi-coil array to a borehole TEM system for NDEs of oil-well casings. Field experiments were conducted, and the results demonstrate the effectiveness of the proposed method.
机译:钻孔瞬变电磁(TEM)技术已被证明可有效利用涡流特性对金属外壳进行无损评估(NDE)。但是,由于物理上的局限性和恶劣的井眼条件,涡流传感器的使用受到限制,这使得井下套管的检查与常规NDE系统的检查有很大不同。在本文中,我们提出了一种用于井下套管无损检测的基于均匀线性多线圈阵列的钻孔TEM系统。在钻孔TEM信号模型的基础上,推导了使用高斯-勒让德正交积分的数字多线圈阵列方法。 TEM响应可分为两个独立的部分,分别与发射接收距离(TRD)和观察时间以及套管厚度有关。利用此属性,可以对多线圈阵列接收的信号进行加权,以消除不同阵列元件的TRD的影响,从而根据线性约束最小方差准则获得最佳响应,这可以证明与该准则相同。达到最大信噪比的目的。通过将均匀线性多线圈阵列应用于油井套管无损检测钻孔TEM系统,验证了该方法的有效性。进行了现场实验,结果证明了该方法的有效性。

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