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Magnetic Anomalies of Submarine Pipeline Based on Theoretical Calculation and Actual Measurement

机译:基于理论计算与实测的海底管道磁异常

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摘要

Marine magnetic method is widely used for detecting and locating the submarine pipeline. In this paper, the theoretical calculation model of total-field magnetic anomalies (TMAs) of submarine pipeline was derived based on Poisson's equation. Taking a submarine gas pipeline for example, the TMA theoretical calculation and the verification sea test were carried out. Based on the calculation, the influences that the geomagnetic parameters, pipeline parameters, and measuring plane height had on the TMA characteristics of pipeline were analyzed. The TMA shape changed slightly with geomagnetic declination D and was significantly influenced by the azimuth theta of the pipeline. The corresponded location of the pipeline on the TMA profile varied with D seemed to be symmetrical with D = 0 degrees as the center, but within 1.0 m, and changed greatly with theta with an offset distance of upping to 4.4 m. The TMA amplitude was linearly positively correlated with geomagnetic intensity T-0, quadratic difference of outer and inner diameters of pipeline d(1) (2)-d(2) (2), and susceptibility k, respectively, and was inversely proportional to the square of measuring plane height R, and changed greatly with D, I, and theta but without obvious correlation. The TMA width changed greatly with I and theta, respectively, but without obvious correlation, and was approximately positively correlated with R. On the TMA profile that was perpendicular to the pipeline, there would be an obvious "pulse" anomaly on the smooth profile, and the location of pipeline corresponded a specific point near the TMA maximum point depending on D and theta, so that the accurate location of the pipeline needed to be corrected according to these two parameters, not just the TMA maximum point.
机译:船用电磁法被广泛用于海底管道的检测和定位。本文基于泊松方程推导了海底管道全场磁异常(TMA)的理论计算模型。以海底天然气管道为例,进行了TMA理论计算和验证海试。在计算的基础上,分析了地磁参数,管道参数和测量平面高度对管道TMA特性的影响。 TMA形状随地磁偏角D略有变​​化,并且受管道的方位角theta的影响很大。随着D的变化,管道在TMA轮廓上的对应位置似乎以D = 0度为中心对称,但在1.0 m以内,并且随着theta的变化很大,偏移距离最大为4.4 m。 TMA振幅与地磁强度T-0,管道外径和内径d(1)(2)-d(2)(2)的二次方差以及磁化率k呈线性正相关,与磁化率k成反比。测量平面高度R的平方,随D,I和theta的变化很大,但没有明显的相关性。 TMA宽度分别随I和theta发生很大变化,但没有明显的相关性,并且与R大致成正相关。在垂直于管道的TMA轮廓上,光滑面上会出现明显的“脉冲”异常根据D和theta,管道的位置对应于TMA最高点附近的特定点,因此需要根据这两个参数(不仅仅是TMA最高点)校正管道的准确位置。

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