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Performance evaluation of a magnetic field measurement NDE technique using a model assisted Probability of Detection framework

机译:使用模型辅助检测概率框架的磁场测量NDE技术的性能评估

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摘要

Receiver Operating Characteristics (ROC) are a powerful tool used to evaluate the performance of NDE methods; however, the need to manufacture and scan many test pieces with realistic defects means that they are expensive and time-consuming to produce. Advances in computational power now mean that it is possible to use numerical models to greatly increase the efficiency of producing ROC for practical applications. A Model Assisted Probability of Detection (MAPOD) framework has been developed to predict the performance of magnetic field measurement NDE techniques. The MAPOD method is used to predict the performance of a promising new technique relying on the deflection of a current injected into a pipe at remote locations, and measurement of the resulting magnetic field perturbations due to defects. A significant proportion of pipes cannot be inspected by pigging methods, and external inspection often requires complete coating removal; therefore, an NDE method that functions outside pipe coatings and cladding is attractive. In this method, changes in the radial and axial components of the field are measured and attributed to defects, but a strong azimuthal component means that misalignment can give significant apparent radial and axial signals due to the azimuthal field apparently having a component in these directions. This requires that the second-order gradient of the magnetic field be measured to maximise sensitivity. Fluctuations in the sensitivity and orientation of the gradiometer during the scan are expected to determine the maximum sensitivity of the technique in most practical applications; however, the flexibility of the framework allows performance to be rapidly predicted and quantified for many test scenarios. Results suggest good detection performance for defects greater than 15% of the wall thickness (T = 7.1 mm) in a 6″ pipe with 2 A (200 A/m~2) current injected when measuring above typical insulation thickness (25-50 mm).
机译:接收器工作特性(ROC)是用于评估NDE方法性能的强大工具。然而,需要制造和扫描许多具有实际缺陷的试件意味着制造它们既昂贵又费时。现在,计算能力的提高意味着可以使用数值模型来大大提高实际应用中产生ROC的效率。已经开发了模型辅助检测概率(MAPOD)框架来预测磁场测量NDE技术的性能。 MAPOD方法用于预测有前途的新技术的性能,该技术依赖于注入到远端位置的管道中的电流的偏转,并测量由于缺陷而导致的磁场扰动。很大一部分管道无法通过清管方法进行检查,并且外部检查通常需要彻底清除涂层。因此,在管道涂层和覆层外部起作用的NDE方法很有吸引力。在这种方法中,测量了磁场的径向和轴向分量的变化并将其归因于缺陷,但是强大的方位角分量意味着由于方位角磁场显然在这些方向上具有分量,因此未对准会产生明显的径向和轴向信号。这要求测量磁场的二阶梯度以最大化灵敏度。预计在扫描过程中梯度计的灵敏度和方向的波动将决定该技术在大多数实际应用中的最大灵敏度。但是,该框架的灵活性允许针对许多测试场景快速预测和量化性能。结果表明,当在高于典型绝缘厚度(25-50 mm)的情况下注入2 A(200 A / m〜2)电流的6英寸管道中,对于大于壁厚15%(T = 7.1 mm)的缺陷,检测性能良好。 )。

著录项

  • 来源
    《NDT & E international》 |2017年第10期|61-70|共10页
  • 作者单位

    NDE Group, Mechanical Engineering Department, Imperial College London, London, United Kingdom;

    NDE Group, Mechanical Engineering Department, Imperial College London, London, United Kingdom;

    NDE Group, Mechanical Engineering Department, Imperial College London, London, United Kingdom,Department of Aerospace Engineering and Engineering Mechanics, University of Cincinnati, Cincinnati, OH, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ACFM; Current deflection; Electromagnetic NDE; MAPOD; ROC;

    机译:ACFM;电流偏转电磁无损检测MAPOD;鹏;

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