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Radiographic modelling for NDE of subsea pipelines

机译:海底管道无损检测的射线照相建模

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摘要

This work presents an investigation of the accuracy of a radiographic simulation model applied to subsea pipeline inspections. Experimental measurements of a sample in a water tank are used to develop a set of calibrated simulation parameters for the modelling software aRTist. Image quality parameters such as signal-to-noise ratio, contrast and basic spatial resolution are compared with the aim of matching simulated values to experimental results. With this method signal-to-noise ratio was successfully matched while differences were still found in contrast-to-noise ratio comparisons. This means that measurements depending on absolute intensity are not accurate enough, however wall thickness measurements in tangential images, which are not based on absolute intensity, were found to produce similar results in simulated and experimental cases. The differences in contrast and intensity are thought to be due to detector backscatter and additional scatter from out-of-setup objects within the exposure bay, due to a lack of source collimation. These would affect the experimental results but were not included in the simulated setup. This was investigated by including different proportions of peripheral water and other objects in the modelled setup and examining the effect on image quality parameters. Results show that this additional scatter has a significant impact on the radiograph, particularly on image contrast, and is therefore the likely cause of differences between experimental and simulated images. This implies that it will be very difficult to completely match simulated to experimental results, as including all possible scattering objects in the model would be very complex. An improvement could be made by using real subsea data to estimate this additional scattering, which could then be used to calibrate the model. However there would still be significant uncertainty in the ability of the model to accurately produce realistic intensity and contrast.
机译:这项工作提出了用于海底管道检查的射线照相仿真模型准确性的调查。使用水箱中样品的实验测量结果来为建模软件aRTist开发一套校准的仿真参数。比较了图像质量参数,例如信噪比,对比度和基本空间分辨率,目的是使模拟值与实验结果相匹配。用这种方法可以成功地匹配信噪比,同时在对比噪声比的比较中仍然发现差异。这意味着依赖于绝对强度的测量不够精确,但是在模拟和实验情况下,发现切向图像中的壁厚测量(并非基于绝对强度)会产生相似的结果。对比度和强度的差异被认为是由于检测器的反向散射以及由于缺乏光源准直而导致曝光舱内未对准物体引起的额外散射。这些会影响实验结果,但不包括在模拟设置中。通过在建模设置中包括不同比例的外围水和其他对象并检查对图像质量参数的影响来进行调查。结果表明,这种额外的散射对射线照片,特别是图像对比度有重大影响,因此可能是实验图像和模拟图像之间差异的原因。这意味着将模拟与实验结果完全匹配非常困难,因为在模型中包括所有可能的散射对象将非常复杂。通过使用真实的海底数据来估计此额外的散射,可以进行改进,然后可以将其用于校准模型。但是,该模型准确产生实际强度和对比度的能力仍然存在很大的不确定性。

著录项

  • 来源
    《NDT & E international》 |2017年第3期|113-122|共10页
  • 作者单位

    Imperial College, Department of Mechanical Engineering, London, United Kingdom;

    BAM Federal Institute for Materials Research and Testing, Berlin, Germany;

    BAM Federal Institute for Materials Research and Testing, Berlin, Germany;

    BAM Federal Institute for Materials Research and Testing, Berlin, Germany;

    BAM Federal Institute for Materials Research and Testing, Berlin, Germany;

    Imperial College, Department of Mechanical Engineering, London, United Kingdom;

    Imperial College, Department of Mechanical Engineering, London, United Kingdom;

    BAM Federal Institute for Materials Research and Testing, Berlin, Germany;

  • 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

    Digital radiography; Modelling validation; Subsea pipeline inspection; Tangential radiography;

    机译:数字射线照相;建模验证;海底管道检查;切线射线照相;
  • 入库时间 2022-08-17 13:23:27

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