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Model Based Optimisation of Ultrasonic Corrosion Measurement

机译:超声腐蚀测量模型优化

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The detection and characterisation of corrosion in pipework is a significant challenge across a wide range of industries. A common inspection technique is the use of monolithic ultrasound probes to perform pulse echo measurements to characterise the remaining wall thickness. Although this is one of the most conceptually straightforward ultrasonic measurements, there are complicated interacting effects such as surface roughness, probe size, operating frequency and signal analysis method. The use of numerical modelling rather than experimental trials can accelerate the optimisation and qualification of the inspection. This paper presents results of applying an efficient sampling and interpolation algorithm that minimises the number of model evaluations required to build an accurate surrogate model of the inspection outcome. The application of sensitivity analysis to this model demonstrates that the inspection is insensitive to the dimensions of the probe and is highly sensitive to changes in the wall thickness and changes in the frequency properties of the probe, demonstrating the suitability of the inspection.
机译:管道上腐蚀的检测和表征是各种行业的重要挑战。常用检查技术是使用单片超声探头来执行脉冲回波测量,以表征剩余的壁厚。虽然这是最概念上最简单的超声波测量之一,但具有复杂的相互作用效果,例如表面粗糙度,探针尺寸,工作频率和信号分析方法。使用数值建模而不是实验试验可以加速检查的优化和资格。本文介绍了应用有效采样和插值算法的结果,该算法最小化了构建检查结果准确的代理模型所需的模型评估数量。敏感性分析对该模型的应用表明,检查对探头的尺寸不敏感,对墙壁厚度的变化和探头频率特性的变化非常敏感,证明了检查的适用性。

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