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Improved focusing for thick-wall pipeline girth weld inspections using phased arrays

机译:使用相控阵改善厚壁管道围焊缝检查的聚焦

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Since Engineering Critical Assessment (ECA) became a standard procedure for assessing pipeline girth weld defects, sizing has become a major issue. Despite claims and requests for better sizing, most pipeline trials have shown that sizing accuracies are only within about 1 mm at best in the vertical (through-wall) direction, and typically worse in the horizontal (circumferential) plane due to beam spread. Defect sizing requirements are becoming more stringent as new high-strength pipes and new applications are being introduced. This applies especially to thick-walled offshore pipelines, particularly tendons and risers, where fatigue life is critical. This project has developed a curved 1.5D matrix array, primarily for improving focusing in the horizontal direction on thick-walled risers and tendons. Initially, the focusing was modelled for a variety of arrays, including the standard flat array. Modelling showed the optimum array to be 120 elements long, with three rows, with a slight curvature for initial focusing. Detailed focusing can be performed using the electronic capability of phased arrays. Normal unfocused Pipe WIZARD phased arrays use 60-element arrays on either side of the weld; in contrast, the new array uses 360 elements for one-side only inspection. The results from this array were compared with the standard unfocused 1D array on a typical calibration block; significant improvements were obtained.
机译:自工程关键评估(ECA)成为评估管道环缝焊缝缺陷的标准程序以来,尺寸确定已成为主要问题。尽管要求提高尺寸的要求和要求,但大多数管线试验都显示,垂直(贯穿壁)方向的尺寸精度最多仅在1毫米以内,而在水平(周向)平面上由于光束的扩散,尺寸精度通常会更差。随着新的高强度管道和新应用的引入,缺陷尺寸要求变得越来越严格。这尤其适用于疲劳寿命至关重要的厚壁海上管道,特别是腱和立管。该项目开发了弯曲的1.5D矩阵阵列,主要用于改善水平方向上对厚壁立管和钢筋束的聚焦。最初,聚焦是针对各种阵列建模的,包括标准的平面阵列。建模显示,最佳阵列的长度为120个元素,具有三行,并具有轻微的曲率以进行初始聚焦。可以使用相控阵的电子功能执行详细的聚焦。正常的未聚焦Pipe WIZARD相控阵在焊缝的任何一侧都使用60个元素的阵列。相反,新阵列使用360个元素进行仅一侧的检查。将来自该阵列的结果与典型校准块上的标准非聚焦一维阵列进行比较;获得了明显的改善。

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