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首页> 外文期刊>NDT & E International: Independent Nondestructive Testing and Evaluation >Monitoring the structural integrity of a flexible riser during dynamic loading with a combination of non-destructive testing methods
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Monitoring the structural integrity of a flexible riser during dynamic loading with a combination of non-destructive testing methods

机译:结合无损检测方法,在动态加载过程中监控柔性立管的结构完整性

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摘要

Flexible risers are composite structures consisting of several metal armours and polymeric layers,which are widely used in offshore oil exploration facilities due to their relatively simpler mounting,transportation and operation when compared to their rigid counterparts. Due to the nature of Brazilianoil reserves, a significant percentage of produce is transported through such structures, and their use islikely to increase in the near future. Hence, to maintain production levels and avoid environmentaldisasters it is essential to deepen the understanding of the behavior of these structures under loadingand to quantify how incremental damage of the metal components affects overall structural integrity;furthermore, the development of techniques capable of giving early warning of structural damage is ofutmost importance. In this work non-destructive testing (NDT) techniques were applied to a flexibleriser in a full-scale dynamic loading test. Of the several techniques used during the test, readings fromoptical fiber sensors based on Bragg gratings and acoustic emission were selected for a directcomparison; these were validated by displacement values recorded by the mechanical actuator.A detection pattern is observed during forced rupture of the wires of one of the outer armor layers, andreliable identification of events is possible when information from the two NDT techniques is combined.
机译:挠性冒口是由几个金属铠装和聚合物层组成的复合结构,与刚性对应物相比,它们的安装,运输和操作相对简单,因此广泛用于海上石油勘探设施。由于巴西石油储量的性质,很大一部分产品通过这种结构运输,在不久的将来它们的使用可能会增加。因此,为了保持生产水平并避免环境灾难,必须加深对这些结构在载荷下的行为的了解,并量化金属部件的增量损坏如何影响整体结构完整性;此外,能够对电池结构进行预警的技术的发展也很重要。结构破坏至关重要。在这项工作中,将无损检测(NDT)技术应用于全尺寸动态载荷测试中的柔韧性提升器。在测试过程中使用的几种技术中,选择了基于布拉格光栅和声发射的光纤传感器的读数作为直接比较。这些通过机械致动器记录的位移值进行验证。在外铠装层之一的金属丝被迫断裂期间观察到一种检测模式,并且将两种无损检测技术的信息相结合,可以可靠地识别事件。

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