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Material damage diagnosis and characterization for turbine rotors using three-dimensional adaptive ultrasonic NDE data reconstruction techniques

机译:利用三维自适应超声NDE数据重建技术对涡轮转子进行材料损伤诊断和表征

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摘要

Damage diagnosis for turbine rotors plays an essential role in power plant management. Ultrasonic non-destructive examinations (NDEs) have increasingly been utilized as an effective tool to provide comprehensive information for damage diagnosis. This study presents a general methodology of damage diagnosis for turbine rotors using three-dimensional adaptive ultrasonic NDE data reconstruction techniques. Volume reconstruction algorithms and data fusion schemes are proposed to map raw ultrasonic NDE data back to the structural model of the object being examined. The reconstructed volume is used for automatic damage identification and quantification using region-growing algorithms and the method of distance-gain-size. Key reconstruction parameters are discussed and suggested based on industrial experiences. A software tool called AutoNDE Rotor is developed to automate the overall analysis workflow. Effectiveness of the proposed methods and AutoNDE Rotor are explored using realistic ultrasonic NDE data.
机译:涡轮转子的损坏诊断在电厂管理中起着至关重要的作用。超声波无损检查(NDE)已被越来越多地用作有效的工具,以提供用于损伤诊断的全面信息。这项研究提出了使用三维自适应超声NDE数据重建技术对涡轮机转子进行损伤诊断的一般方法。提出了体积重建算法和数据融合方案,以将原始超声NDE数据映射回被检查对象的结构模型。重建的体积用于使用区域增长算法和距离增益大小方法进行的自动损伤识别和量化。根据行业经验,讨论并提出了关键的重建参数。开发了一个名为AutoNDE Rotor的软件工具,以自动执行整个分析工作流程。使用实际的超声NDE数据探索了所提出方法和Aut​​oNDE转子的有效性。

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