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Wear Prediction of Steam Generator Tubes due to Shell Side Foreign Objects

机译:壳侧异物对蒸汽发生器管的磨损预测

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摘要

A method to evaluate tube wear due to foreign objects on a steam generator tube sheet is introduced. In order to produce the database for the evaluation, a simplified vibration model based on the zonal approach concept and dissected tube model is introduced in this paper. The entire tube sheet region of the steam generator is divided into 30 zones. The data of a representative tube is used in a zone that includes hundreds of tubes. Therefore, the number of tubes analyzed to produce the database is dramatically reduced by the zonal approach concept. The dissected tube model simplifies the mode analysis by adopting a single-span beam instead of a multispan beam idealizing the full-length U-tube of a steam generator. It is shown that the natural frequencies obtained from the dissected model are about 4 to 5% lower than those of the dominant modes between the tube sheet and the first tube support structure obtained from the analysis of the full-length U-tubes. If the concerned region is between the tube sheet and the first tube support structure of the steam generator, using the zonal approach concept and the dissected tube model is very effective to save time and efforts to calculate the vibration data. In this paper, a method to predict the wear depth of the tubes due to the fixed foreign objects on the tube sheet in the secondary side of a steam generator with the simplified vibration model is introduced.
机译:介绍了一种评估由于蒸汽发生器管板上的异物引起的管磨损的方法。为了产生用于评估的数据库,本文介绍了一种基于区域方法和解剖管模型的简化振动模型。蒸汽发生器的整个管板区域分为30个区域。代表性试管的数据用于包含数百个试管的区域中。因此,通过区域方法的概念可以大大减少分析产生数据库的试管数量。解剖管模型通过采用单跨度梁而不是多跨度梁来简化模式分析,从而理想化了蒸汽发生器的全长U型管。结果表明,从解剖模型获得的固有频率比通过分析全长U型管得到的管板和第一管支撑结构之间的主导模态的固有频率低大约4%至5%。如果相关区域在管板和蒸汽发生器的第一管支撑结构之间,则使用区域方法和解剖的管模型非常有效,可以节省时间和精力来计算振动数据。本文介绍了一种利用简化的振动模型预测由于蒸汽发生器次级侧管板上固定的异物而引起的管磨损深度的方法。

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