首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >AN ANALYTICAL METHOD TO PREDICT FRETTING-WEAR DAMAGE IN THE DOUBLE 90° U-BEND TUBES
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AN ANALYTICAL METHOD TO PREDICT FRETTING-WEAR DAMAGE IN THE DOUBLE 90° U-BEND TUBES

机译:一种预测90°U型弯管中微动磨损的分析方法

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摘要

When the flow velocity exceeds a critical value, fluid-elastic instability is believed to be a factor of the large-amplitude vibration and results in the rapid wear of heat exchanger tubes. For sub-critical flow velocities, however, the random turbulence excitation is considered the main mechanism to cause the long-term wear on steam generator tubes. Since flow-induced interactions between the tube and tube supports in the sub-critical flow velocity can cause a localized tube wear, tube movement in the clearance between the tube and tube support, as well as the normal contact force on the tubes by fluid should be maintained as low as possible. An analytical method is proposed for predicting fretting-wear damage of the double 90°U-bend tubes. This approach is based on Archard's equation for adhesive wear with both the straight single-span tube analytical model proposed by Connors and the linear structural dynamic theory of ASME Section III, Appendix N-1300. The results from the presented method show good trend compared with the field data. It is expected that this method can be utilized to predict the fretting-wear of the double 90° U-bend tubes in steam generators.
机译:当流速超过临界值时,流体弹性的不稳定性被认为是大振幅振动的因素,并且导致热交换器管的快速磨损。但是,对于次临界流速,随机湍流激励被认为是导致蒸汽发生器管长期磨损的主要机制。由于在亚临界流速下,管和管支架之间的流致相互作用会引起管的局部磨损,因此应在管和管支架之间的间隙中移动管,以及流体对管的正常接触力保持尽可能低的水平。提出了一种分析方法来预测双90°U形弯管的微动磨损。这种方法是基于针对粘着剂磨损的Archard方程,结合了Connors提出的直线单跨径分析模型和ASME第三部分附录N-1300的线性结构动力学理论。与现场数据相比,该方法的结果显示出良好的趋势。预期该方法可用于预测蒸汽发生器中双90°U形弯管的微动磨损。

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