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STUDY ON THE SIMPLIFIED METHOD OF SPECIAL SUPPORTING STRUCTURE FOR STEAM GENERATOR TUBES

机译:蒸汽发生器管特殊支撑结构简化方法研究

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The flow induced vibration of tubes in the steam generator gradually attracts great attention. The natural frequency of the tube is the basic parameter for vibration analysis. The supporting structures of the tube bundle in steam generator are the cinquefoil orifice-baffle and the anti-vibration bar which is different from the common baffle plate. The issue that researchers focus on is how these supporting structures affect the natural frequency. A simplified method of the special support in the tube bundle was studied based on the numerical simulation. According to the characteristics of supporting structures, the effect of stiffness of the supporting structures on the natural frequency was studied by the spring element constraints. The results show that when the stiffness of the support structure is larger than the magnitude of 105 N/m, the stiffness has no influence on the natural frequency. The frictional force of the circumferential constraint inside the plane is too weak to constrain the tube so we need to pay more attention on the vibration inside the plane. Through changing the contact length of the support component and tubes, the effect of the contact condition on the natural frequency is studied. The results show that the contact condition has a certain effect on the natural frequency. When the support is simplified as simple support, the influence on natural frequency is small and the deviation is less than 1.5%. And there is a certain safety margin under the simplified method. In the calculation process, the special support can be simplified as simple support and the calculation results are relatively accurate and conservative.
机译:蒸汽发生器中的管道的流动诱导振动逐渐引起了极大的关注。管的固有频率是振动分析的基本参数。蒸汽发生器中的管束的支撑结构是与公共挡板不同的阴影孔挡板和抗振动杆。研究人员专注的问题是这些支持结构如何影响自然频率。基于数值模拟研究了管束中的特殊支撑的简化方法。根据支撑结构的特性,通过弹簧元素约束研究了支撑结构对固有频率的刚度的影响。结果表明,当支撑结构的刚度大于105n / m的幅度时,刚度对自然频率没有影响。平面内周向约束的摩擦力太弱,无法约束管,因此我们需要更多地关注平面内的振动。通过改变支撑部件和管的接触长度,研究了接触条件对自然频率的影响。结果表明,接触条件对自然频率有一定的影响。当支持被简化为简单的支持时,对固有频率的影响很小,偏差小于1.5%。并且在简化方法下存在一定的安全保证金。在计算过程中,可以简化特殊支持作为简单的支持,并且计算结果相对准确和保守。

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