首页> 外文会议>ASME Pressure Vessels and Piping Conference >THE EFFECTS OF TUBE ARRAY GEOMETRY ON FLUIDELASTIC INSTABILITY IN HEAT EXCHANGER TUBE ARRAYS IN CROSS FLOW
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THE EFFECTS OF TUBE ARRAY GEOMETRY ON FLUIDELASTIC INSTABILITY IN HEAT EXCHANGER TUBE ARRAYS IN CROSS FLOW

机译:管阵几何的影响在交叉流动中热交换器管阵列中的流化不稳定性

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The shut-down of the San Onofre Nuclear Generating Station (SONGS) has been attributed to damaging streamwise Fluidelastic Instability (FEI) of the steam generator tubes, a phenomenon which has traditionally been assumed not to occur. This has generated a significant research effort to better understand this phenomenon and to develop appropriate design criteria for its prevention. Most current design codes are based on Connors criterion for FEI which neglects both streamwise FEI and the effects of tube array pattern and pitch ratio. It is becoming clear that array geometry and pitch ratio are important determining factors in FEI, especially in the streamwise direction. This paper presents an extension of the theory of Lever and Weaver to consider arrays of flexible fluid-coupled tubes which are free to become unstable in both the transverse and streamwise directions. This simplified modelling approach has the advantages of being very tractable for numerical parametric studies and having no need for experimental data input. Previous research by the authors has shown that the predictions of this model agree very well with the available experiments for parallel triangular arrays for both transverse and streamwise FEI. In this paper, the results of such studies are presented for the both transverse and streamwise FEI for square inline and normal triangular arrays and compared with the authors' previous results for parallel triangular arrays. It is shown that FEI is strongly influenced by array geometry, especially for small pitch ratio arrays operating at low values of the mass damping parameter. The results show good agreement with the available experimental data.
机译:关机的圣奥诺弗雷核引起的驻地(听歌)的已被归因于损坏蒸汽发生器管的流向Fluidelastic不稳定(FEI),它历来被认为不会发生这种现象。这已经产生了显著的研究工作,以便更好地理解这一现象,并制定预防相应的设计标准。大多数目前的设计代码基于康纳斯判据FEI而忽略二者流向FEI和管阵列图案与间距比的影响。它正变得清楚,阵列几何形状和间距比是在FEI重要决定因素,特别是在流动方向。本文呈现杠杆和韦弗理论的扩展来考虑柔性流体耦合管,其可以自由地成为在横向和流向两个方向上不稳定的阵列。这种简化的建模方法具有可进行数值参数研究非常易于处理,并具有不需要实验数据输入的优点。由作者先前的研究已经表明,该模型的预测相当吻合与两个横向平行三角阵列可用的实验和流向FEI。在本文中,这样的研究的结果呈现为横向和流向FEI为正方形内联和正常三角阵列,并与作者以前为平行三角阵列的结果进行比较。结果表明,FEI强烈地受阵列几何形状的影响,特别是对在质量减振参数的值低操作小间距比阵列。结果表明,与现有的实验数据吻合。

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