首页> 外文会议>ICONE18;International conference on nuclear engineering >FLUID-ELASTIC INSTABILITY OF NORMAL SQUARE TUBE BUNDLES IN TWO-PHASE CROSS FLOW
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FLUID-ELASTIC INSTABILITY OF NORMAL SQUARE TUBE BUNDLES IN TWO-PHASE CROSS FLOW

机译:两相流中正常方形管束的流体弹性不稳定性

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Some knowledge on damping and fluid-elastic instability is necessary to avoid flow-induced-vibration problems in shell and tube heat exchanger such as steam generator. Fluid-elastic instability is the most important vibration excitation mechanism for heat exchanger tube bundles subjected to the cross flow. Experiments have been performed to investigate fluid-elastic instability of normal square tube bundles, subjected to two-phase cross flow. The test section consists of cantilevered flexible cylinder(s) and rigid cylinders of normal square array. From a practical design point of view, fluid-elastic instability may be expressed simply in terms of dimensionless flow velocity and dimensionless mass-damping parameter. For dynamic instability of cylinder rows, added mass, damping and critical flow velocity are evaluated. The Fluid-elastic instability coefficient is calculated and then compared to existing results given for tube bundles in normal square array.
机译:为了避免诸如蒸汽发生器之类的管壳式换热器中的流动引起的振动问题,对阻尼和流体弹性不稳定性的一些知识是必不可少的。流体弹性不稳定性是承受横流的热交换器管束最重要的振动激励机制。已经进行了实验以研究承受两相错流的普通方管束的流体弹性不稳定性。测试部分由悬臂式柔性圆柱体和法线方形阵列的刚性圆柱体组成。从实际设计的角度来看,流体弹性的不稳定性可以简单地用无量纲流速和无量纲质量阻尼参数表示。对于气缸行的动态不稳定性,评估了附加质量,阻尼和临界流速。计算流体-弹性不稳定性系数,然后将其与法线正方形阵列中管束的现有结果进行比较。

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