首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >FLUID-ELASTIC INSTABILITY IN TUBE BUNDLES AND EFFECT OF FLOW REGIME TRANSITION
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FLUID-ELASTIC INSTABILITY IN TUBE BUNDLES AND EFFECT OF FLOW REGIME TRANSITION

机译:管束中的流体弹性不稳定性及流场过渡的影响

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Fluid-elastic instability characteristics in an air-water two-phase cross-flow have been experimentally investigated using two different arrangements of cantilevered straight tube bundles. Rotated triangular array tube bundle is for the supplementary test of the existing work, and normal square array tube bundle is for the investigation of fluid-elastic instability in higher p/d condition. The present paper provides the experimental results of the tube vibration response, hydrodynamic mass, damping ratio, and fluid-elastic instability. As the two-phase gap velocity increased, the fluidic-elastic instability occurred in the lift direction and a strongly coupled tube motion was found. The damping ratio was very dependent on the void fraction, as in the previous works. For a low void fraction flow, the fluid-elastic instability could be predicted by using Connors' equation. However, the fluid-elastic instability in a high void fraction flow was quite different. The transition between the two fluid-elastic instability regions almost coincided with the flow regime transition criteria from a continuous bubbly flow to an intermittent flow.
机译:使用悬臂式直管束的两种不同布置,通过实验研究了气水两相错流中的流体弹性不稳定性。旋转的三角形阵列管束是对现有工作的补充测试,而正常的方形阵列管束是用于研究较高p / d条件下的流体弹性不稳定性。本文提供了管振动响应,流体动力质量,阻尼比和流体弹性不稳定性的实验结果。随着两相间隙速度的增加,在升程方向上发生了流体弹性的不稳定性,并且发现了强烈耦合的管运动。像以前的工作一样,阻尼比非常取决于空隙率。对于低空隙率的流动,可以使用康纳斯方程来预测流体弹性的不稳定性。但是,高空隙率流动中的流体弹性不稳定性是完全不同的。两个流体弹性不稳定性区域之间的过渡几乎与从连续气泡流向间歇流的流动状态过渡标准相吻合。

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