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首页> 外文期刊>Journal of vibration and control: JVC >Self-Excited Oscillations of Dual Cylindrical Flexible Weir Shells Due to Overflow Fluid
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Self-Excited Oscillations of Dual Cylindrical Flexible Weir Shells Due to Overflow Fluid

机译:溢流引起的双圆柱柔性堰壳的自激振荡

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Self-excited oscillations of the structure coupled with inner fluid occurred in the insulation wall cooling system of the fast breeder reactor Super-Phenix-1 (SPX-1) in France during test operations. In this system, lower temperature sodium going up along the inside of the main vessel in a feeding plenum brims over a cylindrical flexible weir shell and flows into a restitution plenum. It is reported that the self-excited oscillations were found to occur at the same natural frequency of the sloshing in the restitution plenum, the free surface of the fluid in both feeding and restitution plenums oscillated at large amplitudes, and the cylindrical shell was found to oscillate with an oval vibration mode instability. Such an instability is called a coupled sloshing mode. In this study, the authors analyzed and performed experiments on the instability of a multiple cylindrical structure system that has dual flexible weir shells. They measured self-excited oscillations changing various parameters such as discharge flow rate, difference of the liquid heights between feeding and restitution plenums, and so on. In the experiment, it was found that dual cylindrical shells oscillate in and out of phase with each other with an oval vibration mode under the specific conditions. Comparison between theoretically and experimentally obtained instability regions was made showing good agreement.
机译:在测试操作期间,法国快速增殖反应堆Super-Phenix-1(SPX-1)的绝缘壁冷却系统中发生了结构与内部流体耦合的自激振荡。在该系统中,较低温度的钠在进料室中沿主容器的内部上升,在圆柱形柔性堰壳上方蔓延并流入复原室。据报道,发现自激振荡以相同的自然频率发生在复原气室中的晃动中,进料和复原气室中流体的自由表面都以大幅度振荡,并且发现圆柱壳以椭圆形振动模式不稳定。这种不稳定性称为耦合晃动模式。在这项研究中,作者对具有双重柔性堰壳的多圆柱结构系统的不稳定性进行了分析和实验。他们测量了自激振荡,这些振荡改变了各种参数,例如排出流量,进料和复原气室之间的液位差,等等。在实验中,发现在特定条件下,双圆柱壳以椭圆振动模式彼此同相和异相地振动。在理论上和实验上获得的不稳定性区域之间进行了比较,显示出很好的一致性。

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