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FLOW-INDUCED VIBRATION SUPPRESSION OF JET PUMP IN BOILING WATER REACTOR BY SLIP JOINT EXTENSION

机译:滑动接头扩展在沸腾水反应器中对射流泵的流动引起的振动抑制

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Jet pumps are key components to feed cooling water into reactor core in boiling water reactor. Inside condition of jet pumps is high flow condition. Therefore, jet pumps have risk of damages by flow-induced vibration, especially, the leakage-flow-induced vibration at the slip joint between the inlet mixer and the diffuser in extended power uprating condition with increasing core flow rate or particular operating condition such as single loop operation that increases differential pressure of the slip joint. To mitigate the risk of the leakage-flow-induced vibration, slip joint extension which can be installed on the top of diffuser was developed (See Figure 1). Self-excited vibration is treated as negative damping i.e. unstable state. It is well-known that the leakage flow through divergent gap flow passage causes the negative damping. However, the configuration of the gap flow passage of the slip joint with slip joint extension is complicated flow passage which consists of convergent, divergent and parallel flow passage region. To addition to this, the leakage flow direction in normal or power uprating condition is opposite to in abnormal operating condition such as single loop operating. Therefore, it is necessary to identify the optimum configuration of gap flow passage of the slip joint extension to suppress leakage-flow-induced vibration for various operating conditions. To achieve this goal, the gap flow passage of the slip joint extension was determined using transfer matrix method based on the leakage-flow-induced vibration theory. The effect and characteristic of vibration suppression for the slip joint extension was confirmed by fundamental tests that simulated the slip joint configuration.
机译:喷射泵是将冷却水供入沸水反应堆的反应堆堆芯的关键组件。喷射泵的内部条件是高流量条件。因此,喷射泵具有因流动引起的振动而损坏的风险,特别是在延长的功率提升条件下,随着堆芯流速的增加或特定的工况,例如在入口混合器和扩散器之间的滑动接头处的泄漏流引起的振动的风险。单回路操作,增加了滑接头的压差。为了减轻泄漏流引起的振动的风险,开发了可安装在扩散器顶部的滑动接头延长件(见图1)。自激振动被视为负阻尼,即不稳定状态。众所周知,通过发散间隙流动通道的泄漏流会引起负阻尼。然而,具有滑动接头延伸的滑动接头的间隙流动通道的构造是复杂的流动通道,其由会聚,发散和平行的流动通道区域组成。除此之外,在正常或功率提升条件下的泄漏流向与在诸如单回路操作之类的异常操作条件下相反。因此,有必要确定滑动接头延伸部的间隙流动通道的最佳配置,以抑制在各种工况下泄漏引起的振动。为了实现这一目标,基于泄漏流引起的振动理论,采用传递矩阵法确定了滑移接缝延伸部的间隙流道。通过模拟滑动接头配置的基础测试,证实了滑动接头延伸的减振效果和特性。

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