首页> 外文会议>ASME Pressure Vessels and Piping conference >COMPUTATION OF A LOOSELY SUPPORTED TUBE UNDER CROSS-FLOW BY A HYBRID TIME-FREQUENCY METHOD
【24h】

COMPUTATION OF A LOOSELY SUPPORTED TUBE UNDER CROSS-FLOW BY A HYBRID TIME-FREQUENCY METHOD

机译:混合时频法计算横流下松散支撑的管

获取原文

摘要

Flow-induced vibrations of heat-exchanger tubes are particularly analyzed in the nuclear industry for safety reasons. Adequate designs, such as anti-vibration bars in PWR steam generators, prevent any excessive vibrations provided the tubes are well supported. Nevertheless degraded situations, where the tube/support gaps would widen, must also be considered. In such a case, the tubes become loosely supported and may exhibit vibro-impacting responses due to both turbulence and fluid-elastic coupling forces induced by the cross-flow. This paper deals with the predictive analysis of such a situation, based on a time-frequency hybrid method, given the necessity of taking into account both the strong impact nonlinearity due to the gap and the linearized fluid-elastic forces defined in the frequency domain. It comprises four parts. 1) The experimental campaign carried out at CEA Saclay on this issue, with a rigid square bundle surrounding a flexible cantilever tube under water cross-flow, is briefly recalled. 2) The hybrid time-frequency method is presented. The technique consists in an iterative solving, going back and forth from the frequency domain to the time domain, until convergence. Focus is made on the key points that are the algorithm convergence, and the non-causality of fluid-elastic forces stemming from the extrapolation of the frequency-limited experimental data. 3) The experimental and computational results are compared for a large range of flow velocities and three values of gaps, with a satisfying overall agreement. The comparison includes also previous results obtained from a simplified method based on the concept of "instantaneous" frequency. 4) Finally two a priori surprising behaviors are noted in the energy balances that have been computed: the sometimes dissipative aspect of turbulence forces, and the "mirror effect" between the work of turbulence and fluid-elastic forces.
机译:出于安全原因,在核工业中对热交换器管的流动引起的振动进行了专门分析。适当的设计,例如PWR蒸汽发生器中的防振杆,可以在管子得到良好支撑的情况下防止任何过度的振动。尽管如此,还必须考虑退化情况,其中管/支撑间隙会变宽。在这种情况下,由于湍流和由横流引起的流体弹性耦合力,管变得松散地支撑并且可能表现出振动冲击的响应。考虑到必须考虑由于间隙引起的强烈冲击非线性和在频域中定义的线性流体弹力,本文基于时频混合方法对这种情况进行了预测分析。它包括四个部分。 1)简要回顾了CEA Saclay在此问题上进行的实验活动,其中在水流作用下,一个刚性方管束围绕着一个柔性悬臂管。 2)提出了混合时频方法。该技术包括迭代求解,从频域到时域来回移动,直到收敛为止。重点关注算法收敛的关键点,以及由于频率受限的实验数据的外推而产生的流体弹性力的非因果关系。 3)比较了大范围的流速和三个间隙值的实验和计算结果,总体满意。该比较还包括从基于“瞬时”频率的概念的简化方法获得的先前结果。 4)最后,在已计算出的能量平衡中记录了两个先验的令人惊讶的行为:湍流力有时会耗散,湍流功与流体弹力之间会产生“镜面效应”。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号