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1. 西南交通大学力学与工程学院
2. 中科华核电技术研究院有限公司核燃料研发设计中心
纸质出版日期:2013
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[1]李鹏,刘彤,周跃民,杨翊仁,鲁丽,郭严.落棒过程中的流体-结构横向耦合作用分析[J].核技术,2013,36(04):82-86.
LI Peng1 LIU Tong2 ZHOU Yuemin2 YANG Yiren1 LU Li1 GUO Yan2 1. Analysis on the fluid and structure interaction in the control rod drop process[J]. Nuclear techniques, 2013, 36(4): 040616
[1]李鹏,刘彤,周跃民,杨翊仁,鲁丽,郭严.落棒过程中的流体-结构横向耦合作用分析[J].核技术,2013,36(04):82-86. DOI: 10.11889/j.0253-3219.2013.hjs.36.040616.
LI Peng1 LIU Tong2 ZHOU Yuemin2 YANG Yiren1 LU Li1 GUO Yan2 1. Analysis on the fluid and structure interaction in the control rod drop process[J]. Nuclear techniques, 2013, 36(4): 040616 DOI: 10.11889/j.0253-3219.2013.hjs.36.040616.
控制棒组件在事故工况下的落棒时间是保证核电站安全运行的重要参数之一。控制棒组件下落过程中弹性结构会与流体发生耦合作用并引起结构的横向振动
较大的横向振动位移会导致控制棒组件与导向管之间发生相互碰撞并影响落棒过程的计算。为了研究落棒过程中的流致振动及摩擦作用
本文将对落棒过程中的流体-结构横向耦合作用进行分析。首先将控制棒与导向管视为弹性体建立了流体-结构横向耦合振动方程
然后将流体力按性质分别进行计算
并考虑了不同导向管间的相互影响。结果表明落棒过程中的摩擦力并不为零
而且地震工况下的摩擦力较大。本文对落棒过程中的流体-结构耦合作用的分析是合理的
可为现有落棒分析模型起到进一步完善作用。
Background: The drop time of control rod assembly is one of the most important parameters to ensure the safe operation of nuclear power plants.Due to the fluid-structure interaction(FSI)
the elastic structures
such as control rods and guide tubes
will vibrate in the dropping of control rod assembly.The impact and friction between the control rod and guide tubes caused by large transverse vibration will influence the drop time calculation.Purpose: To study in detail the flow-induced vibration and the friction
this paper focus on the fluid-structure interaction in the control rod drop process.Methods: Firstly
the vibration equations of control rod and guide tubes considering the fluid-structure interaction are established.Then the various fluid forces are analyzed in accordance with their qualities
and the influences of different guide tubes in a guide tubes array are also considered.Results: The friction between control rod and guide tube is not zero
and the friction under seismic condition is larger.Conclusions: The analysis on the fluid and structure interaction presented in this paper is reasonable and can improve current analytical models of control rod drop time calculation.
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