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非规则环形圆柱水箱液体晃动动力特性试验 被引量:8

Experiment on Sloshing Dynamics of Irregular Annular Cylinder Water Tank
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摘要 冷却水箱是核电厂非能动安全壳冷却系统(PCS)的重要组成部分。水箱中液体晃动频率低,在长周期地震动作用下容易发生大幅晃动,因此在进行核岛结构动力分析时,必须要考虑水箱结构的影响,研究其动力特性。本文通过振动台试验测试了水箱中液体的动水压和波高衰减数据,计算求得液体的晃动频率和阻尼比,并将试验结果与数值分析、等效模型理论计算结果进行比较。研究表明:采用的数值分析和等效模型理论方法能够较好地模拟试验结果,可被用来分析PCS水箱液体晃动动力特性,通过对比验证了试验测试方法的准确性以及等效模型计算方法的实用性。 A cooling water tank is an important component of a passive containment cooling system (PCS) of an advanced nuclear power plant. Large-amplitude sloshing occurs easily under long-period earthquakes because of the low sloshing frequency of liquid. Therefore, the dynamics of a cooling water tank must be considered when the nuclear power plant is analyzed. The hydrodynamic pressure and attenuation data of wave height in shaking table test are measured and used to calculate the sloshing frequencies and damping ratio of liquid. Moreover, test results are compared with those from numerical analysis and theoretical calculation of equivalent model.. This study demonstrated that the numerical analysis and equivalent model could properly simulate the test results and analyze the sloshing dynamics of the liquid in a PCS water tank. It is proved that the proposed measuring method is accurate and the proposed equivalent model is reasonable.
出处 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2018年第1期187-192,共6页 Journal of Harbin Engineering University
基金 国家科技重大专项(2013ZX06002001-9) 国家自然科学基金项目(51421005)
关键词 核电厂 冷却水箱 动力特性 等效模型 晃动频率 阻尼比 非能动安全壳冷却系统 nuclear power plant water tank dynamic properties experiment sloshing frequency damping ratio
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  • 1曾国英.三维振动台的正弦扫频分析与模态分析[J].机电工程技术,2006,35(1):30-31. 被引量:2
  • 2Wei Wang Junfeng Li Tianshu Wang.Damping computation of liquid sloshing with small amplitude in rigid container using FEM[J].Acta Mechanica Sinica,2006,22(1):93-98. 被引量:11
  • 3Abramson H N. The dynamic behavior of liquids in moving containers, SP 106[R]. NASA,1966. 被引量:1
  • 4Miles J W. Surface wave damping in closed basins [J]. Proceedings of the Royal Society of London, Series A, Mathematical and Physical Sciences, 1967, 297(1451): 459 - 475. 被引量:1
  • 5Henderson D M, Miles J W. Surface-wave damping in a circular cylinder with a fixed contact line [J].J Fluid Mech, 1994, 275: 285-299. 被引量:1
  • 6Martel C, Nicolas J A, Vega J M. Surface-wave damping in a brimful circular cylinder [J] JFluid Mech, 1998, 360: 213 - 228. 被引量:1
  • 7Miles J W, Henderson D M. A note on interior vs. boundary layer damping of surface waves in a circular cylinder [J]. J Fluid Mech, 1998, 364:319 - 323. 被引量:1
  • 8Ibrahim R A, Pilipchuk V N, Ikeda T. Recent advances in liquid sloshing dynamics[J]. Applied Mechanics Reviews, 2001, 54(2): 133 - 199. 被引量:1
  • 9ANSYS中国公司.ANSYS非线性分析和动力学分析指南[M].北京:地震出版社,2000.. 被引量:1
  • 10利平.液压控制系统及设计[M].北京:化学工业出版社,2006. 被引量:1

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