EXPLICIT CENTRAL FINITE DIFFERENCE METHODS FOR FLUID-STRUCTURE INTERACTION IN LIQUID-FILLED PIPE SYSTEMS

被引:0
|
作者
Khalighi, Faeze [1 ]
Keramat, Alireza [1 ]
Ahmadi, Ahmad [1 ]
机构
[1] Shahrood Univ, Dept Civil Engn, Shahrood, Iran
关键词
fluid-structure interaction; Lax-Friedrichs method; Nessyahu-Tadmor method; water hammer;
D O I
暂无
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
Fluid-structure interaction (FSI) occurs when the dynamic water hammer forces; cause vibrations in the pipe wall. FSI in pipe systems being Poisson and junction coupling occurring due to water hammer has been the center of attention in recent years. It causes fluctuations in pressure heads and vibrations in the pipe wall. The governing equations of this phenomenon include a system of first order hyperbolic partial differential equations (PDEs) in terms of hydraulic and structural quantities. In the present paper, a two-step variant of the Lax-Friedrichs (LXF) method, and a method based on the Nessyahu-Tadmor (NT) are used to simulate FSI in a reservoir-pipe-valve system. The computational results are compared with those of the Method of Characteristics (MOC), and also with the results of Godunov's scheme to verify the proposed numerical solution. The results reveal that the proposed LXF and NT schemes can predict discontinuous in fluid pressure with an acceptable order of accuracy. The independency of time and space steps allows for setting different spatial grid size with a unique time step, thus increasing the accuracy with respect to the conventional MOC.
引用
收藏
页码:3665 / 3676
页数:12
相关论文
共 50 条
  • [11] A Dynamic Analysis Method of Liquid-Filled Containers Considering the Fluid-Structure Interaction
    Fang, Xibing
    Bao, Xin
    Yue, Fengjiang
    Zhao, Qiyuan
    APPLIED SCIENCES-BASEL, 2024, 14 (07):
  • [12] Analysis of stress-strain responses of a liquid-filled pipe based on two-way fluid-structure interaction
    Liu S.
    Wu X.
    Peng X.
    Chen J.
    Wang C.
    Zhendong yu Chongji/Journal of Vibration and Shock, 2021, 40 (20): : 73 - 79
  • [13] Riccati transfer equations for fluid structure interaction in liquid-filled piping systems
    Li, Tang
    Rui, Xiaoting
    Zhang, Jianshu
    Zhang, Lina
    HELIYON, 2023, 9 (05)
  • [14] Dynamic response analysis of fluid-structure interaction in liquid-filled pipes of rocket feed system
    Wei, Xin
    Sun, Bing
    Yu, Zi-Wen
    Tang, Bo
    Zhang, Qing-Song
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2010, 25 (04): : 852 - 856
  • [15] IMPACT SIMULATION OF LIQUID-FILLED CONTAINERS INCLUDING FLUID-STRUCTURE INTERACTION .1. THEORY
    SAUVE, RG
    MORANDIN, GD
    NADEAU, E
    JOURNAL OF PRESSURE VESSEL TECHNOLOGY-TRANSACTIONS OF THE ASME, 1993, 115 (01): : 68 - 72
  • [16] Study on fluid-structure interaction in liquid oxygen feeding pipe systems using finite volume method
    XinWei Institute of Telecommunication SatelliteChina Academy of Space Technology BeijingChina BingSun School of AstronauticsBeihang University BeijingChina
    Acta Mechanica Sinica, 2011, 27 (05) : 706 - 712
  • [17] Study on fluid-structure interaction in liquid oxygen feeding pipe systems using finite volume method
    Wei, Xin
    Sun, Bing
    ACTA MECHANICA SINICA, 2011, 27 (05) : 706 - 712
  • [18] Study on fluid-structure interaction in liquid oxygen feeding pipe systems using finite volume method
    Xin Wei
    Bing Sun
    Acta Mechanica Sinica, 2011, 27 : 706 - 712
  • [19] Study on fluid-structure interaction in liquid oxygen feeding pipe systems using finite volume method
    Xin.Wei Institute of Telecommunication Satellite
    Acta Mechanica Sinica, 2011, (05) : 706 - 712
  • [20] Dynamic characteristics of fluid-filled pipe in liquid rocket engines considering fluid-structure interaction
    Xu, Yunfei
    Li, Feng
    Deng, Changhua
    Huang, Daoqiong
    Duan, Jie
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2017, 32 (06): : 1523 - 1529