Fluid-structure coupling simulation of explosive flow field in heterogeneous porous media based on fractal theory

被引:0
|
作者
Zhu, Qingyong [1 ]
Lu, Shun [1 ]
Lai, Dongheng [1 ]
Sun, Junjun [1 ]
机构
[1] School of Aeronautics and Astronautics, Sun Yat-sen University, Shenzhen,518107, China
来源
Fractals | 2022年 / 30卷 / 03期
关键词
Coupling simulation - Fluid-structure coupling - Fractal characteristics - Fractal theory - Heterogeneous porous media - Initial pressure - Porous medium - Strain values - Stress and strain - Stress values;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, through finite difference and finite element coupling algorithms with structured grid, the fluid-structure coupling problems of the pressure of the fluid as well as stress and strain of the heterogeneous porous medium under the initial pressure of MPa magnitude are calculated, respectively. The porous medium is a cavity cylinder with fractal characteristics. The parameters of porosity, elastic modulus and Poisson's ratio of porous media with different fractal dimensions (D = 2.3, 2.4 and 2.5) are obtained by theoretical calculation. Through theoretical derivation, the amplitude of WM function is expressed by the fractal parameter porosity, which can predict the uneven characteristics caused by the nonuniformity of pore size distribution after explosion. The results show that with the increase of fractal dimensions, the porosity increases, and both the elastic modulus and the Poisson's ratio decrease. The Poisson's ratio has a linear relationship with porosity, which is well consistent with the modified formula in the literature. Under the same initial pressure, the stress and strain values of the material without fractal characteristics are much larger than those of the material with fractal feature which has an obvious fluctuation by extracting the average values. It indicates that the fractal porous media with rough surface can effectively reduce the pressure wave peak at the wall surface, and reduce the size of the stress and strain concentrations to prevent the vibration of the cylinder. As expected, if the initial pressure increases with an equal fractal dimension, the stress and strain values of the fluid-structure coupling will increase too. When the initial pressure is equal, the peak value of pressure in wall decreases gradually with the increase of fractal dimension, and the stress and strain values also decrease. © 2022 World Scientific Publishing Company.
引用
收藏
相关论文
共 50 条
  • [31] Quantitative Characterization of Foam Transient Structure in Porous Media and Analysis of Its Flow Behavior Based on Fractal Theory
    Wang, Fei
    Du, Dongxing
    Bi, Haisheng
    Wang, Haixia
    Chen, Hailong
    Li, Haifeng
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2020, 59 (11) : 5158 - 5166
  • [32] Fluid-structure interaction simulation of aortic blood flow
    Crosetto, Paolo
    Reymond, Philippe
    Deparis, Simone
    Kontaxakis, Dimitrios
    Stergiopulos, Nikolaos
    Quarteroni, Alfio
    COMPUTERS & FLUIDS, 2011, 43 (01) : 46 - 57
  • [33] Coupling of WCSPH and RKPM for the simulation of incompressible fluid-structure interactions
    Peng, Yu-Xiang
    Zhang, A. -Man
    Wang, Shi-Ping
    JOURNAL OF FLUIDS AND STRUCTURES, 2021, 102
  • [34] Wind flow field and blade fluid-structure interaction analysis and simulation of wind turbine
    Li, Yafeng
    Xu, Yuxiu
    Shang, Zhiwu
    Li, Yafeng, 1600, Sila Science, University Mah Mekan Sok, No 24, Trabzon, Turkey (32): : 5327 - 5340
  • [35] Fluid-structure coupling analysis and simulation of a slender composite beam
    Belver, Ali Vasallo
    Mediavilla, Antonio Foces
    Ibán, Antolín Lorenzana
    Rossi, Riccardo
    Science and Engineering of Composite Materials, 2010, 17 (01): : 47 - 77
  • [36] Fluid-Structure Coupling Analysis and Simulation of a Slender Composite Beam
    Vasallo Belver, Ali
    Foces Mediavilla, Antonio
    Lorenzana Iban, Antolin
    Rossi, Riccardo
    SCIENCE AND ENGINEERING OF COMPOSITE MATERIALS, 2010, 17 (01) : 47 - 77
  • [37] Fluid-structure coupling analysis and simulation of a micromachined piezo microjet
    Liu, CG
    Cui, TH
    Zhou, ZY
    Lian, K
    Goettert, J
    BOSTON TRANSDUCERS'03: DIGEST OF TECHNICAL PAPERS, VOLS 1 AND 2, 2003, : 1271 - 1274
  • [38] Fluid-structure coupling analysis and simulation of a micromachined piezo microjet
    Liu, CG
    Cui, TH
    Zhou, ZY
    Lian, K
    Goettert, J
    SENSORS AND ACTUATORS A-PHYSICAL, 2004, 114 (2-3) : 460 - 465
  • [39] SIMULATION OF CHLORIDE ION TRANSPORT AND EROSION IN FRACTAL POROUS MEDIA UNDER MULTI-FIELD COUPLING
    Ji, Ming
    Liu, Guannan
    Yu, Boming
    Liu, Hu
    Cheng, Gaojie
    FRACTALS-COMPLEX GEOMETRY PATTERNS AND SCALING IN NATURE AND SOCIETY, 2023, 31 (09)
  • [40] Simulation Optimization of an Industrial Heavy-Duty Truck Based on Fluid-Structure Coupling
    Song, Xinyu
    Cao, Fang
    Rao, Weifeng
    Huang, Peiwen
    SUSTAINABILITY, 2022, 14 (21)