Numerical simulation for explosion wave propagation of combustible mixture gas

被引:0
|
作者
王成
宁建国
马天宝
机构
[1] Beijing 100081
[2] China
[3] State Key Laboratory of Explosion Science and Technology Beijing Institute of Technology
基金
中国国家自然科学基金;
关键词
combustible mixture gas; explosion wave; interface treatment; combustion function mode;
D O I
暂无
中图分类号
O382 [爆震波的传播];
学科分类号
08 ; 0801 ;
摘要
A two-dimensional multi-material code was indigenously developed to investigate the effects of duct boundary conditions and ignition positions on the propagation law of explosion wave for hydrogen and methane-based combustible mixture gas. In the code,Young’s technique was employed to track the interface between the explosion products and air,and combustible function model was adopted to simulate ignition process. The code was employed to study explosion flow field inside and outside the duct and to obtain peak pressures in different boundary conditions and ignition positions. Numerical results suggest that during the propagation in a duct,for point initiation,the curvature of spherical wave front gradually decreases and evolves into plane wave. Due to the multiple reflections on the duct wall,multi-peak values appear on pressure-time curve,and peak pressure strongly relies on the duct boundary conditions and ignition position. When explosive wave reaches the exit of the duct,explosion products expand outward and forms shock wave in air. Multiple rarefaction waves also occur and propagate upstream along the duct to decrease the pressure in the duct. The results are in agreement with one-dimensional isentropic gas flow theory of the explosion products,and indicate that the ignition model and multi-material interface treatment method are feasible.
引用
收藏
页码:361 / 367
页数:7
相关论文
共 50 条
  • [31] Numerical Study on Propagation Lows of Gas Explosion in Roadway
    Cheng Guoqiang
    Zhu Xueliang
    [J]. RENEWABLE AND SUSTAINABLE ENERGY, PTS 1-7, 2012, 347-353 : 1727 - 1730
  • [32] SPECIFIC FEATURES OF DETONATION-WAVE PROPAGATION IN WATER-MECHANICAL FOAM FORMED BY COMBUSTIBLE GAS-MIXTURE
    KUDINOV, VM
    PALAMARCHUK, BI
    LEBED, SG
    BORISOV, AA
    GELFAND, BE
    [J]. DOKLADY AKADEMII NAUK SSSR, 1977, 234 (01): : 45 - 48
  • [33] SIMULATION-MODELS FOR CALCULATING EXPLOSION LIMITS OF COMBUSTIBLE GAS-MIXTURES
    RENNHACK, R
    THIELBOHM, A
    [J]. CHEMIE INGENIEUR TECHNIK, 1994, 66 (01) : 50 - 56
  • [34] Numerical Simulation of Shock Wave Propagation Law of Coal Dust Explosion in Complex Pipeline Networks
    Song, Baichao
    [J]. ACS OMEGA, 2024, 9 (17): : 18901 - 18908
  • [35] Influence of obstacles on shock wave propagation of gas explosion
    Jing, Guoxun
    Sun, Yue
    Ban, Tao
    Peng, Le
    He, Xiang
    [J]. Meitan Xuebao/Journal of the China Coal Society, 2021, 46 : 312 - 318
  • [36] Numerical simulation of gas explosion in a LNG terminal
    Li, W
    Wang, P
    [J]. PROGRESS IN SAFETY SCIENCE AND TECHNOLOGY, VOL III, PTS A AND B, 2002, 3 : 1077 - 1081
  • [37] Numerical simulation and study on the transmission law of flame and pressure wave of pipeline gas explosion
    Huang Zhian
    Liu Zhigang
    Chen Shengguo
    Zhang Yansong
    Zhang Yinghua
    [J]. SAFETY SCIENCE, 2012, 50 (04) : 806 - 810
  • [38] Numerical simulation on fracture propagation of methane in-situ explosion fracturing in shale gas reservoirs
    Wang, Jiwei
    Qu, Zhanqing
    Guo, Tiankui
    Chen, Ming
    Lü, Mingkun
    Wang, Xudong
    [J]. Zhongguo Shiyou Daxue Xuebao (Ziran Kexue Ban)/Journal of China University of Petroleum (Edition of Natural Science), 2023, 47 (01): : 106 - 115
  • [39] The Study on the Shock Wave Propagation Rule of a Gas Explosion in a Gas Compartment
    Lin, Shu-Chao
    Hou, Qing-Zhao
    Derlatka, Anna
    Gao, Shan
    Kang, Jin-Jun
    Dong, Xiao-Lei
    [J]. SHOCK AND VIBRATION, 2022, 2022
  • [40] Numerical simulation of changes in the composition of detonation products of a free volume of a combustible mixture
    Gubin, S. A.
    Shargatov, V. A.
    [J]. COMBUSTION EXPLOSION AND SHOCK WAVES, 2012, 48 (03) : 288 - 293