2-D NUMERICAL SIMULATION OF CRUSH BEDROCK RIVER

被引:0
|
作者
Yin Ze-gao [1 ]
Zhang Tu-qiao [1 ]
Sun Dong-po [2 ]
Li Guo-qing [2 ]
机构
[1] Zhejiang Univ, Dept Civil Engn, Hangzhou 310027, Peoples R China
[2] N China Inst Water Conservancy & Hydroelect Power, Dept Water Conservancy Engn, Zhengzhou 450008, Peoples R China
基金
中国国家自然科学基金;
关键词
numerical simulation; 2-D Horizontal Flow Mathematical Model(HFMM); Erosion-Resisting Coefficient (ERC); bed deformation; crush bedrock river;
D O I
暂无
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In this paper, the erosion-resisting coefficient was introduced to compute bed deformation in a crush bedrock river. In the case of crush bedrock, there has been no proper control equation to describe bed stability, which leads to difficulty in calculation of the bed deformation with conventional methods. The data from field survey were used to give the erosion-resisting capability with an appropriate coefficient. After the determination of longitudinal distribution expressed by polynomial regression and transversal distribution expressed by normal distribution function, the plane distribution of erosion-resisting coefficient in a crush bedrock river was obtained. With the computational results from a 2-D horizontal flow mathematical model, the erosion-resisting coefficient and controlling condition of local stability were employed to compute the values of bed deformation when riverbed is. stable. The above method was applied in a case study, and the computational results of flow and bed deformations are in good agreement with physical model test data.
引用
收藏
页码:449 / 454
页数:6
相关论文
共 50 条
  • [41] Numerical Simulation of Melt-Wave Erosion in 2-D Solid Armature
    Sun, Jian
    Cheng, Junsheng
    Wang, Qiuliang
    Xiong, Ling
    Cong, Yuantao
    Wang, Yichen
    [J]. IEEE TRANSACTIONS ON PLASMA SCIENCE, 2022, 50 (04) : 1032 - 1039
  • [42] A 2-D numerical simulation of thermal plume dispersion in datang power plant
    Tang, Junjian
    Wen, ShengHui
    [J]. ASIAN AND PACIFIC COASTS 2007, 2007, : 795 - 798
  • [43] Numerical simulation of 2-D shallow-water flow on irregular grids
    Chen, Zu-Hua
    Lai, Guan-Wen
    Wang, Guang-Qian
    Wang, Zhi-Shi
    [J]. Shuikexue Jinzhan/Advances in Water Science, 2002, 13 (06): : 657 - 664
  • [44] Numerical simulation of a 2-D phase change process involving natural convection
    Kahraman, R
    Zughbi, HD
    Al-Nassar, YN
    Hastaoglu, MA
    [J]. ENERGY AND THE ENVIRONMENT, 1999, : 407 - 410
  • [45] Numerical Simulation of Partial Cavitating Flow of 2-D Hydrofoil in Viscous Flow
    He, Xiaohui
    Gao, Lei
    Liu, Hongbing
    Li, Zhigang
    [J]. GREEN POWER, MATERIALS AND MANUFACTURING TECHNOLOGY AND APPLICATIONS II, 2012, 214 : 102 - 107
  • [46] Numerical Simulation for Pile Group in Water Flume of 2-D Tidal Flow
    Wang, Jiangnan
    Tang, Shifang
    Ma, Chun
    [J]. MATERIALS, TRANSPORTATION AND ENVIRONMENTAL ENGINEERING, PTS 1 AND 2, 2013, 779-780 : 1171 - +
  • [47] 2-D numerical simulation of acoustic wave phase conjugation in active medium
    Voinovich, P
    Merlen, A
    Preobrazhensky, V
    Pernod, P
    [J]. 2004 IEEE Ultrasonics Symposium, Vols 1-3, 2004, : 1872 - 1875
  • [48] A 2-D numerical simulation of the circulation in the envelope of a contact binary system, an update
    Zhou, DQ
    Leung, KC
    [J]. THIRD PACIFIC RIM CONFERENCE ON RECENT DEVELOPMENT ON BINARY STAR RESEARCH, 1997, 130 : 95 - 101
  • [49] Study on 2-D numerical simulation coupling with breach evolution in flood propagation
    Ma, Liping
    Hou, Jingming
    Zhang, Dawei
    Xia, Junqiang
    Li, Bingyao
    Ning, Lizhong
    [J]. Shuili Xuebao/Journal of Hydraulic Engineering, 2019, 50 (10): : 1253 - 1267
  • [50] Numerical Simulation of Slinger Combustor Using 2-D Axisymmetric Computational Model
    Lee, Semin
    Park, Soo Hyung
    Lee, Donghun
    [J]. 10TH ASIAN INTERNATIONAL CONFERENCE ON FLUID MACHINERY, 2010, 1225 : 941 - +