Cohesive river bank erosion mechanism under wave-current interaction: A flume study

被引:0
|
作者
Vikas Kumar Das
Sayahnya Roy
Krishnendu Barman
Susanta Chaudhuri
Koustuv Debnath
机构
[1] Indian Institute of Engineering Science and Technology (IIEST),Fluid Mechanics and Hydraulic Laboratory (FMHL), Department of Aerospace Engineering and Applied Mechanics
[2] Vidyasagar University,Department of Applied Mathematics with Oceanology and Computer Programming
[3] Jadavpur University,Department of Geological Sciences
来源
关键词
Wave-current; cohesive-sediment; bank erosion; quadrant decomposition; spectral analysis;
D O I
暂无
中图分类号
学科分类号
摘要
The effect of hydrodynamic forces due to combined action of surface waves and current on the riverbank is critical to understand sediment entrainment, transport and bank line retreatment process. In understanding the temporal effect of turbulent structures under induced wave-current flow, a series of laboratory experiments were carried out. Micro-Acoustic Doppler Velocimeter (ADV) and Ultrasonic Ranging System (URS) were used simultaneously for the measurement of velocity fluctuations and bank undercut depth increment. Modulation of the turbulent flow characteristics and the benefaction of turbulent bursting structures at the initiation of erosion process and before the failure of the cohesive bank due to undercut progression are discussed. The results show that velocity and Reynolds shear stress have direct dependence on the size and rate of the entrainment of cohesive aggregates from bank face. The effect of wave-current motion leads to an increase in shear stress at the lateral bank giving rise to erosion and transportation of sediment particles/aggregates. Quadrant analysis of the random velocity fluctuation under wave-current flow at the initiation of erosion process shows strong presence of ejection and sweep events. Findings from the present study may provide a better understanding on the design of cohesive bank erosion control measures.
引用
收藏
相关论文
共 50 条
  • [31] The wave-current interaction in the coastal area
    Komijani, Homayoon
    Monbaliu, Jaak
    JOURNAL OF MARINE RESEARCH, 2019, 77 (5-6) : 375 - 405
  • [32] Effects of wave-current interaction on the Pearl River Estuary during Typhoon Hato
    Chen, Yuren
    Chen, Lianghong
    Zhang, Heng
    Gong, Wenping
    ESTUARINE COASTAL AND SHELF SCIENCE, 2019, 228
  • [33] WAVE-CURRENT INTERACTION AND SEDIMENT TRANSPORT
    VANDEGRAAFF, J
    SEDIMENT TRANSPORT MODELING: PROCEEDINGS OF AN INTERNATIONAL SYMPOSIUM, 1989, : 242 - 247
  • [34] Some observations of wave-current interaction
    Wolf, J
    Prandle, D
    COASTAL ENGINEERING, 1999, 37 (3-4) : 471 - 485
  • [35] Stability of low rubble-mound under wave-current interaction
    Tega, Y
    Kobayashi, N
    COASTAL STRUCTURES '99, VOLUMES 1 & 2, 2000, : 713 - 720
  • [36] WAVE-CURRENT INTERACTION STUDY ALONG GULF OF KHMBHAT, INDIA
    Balaji, R.
    SatheeshKumar, J.
    PROCEEDINGS OF THE 36TH IAHR WORLD CONGRESS: DELTAS OF THE FUTURE AND WHAT HAPPENS UPSTREAM, 2015, : 3288 - 3294
  • [37] Research on measurement of bed shear stress under wave-current interaction
    Xu Hua
    Xia Yun-feng
    Ma Bing-he
    Hao Si-yu
    Zhang Shi-zhao
    Du De-jun
    CHINA OCEAN ENGINEERING, 2015, 29 (04) : 589 - 598
  • [38] Research on measurement of bed shear stress under wave-current interaction
    Hua Xu
    Yun-feng Xia
    Bing-he Ma
    Si-yu Hao
    Shi-zhao Zhang
    De-jun Du
    China Ocean Engineering, 2015, 29 : 589 - 598
  • [39] Research on Measurement of Bed Shear Stress Under Wave-Current Interaction
    徐华
    夏云峰
    马炳和
    郝思禹
    张世钊
    杜德军
    China Ocean Engineering, 2015, 29 (04) : 589 - 598
  • [40] WAVE-CURRENT INTERACTIONS NEAR A RIVER MOUTH
    Lee, Kwang-Ho
    Mizutani, Norimi
    PROCEEDINGS OF THE 5TH INTERNATIONAL CONFERENCE ON ASIAN AND PACIFIC COASTS, VOL 3, 2010, : 73 - 80