Hydrodynamic performance of vertical porous structures under regular waves

被引:0
|
作者
A. S. Koraim
O. S. Rageh
机构
[1] Zagazig University,Water and Water Structure Eng. Dept., Faculty of Eng.
[2] El-Mansoura University,Irrigation and Hydraulics Dept., Faculty of Eng.
来源
China Ocean Engineering | 2013年 / 27卷
关键词
water waves; porous breakwaters; wave attenuation; wave transmission; wave reflection; wave dissipation;
D O I
暂无
中图分类号
学科分类号
摘要
The hydrodynamic efficiency of the vertical porous structures is investigated under regular waves by use of physical models. The hydrodynamic efficiency of the breakwater is presented in terms of the wave transmission (kt), reflection (kr) and energy dissipation (kd) coefficients. Different wave and structural parameters affecting the breakwater efficiency are tested. It is found that, the transmission coefficient (kt) decreases with the increase of the relative water depth (h/L), the wave steepness (Hi/L), the relative breakwater widths (B/L, B/h), the relative breakwater height (D/h), and the breakwater porosity (n). The reflection coefficient (kr) takes the opposite trend of kt when D/h=1.25 and it decreases with the increasing h/L, Hi/L and B/L when D/h≤1.0. The dissipation coefficient (kd) increases with the increasing h/L, Hi/L and B/L when D/h≤1.0 and it decreases when D/h=1.25. In which, it is possible to achieve values of kt smaller than 0.3, kr larger than 0.5, and kd larger than 0.6 when D/h=1.25, B/h=0.6, h/L≥0.22, B/L≥0.13, and Hi/L ≥0.04. Empirical equations are developed for the estimation of the transmission and reflection coefficients. The results of these equations are compared with other experimental and theoretical results and a reasonable agreement is obtained.
引用
收藏
页码:451 / 468
页数:17
相关论文
共 50 条
  • [31] Evaluation of the Hydraulic Performance of a Rear-Parapet Vertical Breakwater under Regular Waves through Hydraulic Experiments
    Lee, Byeong Wook
    Park, Woo-Sun
    WATER, 2020, 12 (09)
  • [32] Hydrodynamic Interaction of Floating Structure in Regular Waves
    Abyn, Hassan
    Maimun, Adi
    Jaswar
    Islam, M. Rafiqul
    Magee, Allan
    Bodaghi, Behnam
    Pauzi, Mohamad
    Siow, C. L.
    Tofa, M. Mobassher
    JURNAL TEKNOLOGI, 2014, 66 (02):
  • [33] Hydrodynamic loading on elliptic cylinders in regular waves
    Rahman, M.
    Mousavizadegan, S. H.
    ADVANCES IN FLUID MECHANICS VIII, 2010, : 371 - 382
  • [34] Hydrodynamic Characteristics of Idealized Flexible Vegetation under Regular Waves: Experimental Investigations and Analysis
    Wang, Haojian
    Yin, Zegao
    Luan, Yingni
    Wang, Yanxu
    Liu, Dechun
    JOURNAL OF COASTAL RESEARCH, 2022, 38 (03) : 673 - 680
  • [35] Experimental and numerical investigation on hydrodynamic response of buoy form spar under regular waves
    Nallayarasu, S.
    Kumar, N. Senthil
    SHIPS AND OFFSHORE STRUCTURES, 2017, 12 (01) : 19 - 31
  • [36] Vertical oil dispersion profile under non-breaking regular waves
    Parsa, Reza
    Kolahdoozan, Morteza
    Moghaddam, Mohammad Reza Alavi
    ENVIRONMENTAL FLUID MECHANICS, 2016, 16 (04) : 833 - 844
  • [37] Vertical oil dispersion profile under non-breaking regular waves
    Reza Parsa
    Morteza Kolahdoozan
    Mohammad Reza Alavi Moghaddam
    Environmental Fluid Mechanics, 2016, 16 : 833 - 844
  • [38] Hydrodynamic performance of the floating fish cage under extreme waves
    Bai, Xiaodong
    Yang, Can
    Luo, Hanbing
    OCEAN ENGINEERING, 2021, 231
  • [39] Experimental study on vertical dynamic response of submarine cable under regular waves
    Huang, Huiming
    Huang, Xiantao
    Lan, Yinyu
    Zhang, Yu
    Harbin Gongcheng Daxue Xuebao/Journal of Harbin Engineering University, 2024, 45 (10): : 1913 - 1921
  • [40] Numerical simulation of negative buoyant jet with vertical round under the regular waves
    Yin Z.
    Wang S.
    Sun C.
    1600, International Research and Training Center on Erosion and Sedimentation and China Water and Power Press (32): : 780 - 790