Wave Runup and Overtopping at Seawalls Built on Land and in Very Shallow Water

被引:53
|
作者
Mase, Hajime [1 ]
Tamada, Takashi [2 ]
Yasuda, Tomohiro [1 ]
Hedges, Terence S. [3 ]
Reis, Maria T. [4 ]
机构
[1] Kyoto Univ, Disaster Prevent Res Inst, Kyoto 6110011, Japan
[2] IDEA Consultants Inc, Yokohama, Kanagawa 2240025, Japan
[3] Univ Liverpool, Sch Engn, Liverpool L69 3GH, Merseyside, England
[4] Harbours & Maritime Struct Div, Natl Civil Engn Lab, P-1700066 Lisbon, Portugal
关键词
Wave runup; Wave overtopping; Sea walls; Slopes; Shallow water; Seawalls near shoreline; Imaginary seawall slope;
D O I
10.1061/(ASCE)WW.1943-5460.0000199
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The current study proposes prediction formulas both for random wave runup and mean overtopping discharge at seawalls constructed on land or in very shallow water. Although several existing formulas for runup and overtopping use the incident wave characteristics at the toes of seawalls, this study adopts the equivalent deepwater wave characteristics and an imaginary seawall slope for easy application of the formulas, especially in relation to seawalls constructed on land. The prediction formulas for overtopping use the predicted runup values. For the wave runup prediction formulas two sets of experimental data are used; i.e., a new set of data and the data obtained in a previous study. For the wave overtopping prediction formulas, the experimental data measured in a previous study are used. Comparisons with measurements show good performances of both new prediction methods. (C) 2013 American Society of Civil Engineers.
引用
收藏
页码:346 / 357
页数:12
相关论文
共 50 条
  • [31] Development of Wave Overtopping Formulas for Inclined Seawalls using GMDH Algorithm
    Lee, Seok Bong
    Suh, Kyung-Duck
    KSCE JOURNAL OF CIVIL ENGINEERING, 2019, 23 (05) : 1899 - 1910
  • [32] Experimental Investigation of Wave Propagation and Overtopping over Seawalls on a Reef Flat
    Gao, Yangyang
    Ren, Linguang
    Wang, Lizhong
    JOURNAL OF MARINE SCIENCE AND ENGINEERING, 2023, 11 (04)
  • [33] Improved prediction of wave overtopping rates at vertical seawalls with recurve retrofitting
    Dong, S.
    Salauddin, M.
    Abolfathi, S.
    Pearson, J. M.
    OCEAN ENGINEERING, 2024, 302
  • [34] Effect of a shallow water obstruction on long wave runup and overland flow velocity
    Lynett, Patrick J.
    JOURNAL OF WATERWAY PORT COASTAL AND OCEAN ENGINEERING, 2007, 133 (06) : 455 - 462
  • [35] Numerical investigation of the effects of rigid emergent vegetation on wave runup and overtopping
    Zhao, Chuyan
    Tang, Jun
    Shen, Yongming
    OCEAN ENGINEERING, 2022, 264
  • [36] Wave overtopping of smooth impermeable seawalls under unidirectional bimodal sea conditions
    Orimoloye, Stephen
    Horrillo-Caraballo, Jose
    Karunarathna, Harshinie
    Reeve, Dominic E.
    COASTAL ENGINEERING, 2021, 165
  • [37] Extended shallow water prediction of overtopping
    Shiach, J
    Mincham, CG
    Ingram, DM
    Causon, DM
    Bruce, T
    Pearson, J
    Allsop, NWH
    COASTAL ENGINEERING 2004, VOLS 1-4, 2005, : 4443 - 4455
  • [38] RUNUP AND TRANSFORMATION OF TSUNAMIS IN SHALLOW WATER.
    Kaistrenko, V.M.
    Pelinovskii, E.N.
    Simonov, K.V.
    Soviet meteorology and hydrology, 1985, (10): : 56 - 52
  • [39] Wave overtopping at near-vertical seawalls: Influence of foreshore evolution during storms
    Briganti, Riccardo
    Musumeci, Rosaria Ester
    van der Meer, Jentsje
    Romano, Alessandro
    Stancanelli, Laura Maria
    Kudella, Matthias
    Akbar, Rizki
    Mukhdiar, Ryard
    Altomare, Corrado
    Suzuki, Tomohiro
    De Girolamo, Paolo
    Besio, Giovanni
    Dodd, Nicholas
    Zhu, Fangfang
    Schimmels, Stefan
    OCEAN ENGINEERING, 2022, 261
  • [40] Random wave runup and overtopping a steep sea wall: Shallow-water and Boussinesq modelling with generalised breaking and wall impact algorithms validated against laboratory and field measurements
    McCabe, M. V.
    Stansby, P. K.
    Apsley, D. D.
    COASTAL ENGINEERING, 2013, 74 : 33 - 49