Wave attenuation due to stratified porous structure in the presence of stepped seabed

被引:0
作者
Varghese A. [1 ]
Krishna K.R.A. [1 ]
Karmakar D. [1 ]
机构
[1] Department of Water Resources and Ocean Engineering, National Institute of Technology Karnataka, Surathkal, Mangalore
关键词
Eigenfunction expansion method; Stepped seabed; Stratified porous structure; Wave energy dissipation; Wave force; Wave reflection;
D O I
10.1007/s40868-024-00141-0
中图分类号
学科分类号
摘要
The wave transformation due to the stratified porous structures in the presence of stepped seabed at leeward side is analysed based on the small amplitude wave theory. The study is performed to analyse the effectiveness of both horizontal and vertical stratified porous structure for the wave attenuation in the nearshore regions using orthogonal mode-coupling relation and eigenfunction expansion method. The hydrodynamic coefficients such as wave reflection, transmission, dissipation, wave force acting and surface elevation are investigated for both horizontally and vertically stratified porous structures. The effect of change in the structural properties such as varying porosity, friction factor, structural width, angle of incidence and length between the porous structure and stepped seabed are examined. Thereafter, the comparative study is performed for both horizontally and vertically stratified porous structure in the presence of stepped seabed and the numerical results are validated with the results available in the literature. The present study illustrates that with the increase in step height, the wave damping efficiency is enhanced. In addition, the wave energy dissipation is observed more for horizontally stratified structure in the case of longer waves whereas vertically stratified structure is effective in dampening of shorter waves. Further, the wave reflection and transmission for vertically stratified structure is found to be more for same length between structure and stepped seabed. The stepped seabed in leeward side in combination with vertical and horizontal stratified porous structure is intended to be an effective solution for protection of coastal facility. © The Author(s), under exclusive licence to Sociedade Brasileira de Engenharia Naval 2024.
引用
收藏
页码:132 / 154
页数:22
相关论文
共 31 条
  • [1] Madsen P.A., Wave reflection from a vertical permeable wave absorber, Coast. Eng, 7, 4, pp. 381-396, (1983)
  • [2] Sollitt C.K., Cross R.H., Wave transmission through permeable breakwaters, In Coastal Engineering, pp. 1827-1846, (1972)
  • [3] Sulisz W., Wave reflection and transmission at permeable breakwaters of arbitrary cross-section, Coast. Eng, 9, 4, pp. 371-386, (1985)
  • [4] Das S., Bora S.N., Reflection of oblique ocean water waves by a vertical porous structure placed on a multi-step impermeable bottom, Appl. Ocean Res, 47, pp. 373-385, (2014)
  • [5] Mallayachari V., Sundar V., Reflection characteristics of permeable seawalls, Coast. Eng, 23, 1-2, pp. 135-150, (1994)
  • [6] Pudjaprasetya S.R., Magdalena I., Wave energy dissipation over porous media, Appl. Math. Sci, 7, 59, pp. 2925-2937, (2013)
  • [7] Venkateswarlu V., Karmakar D., Wave transformation due to barrier-rock porous structure placed on step-bottom, Ships Offshore Struct, 15, 8, pp. 895-909, (2019)
  • [8] Krishna K.R.A., Karaseeri A.G., Karmakar D., Oblique wave propagation through composite permeable porous structures, Marine Syst. Ocean Technol, 17, pp. 164-187, (2023)
  • [9] Krishna K.R.A., Abdulla K., Karmakar D., Dissipation of gravity waves due to submerged porous plate coupled with porous structures, J. Offshore Mech. Arct. Eng, 145, 1, (2023)
  • [10] Krishna K.R.A., Abdulla K., Karmakar D., Wave energy damping due to coupled porous structure and submerged porous plate, J. Mar. Sci. Appl, 22, pp. 456-474, (2023)