Interaction of ocean wave with a harbor covered by an ice sheet

被引:9
作者
Li, Z. F. [1 ]
Shi, Y. Y. [1 ]
Wu, G. X. [2 ]
机构
[1] Jiangsu Univ Sci & Technol, Sch Naval Architecture & Ocean Engn, Zhenjiang 212003, Jiangsu, Peoples R China
[2] UCL, Dept Mech Engn, Torrington Pl, London WC1E 7JE, England
基金
中国国家自然科学基金;
关键词
SURFACE-WAVES; SEA-ICE; REFLECTION; TRANSMISSION; DIFFRACTION; OSCILLATIONS; FLOE;
D O I
10.1063/5.0051376
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
A domain decomposition method is developed to solve the problem of wave motion inside a harbor with its surface covered by an ice sheet. The shape of the horizontal plane of the harbor can be arbitrary while the sidewall is vertical. The entrance of the harbor is open to the sea with a free surface. The linearized velocity potential theory is adopted for fluid flow, and the thin elastic plate model is applied for the ice sheet. The domain is divided into two subdomains. Inside the harbor, the velocity potential is expanded into a series of eigenfunctions in the vertical direction. The orthogonal inner product is adopted to impose the impermeable condition on the harbor wall, together with the edge conditions on the intersection of the harbor wall and the ice sheet. In the open sea outside of the harbor, through the modified Green function, the velocity potential is written in terms of an integral equation over the surface of the harbor entrance, or the interface between the two subdomains. On the interface, the orthogonal inner product is also applied to impose the continuity conditions of velocity and pressure as well as the free ice edge conditions. Computations are first carried out for a rectangular harbor without the ice sheet to verify the methodology, and then extensive results and discussions are provided for a harbor of a more general shape covered by an ice sheet with different thicknesses and under different incident wave angles.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Scattering of Water Wave by Undulating Porous Bed Topography in an Ice-Covered Ocean
    Paul, Sandip
    De, Soumen
    APPLIED MATHEMATICS, 2015, 146 : 257 - 269
  • [2] Modelling ocean waves in ice-covered seas
    Shen, Hayley H.
    APPLIED OCEAN RESEARCH, 2019, 83 : 30 - 36
  • [3] Wave Diffraction on an Ice Sheet in the Presence of Shear Current
    Tkacheva, L. A.
    FLUID DYNAMICS, 2024, 59 (03) : 546 - 560
  • [4] Study on Retrievals of Ocean Wave Spectrum by Spaceborne SAR in Ice-Covered Areas
    Huang, Bingqing
    Li, Xiaoming
    REMOTE SENSING, 2022, 14 (23)
  • [5] Investigation of water wave scattering by an elastic sea-bed of varying depth in two superposed fluids covered by an ice-sheet
    Chanda, Ayan
    Bora, Swaroop Nandan
    OCEAN ENGINEERING, 2021, 221
  • [6] Wave motions due to a point source pulsating and advancing at forward speed parallel to a semi-infinite ice sheet
    Li, Z. F.
    Wu, G. X.
    Shi, Y. Y.
    PHYSICAL REVIEW FLUIDS, 2024, 9 (01)
  • [7] Wave excited motion of a body floating on water confined between a semi-infinite ice sheet and a side wall
    Wang, Chunhui
    Xiao, Runshan
    Wang, Jiaan
    Wang, Chao
    Yu, Fajun
    PHYSICS OF FLUIDS, 2024, 36 (09)
  • [8] Theoretical method for calculating the sea ice elastic modulus in an ocean wave model
    Zhang, Changpeng
    Zhao, Xin
    APPLIED OCEAN RESEARCH, 2021, 114
  • [9] Interaction of wave with a body submerged below an ice sheet with multiple arbitrarily spaced cracks
    Li, Z. F.
    Wu, G. X.
    Ji, C. Y.
    PHYSICS OF FLUIDS, 2018, 30 (05)
  • [10] Fluid-structure interaction of a large ice sheet in waves
    Huang, Luofeng
    Ren, Kang
    Li, Minghao
    Tukovic, Zeljko
    Cardiff, Philip
    Thomas, Giles
    OCEAN ENGINEERING, 2019, 182 : 102 - 111