Effects of westward shoaling pycnocline on characteristics and energetics of internal solitary wave in the Luzon Strait by numerical simulations

被引:0
|
作者
Haibin Lü
Yujun Liu
Xiaokang Chen
Guozhen Zha
Shuqun Cai
机构
[1] Jiangsu Ocean University,Jiangsu Key Laboratory of Marine Bioresources and Environment/Jiangsu Key Laboratory of Marine Biotechnology
[2] Chinese Academy of Sciences,State Key Laboratory of Tropical Oceanography, South China Sea Institute of Oceanology
[3] Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou),Innovation Academy of South China Sea Ecology and Environmental Engineering
[4] Jiangsu Institute of Marine Resources Development,undefined
[5] University of Chinese Academy of Sciences,undefined
[6] Chinese Academy of Sciences,undefined
来源
Acta Oceanologica Sinica | 2021年 / 40卷
关键词
internal solitary waves; baroclinic energy; South China Sea; pycnocline;
D O I
暂无
中图分类号
学科分类号
摘要
An internal gravity wave model was employed to simulate the generation of internal solitary waves (ISWs) over a sill by tidal flows. A westward shoaling pycnocline parameterization scheme derived from a three-parameter model was adopted, and then 14 numerical experiments were designed to investigate the influence of the pycnocline thickness, density difference across the pycnocline, westward shoaling isopycnal slope angle and pycnocline depth on the ISWs. When the pycnocline thickness on both sides of the sill increases, the total barotropic kinetic energy, total baroclinic energy and ratio of baroclinic kinetic energy (KE) to available potential energy (APE) decrease, whilst the depth of isopycnal undergoing maximum displacement and ratio of baroclinic energy to barotropic energy increase. When the density difference on both sides of the sill decreases synchronously, the total barotropic kinetic energy, ratio of baroclinic energy to barotropic energy and total baroclinic energy decrease, whilst the depth of isopycnal undergoing maximum displacement increases. When the westward shoaling isopycnal slope angle increases, the total baroclinic energy increases whilst the depth of turning point almost remains unchanged. When the depth of westward shoaling pycnocline on both sides of the sill reduces, the ratio of baroclinic energy to barotropic energy and total baroclinic energy decrease, whilst the total barotropic kinetic energy and ratio of KE to APE increase. When one of the above four different influencing factors was increased by 10% while the other factors keep unchanged, the amplitude of the leading soliton in ISW Packet A was decreased by 2.80%, 7.47%, 3.21% and 6.42% respectively. The density difference across the pycnocline and the pycnocline depth are the two most important factors in affecting the characteristics and energetics of ISWs.
引用
收藏
页码:20 / 29
页数:9
相关论文
共 37 条
  • [31] Numerical investigation of load characteristics by internal solitary wave on submarines in fluids with continuous density change
    Qu, Zhiyuan
    Lai, Anqing
    Lin, Binbin
    REVISTA INTERNACIONAL DE METODOS NUMERICOS PARA CALCULO Y DISENO EN INGENIERIA, 2022, 38 (03):
  • [32] Generation characteristics of internal solitary waves in the Northern Andaman sea based on MODIS observations and numerical simulations
    Huang, Songsong
    Wang, Jing
    Li, Zhixin
    Yang, Zhan
    Lu, Yage
    FRONTIERS IN MARINE SCIENCE, 2024, 11
  • [33] Numerical study on load characteristics by internal solitary wave on cylinder sections at different depth and its parameterization
    Lin, Zhenhua
    Zan, Xiaoxiao
    OCEAN ENGINEERING, 2021, 219
  • [34] Earth rotation effects on the internal wave field in a stratified small lake: Numerical simulations
    Forcat, Francesc
    Roget, Elena
    Figueroa, Manuel
    Sanchez, Xavier
    LIMNETICA, 2011, 30 (01): : 27 - 42
  • [35] Numerical simulations and experimental visualizations of the vortex characteristics for a solitary wave interacting with a bottom-mounted vertical plate
    Chang, Chih-Hua
    Lin, Chang
    Wang, Keh-Han
    Jaf, Jassim M.
    JOURNAL OF HYDRO-ENVIRONMENT RESEARCH, 2018, 19 : 88 - 102
  • [36] Numerical investigation on motion response and load characteristics of interaction between internal solitary wave and multi-unmanned underwater vehicles
    Yu, Zongbing
    Chen, Xin
    Zou, Li
    Wang, Zhen
    Jin, Guoqing
    Zhao, Tao
    OCEAN ENGINEERING, 2025, 320
  • [37] Numerical simulations for predicting wave force effects on dynamic and motion characteristics of blended winged-body underwater glider
    Du, Xiaoxu
    Ali, Naveed
    Zhang, Lianying
    OCEAN ENGINEERING, 2021, 235