Generation and Evolution of Internal Solitary Waves in a Coastal Plain Estuary

被引:2
|
作者
Li, Renjian [1 ]
Li, Ming [1 ]
机构
[1] Univ Maryland, Ctr Environm Sci, Horn Point Lab, Cambridge, MD 21613 USA
关键词
Estuaries; Internal waves; Secondary circulation; Nonhydrostatic models; LATERAL CIRCULATION; NONLINEAR MODEL; TIDE TRANSFORMATION; LARGE SILL; LEE WAVES; TURBULENCE; BREAKING; OCEAN; FLOW; PROPAGATION;
D O I
10.1175/JPO-D-23-0151.1
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Large-amplitude internal solitary waves were recently observed in a coastal plain estuary and were hypothesized to evolve from an internal lee wave generated at the channel-shoal interface. To test this mechanism, a 3D nonhydrostatic model with nested domains and adaptive grids was used to investigate the generation of the internal solitary waves and their subsequent nonlinear evolution. A complex sequence of wave propagation and transformation was documented and interpreted using the nonlinear wave theory based on the Korteweg-de Vries equation. During the ebb tide a mode -2 internal lee wave is generated by the interaction between lateral flows and channel-shoal topography. This mode -2 lee wave subsequently propagates onto the shallow shoal and transforms into a mode -1 wave of elevation as strong mixing on the flood tide erases stratification in the bottom boundary layer and the lower branch of the mode -2 wave. The mode -1 wave of elevation evolves into an internal solitary wave due to nonlinear steepening and spatial changes in the wave phase speed. As the solitary wave of elevation continues to propagate over the shoaling bottom, the leading edge moves ahead as a rarefaction wave while the trailing edge steepens and disintegrates into a train of rank -ordered internal solitary waves, due to the combined effects of shoaling and dispersion. Strong turbulence in the bottom boundary layer dissipates wave energy and causes the eventual destruction of the solitary waves. In the meantime, the internal solitary waves can generate elevated shear and dissipation rate in local regions. SIGNIFICANCE STATEMENT: In the coastal ocean nonlinear internal solitary waves are widely recognized to play an important role in generating turbulent mixing, modulating short -term variability of nearshore ecosystem, and transporting sediment and biochemical materials. However, their effects on shallow and stratified estuaries are poorly known and have been rarely studied. The nonhydrostatic model simulations presented in this paper shed new light into the generation, propagation, and transformation of the internal solitary waves in a coastal plain estuary.
引用
收藏
页码:641 / 652
页数:12
相关论文
共 50 条
  • [21] THE DYNAMIC STRUCTURE OF A COASTAL PLAIN ESTUARY
    PRITCHARD, DW
    JOURNAL OF MARINE RESEARCH, 1956, 15 (01) : 33 - 42
  • [22] Generation and evolution of oblique solitary waves in supercritical flows
    Chen, XN
    EUROPEAN JOURNAL OF MECHANICS B-FLUIDS, 1999, 18 (03) : 475 - 492
  • [23] FORAMINIFERAL POPULATIONS IN A COASTAL PLAIN ESTUARY
    NICHOLS, M
    NORTON, W
    PALAEOGEOGRAPHY PALAEOCLIMATOLOGY PALAEOECOLOGY, 1969, 6 (03) : 197 - &
  • [24] Observing Internal Solitary Waves in the Lombok Strait by Coastal Acoustic Tomography
    Syamsudin, Fadli
    Taniguchi, Naokazu
    Zhang, Chuanzheng
    Hanifa, Aruni Dinan
    Li, Guangming
    Chen, Minmo
    Mutsuda, Hidemi
    Zhu, Ze-Nan
    Zhu, Xiao-Hua
    Nagai, Taira
    Kaneko, Arata
    GEOPHYSICAL RESEARCH LETTERS, 2019, 46 (17-18) : 10475 - 10483
  • [25] Generation of internal solitary waves in a pycnocline by an internal wave beam: a numerical study
    Grisouard, N.
    Staquet, C.
    Gerkema, T.
    JOURNAL OF FLUID MECHANICS, 2011, 676 : 491 - 513
  • [26] Generation of secondary internal waves by the interaction of an internal solitary wave with an underwater bank
    Vlasenko, V
    Alpers, W
    JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2005, 110 (C2) : 1 - 16
  • [27] On the generation and propagation of internal solitary waves in the southern Bay of Biscay
    Azevedo, A.
    da Silva, J. C. B.
    New, A. L.
    DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, 2006, 53 (06) : 927 - 941
  • [28] The generation and propagation of internal solitary waves in the South China Sea
    Chen, Ying-Jung
    Ko, Dong Shan
    Shaw, Ping-Tung
    JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2013, 118 (12) : 6578 - 6589
  • [29] Internal solitary waves
    Grimshaw, R
    ADVANCES IN FLUID MECHANICS V, 2004, 40 : 209 - 218
  • [30] INTERNAL SOLITARY WAVES
    WEIDMAN, PD
    VELARDE, MG
    STUDIES IN APPLIED MATHEMATICS, 1992, 86 (02) : 167 - 184