Incorporating tides and internal gravity waves within global ocean general circulation models: A review

被引:41
|
作者
Arbic, Brian K. [1 ]
机构
[1] Univ Michigan, Dept Earth & Environm Sci, 2534 North Univ Bldg,1100 North Univ Ave, Ann Arbor, MI 48109 USA
基金
美国国家科学基金会; 美国国家航空航天局; 美国海洋和大气管理局;
关键词
Ocean tides; Internal tides; Internal gravity waves; General oceanic circulation; Ocean mixing; Ocean modeling; SEA-SURFACE HEIGHT; TIDAL ENERGY-DISSIPATION; NUMERICAL-MODEL; ACCURACY ASSESSMENT; BAROCLINIC TIDES; NUMBER SPECTRA; NORTH PACIFIC; GULF-STREAM; DEEP-OCEAN; TURBULENT DISSIPATION;
D O I
10.1016/j.pocean.2022.102824
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Until recently, high-resolution global modeling of tides has been done separately from high-resolution global modeling of the atmospherically-forced oceanic general circulation. Here we review the emerging class of high -resolution global models that are simultaneously forced by both atmospheric fields and the astronomical tidal potential. Such models simulate barotropic (surface) tides, internal tides, near-inertial motions, the eddying general oceanic circulation, and a partially resolved internal gravity wave (IGW) continuum spectrum (Garrett -Munk spectrum) simultaneously. We review the technical aspects of such global models and their myriad ap-plications, for example, in satellite oceanography, operational oceanography, boundary forcing of regional models, tidal-cryosphere interactions, and assessment of future coastal flooding hazards in a changing climate with altered tides.
引用
收藏
页数:27
相关论文
共 50 条
  • [41] Far fields of internal gravity waves from a source moving in the ocean with an arbitrary buoyancy frequency distribution
    Bulatov, V. V.
    Vladimirov, Yu V.
    Vladimirov, I. Yu
    RUSSIAN JOURNAL OF EARTH SCIENCES, 2019, 19 (05):
  • [42] Internal Gravity Waves Generated by Non-Stationary Sources of Perturbations in a Stratified Ocean with Shear Currents
    Bulatov, V. V.
    Vladimirov, I. Yu.
    IZVESTIYA ATMOSPHERIC AND OCEANIC PHYSICS, 2024, 60 (05) : 491 - 500
  • [43] Phase-Accurate Internal Tides in a Global Ocean Forecast Model: Potential Applications for Nadir and Wide-Swath Altimetry
    Yadidya, Badarvada
    Arbic, Brian K.
    Shriver, Jay F.
    Nelson, Arin D.
    Zaron, Edward D.
    Buijsman, Maarten C.
    Thakur, Ritabrata
    GEOPHYSICAL RESEARCH LETTERS, 2024, 51 (04)
  • [44] One centimeter-level observations of diurnal ocean tides from global monthly mean time-variable gravity fields
    Shin-Chan Han
    Richard D. Ray
    Scott B. Luthcke
    Journal of Geodesy, 2010, 84 : 715 - 729
  • [45] One centimeter-level observations of diurnal ocean tides from global monthly mean time-variable gravity fields
    Han, Shin-Chan
    Ray, Richard D.
    Luthcke, Scott B.
    JOURNAL OF GEODESY, 2010, 84 (12) : 715 - 729
  • [46] Improved upper-ocean thermodynamical structure modeling with combined effects of surface waves and M2 internal tides on vertical mixing: a case study for the Indian Ocean
    Zhuang, Zhanpeng
    Zheng, Quanan
    Yang, Yongzeng
    Song, Zhenya
    Yuan, Yeli
    Zhou, Chaojie
    Zhao, Xinhua
    Zhang, Ting
    Xie, Jing
    GEOSCIENTIFIC MODEL DEVELOPMENT, 2022, 15 (18) : 7221 - 7241
  • [47] Statistical Comparisons of Temperature Variance and Kinetic Energy in Global Ocean Models and Observations: Results From Mesoscale to Internal Wave Frequencies
    Luecke, Conrad A.
    Arbic, Brian K.
    Richman, James G.
    Shriver, Jay F.
    Alford, Matthew H.
    Ansong, Joseph K.
    Bassette, Steven L.
    Buijsman, Maarten C.
    Menemenlis, Dimitris
    Scott, Robert B.
    Timko, Patrick G.
    Voet, Gunnar
    Wallcraft, Alan J.
    Zamudio, Luis
    JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2020, 125 (05)
  • [48] Global Ocean Tide Models: Assessment and Use within a Surface Model of Lowest Astronomical Tide
    Turner, J. F.
    Iliffe, J. C.
    Ziebart, M. K.
    Jones, C.
    MARINE GEODESY, 2013, 36 (02) : 123 - 137
  • [49] What controls primary production in the Arctic Ocean? Results from an intercomparison of five general circulation models with biogeochemistry
    Popova, Ekaterina E.
    Yool, Andrew
    Coward, Andrew C.
    Dupont, Frederic
    Deal, Clara
    Elliott, Scott
    Hunke, Elizabeth
    Jin, Meibing
    Steele, Mike
    Zhang, Jinlun
    JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2012, 117
  • [50] Total kinetic energy in four global eddying ocean circulation models and over 5000 current meter records
    Scott, Robert B.
    Arbic, Brian K.
    Chassignet, Eric P.
    Coward, Andrew C.
    Maltrud, Mathew
    Merryfield, William J.
    Srinivasan, Ashwanth
    Varghese, Anson
    OCEAN MODELLING, 2010, 32 (3-4) : 157 - 169