Gravity wave-fine structure interactions: A reservoir of small-scale and large-scale turbulence energy

被引:29
|
作者
Fritts, David C. [1 ]
Wang, Ling [1 ]
Werne, Joe [1 ]
机构
[1] NW Res Associates Inc, Colorado Res Associates Div, Boulder, CO 80301 USA
基金
美国国家科学基金会;
关键词
NOCTURNAL BOUNDARY-LAYER; INSTABILITY DYNAMICS; EVOLUTION; SHEAR; TEMPERATURE; ATMOSPHERE; RADAR; STATISTICS; TRANSITION; GENERATION;
D O I
10.1029/2009GL039501
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
A direct numerical simulation of gravity wave-fine structure interactions is performed to evaluate the effects of such a superposition on instability and turbulence for fine structure shears and a gravity wave (GW) amplitude that are individually stable. The superposition leads to deformations of the fine structure and GW fields that exhibit Kelvin-Helmholtz (KH) shear instabilities and turbulence extending over more than 20 buoyancy periods. KH instabilities occur on multiple scales, deplete the kinetic energy of the initial fine structure, and yield a layering of the potential temperature field resembling "sheet and layer'' structures observed in the oceans and the atmosphere. The interactions have a much smaller effect on the GW amplitude. Such interactions among GWs and fine structure are likely ubiquitous throughout the atmosphere and oceans and may account for sporadic bursts of turbulence and its persistence in regions of apparent static and dynamic stability (Ri > 1/4). Citation: Fritts, D. C., L. Wang, and J. Werne (2009), Gravity wave-fine structure interactions: A reservoir of small-scale and large-scale turbulence energy, Geophys. Res. Lett., 36, L19805, doi: 10.1029/2009GL039501.
引用
收藏
页数:6
相关论文
共 50 条
  • [21] Small-scale spatial structure influences large-scale invasion rates
    Michael J. Plank
    Matthew J. Simpson
    Rachelle N. Binny
    Theoretical Ecology, 2020, 13 : 277 - 288
  • [22] Skewness-induced asymmetric modulation of small-scale turbulence by large-scale structures
    Agostini, Lionel
    Leschziner, Michael
    Gaitonde, Datta
    PHYSICS OF FLUIDS, 2016, 28 (01)
  • [23] Connecting large-scale velocity and temperature bursts with small-scale intermittency in stratified turbulence
    Feraco, F.
    Marino, R.
    Primavera, L.
    Pumir, A.
    Mininni, P. D.
    Rosenberg, D.
    Pouquet, A.
    Foldes, R.
    Leveque, E.
    Camporeale, E.
    Cerri, S. S.
    Asokan, H. Charuvil
    Chau, J. L.
    Bertoglio, J. P.
    Salizzoni, P.
    Marro, M.
    EPL, 2021, 135 (01)
  • [24] Role of large-scale advection and small-scale turbulence on vertical migration of gyrotactic swimmers
    Marchioli, C.
    Bhatia, H.
    Sardina, G.
    Brandt, L.
    Soldati, A.
    PHYSICAL REVIEW FLUIDS, 2019, 4 (12):
  • [25] Rotating gravity currents: small-scale and large-scale laboratory experiments and a geostrophic model
    Thomas, P. J.
    Linden, P. F.
    JOURNAL OF FLUID MECHANICS, 2007, 578 : 35 - 65
  • [26] SMALL-SCALE STRUCTURE OF MAGNETOHYDRODYNAMIC TURBULENCE
    MAROCHNIK, LS
    SOVIET PHYSICS-TECHNICAL PHYSICS, 1964, 9 (01): : 145 - &
  • [27] LOGNORMALITY OF SMALL-SCALE STRUCTURE OF TURBULENCE
    CHEN, WY
    PHYSICS OF FLUIDS, 1971, 14 (08) : 1639 - +
  • [28] LOGNORMALITY OF SMALL-SCALE STRUCTURE OF TURBULENCE
    CHEN, WY
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1971, 16 (11): : 1306 - &
  • [29] SMALL-SCALE TURBULENCE AND FINE-STRUCTURE OF HYDROPHYSICAL FIELDS IN THE OCEAN
    OZMIDOV, RV
    OKEANOLOGIYA, 1983, 23 (04): : 533 - 537
  • [30] Breaking of small-scale gravity wave and transition to turbulence observed in OH airglow
    Yamada, Y
    Fukunishi, H
    Nakamura, T
    Tsuda, T
    GEOPHYSICAL RESEARCH LETTERS, 2001, 28 (11) : 2153 - 2156