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The effect of submeso motions on the budgets of the mean turbulent kinetic energy and temperature variance in the stable atmospheric surface layer

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    0569859 - MÚ 2024 RIV NL eng J - Journal Article
    Schiavon, M. - Tampieri, F. - Caggio, Matteo - Mazzola, M. - Viola, A.
    The effect of submeso motions on the budgets of the mean turbulent kinetic energy and temperature variance in the stable atmospheric surface layer.
    Boundary Layer Meteorology. Roč. 186, č. 3 (2023), s. 595-613. ISSN 0006-8314. E-ISSN 1573-1472
    R&D Projects: GA ČR(CZ) GA19-04243S
    Grant - others:AV ČR(CZ) AP2101
    Program: Akademická prémie - Praemium Academiae
    Institutional support: RVO:67985840
    Keywords : second-moment budgets * stable surface layer * submeso motions * temperature variance * turbulent kinetic energy
    OECD category: Pure mathematics
    Impact factor: 4.3, year: 2022
    Method of publishing: Limited access
    https://doi.org/10.1007/s10546-022-00774-x

    By considering turbulence observations in the atmospheric stable surface layer over complex terrain, we study the effect of submeso motions on the budgets of the mean turbulent kinetic energy (TKE) and (half) the temperature variance. Different averaging times are considered (i.e., 100 s and 30 min), to filter out or retain the submeso contributions to second-order moments. Furthermore, results are interpreted by introducing four parameters that express the relative submeso contribution to the TKE, the temperature variance, and the vertical fluxes of heat and momentum. Four regimes are identified according to these four submeso parameters and the budgets are evaluated for these regimes. A balance among production, buoyancy (for the TKE) and dissipation occurs for the two regimes characterized by small submeso contribution to the fluxes, while an unbalance occurs for the other two regimes, where the submeso contribution to the fluxes is large. Instead, the budgets are independent of the magnitude of the submeso contribution to the TKE and the temperature variance.
    Permanent Link: https://hdl.handle.net/11104/0341200

     
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