Anisotropic Turbulence in the Radiatively Driven Convective Layer in a Small Shallow Ice-Covered Lake: An Observational Study
Author:
Funder
Russian Science Foundation
Publisher
Springer Science and Business Media LLC
Subject
Atmospheric Science
Link
https://link.springer.com/content/pdf/10.1007/s10546-022-00773-y.pdf
Reference45 articles.
1. Austin JA (2019) Observations of radiatively driven convection in a deep lake. Limnol Oceanogr 64:2152–2160. https://doi.org/10.1002/lno.11175
2. Banerjee S, Krahl R, Durst F, Zenger Ch (2007) Presentation of anisotropy properties of turbulence, invariants versus eigenvalue approaches. J Turbul 8:32. https://doi.org/10.1080/14685240701506896
3. Bogdanov S, Zdorovennova G, Volkov S, Zdorovennov R, Palshin N, Efremova T, Terzhevik A, Bouffard D (2019) Structure and dynamics of convective mixing in Lake Onego under ice-covered conditions. Inland Waters 9(2):177–192. https://doi.org/10.1080/20442041.2018.1551655
4. Bogdanov SR, Zdorovennov RE, Palshin NI, Zdorovennova GE, Terzhevik AYu, Gavrilenko GG, Volkov SYu, Efremova TV, Kuldin NA, Kirillin GB (2021a) Deriving of turbulent stresses in a convectively mixed layer in a shallow lake under ice by coupling two ADCPs. Fundam Prikl Gidrofiz 14(2):17–28. https://doi.org/10.7868/S2073667321020027
5. Bogdanov S, Zdorovennov R, Palshin N, Zdorovennova G (2021b) Deriving Six Components of Reynolds Stress Tensor from Single-ADCP Data. Water 13:2389. https://doi.org/10.3390/w13172389
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1. Numerical Simulation of Radiatively Driven Convection in a Small Ice-Covered Lake with a Lateral Pressure Gradient;Water;2023-11-14
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