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João A. Hackerott
João A. Hackerott
University of São Paulo
Atmospheric sciences
Surface layer
Turbulence kinetic energy
Dissipation
Turbulence
5
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14
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The Role of Roughness and Stability on the Momentum Flux in the Marine Atmospheric Surface Layer: A Study on the Southwestern Atlantic Ocean
2018
Journal of Geophysical Research
João A. Hackerott
Luciano Ponzi Pezzi
M. Bakhoday Paskyabi
Amauri Pereira de Oliveira
Joachim Reuder
R. B. de Souza
R.Y. de Camargo
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A Surface-Layer Study of the Transport and Dissipation of Turbulent Kinetic Energy and the Variances of Temperature, Humidity and CO[Formula: see text]
2017
Boundary-Layer Meteorology
João A. Hackerott
Mostafa Bakhoday Paskyabi
Joachim Reuder
Amauri Pereira de Oliveira
Stephan T. Kral
Edson P. Marques Filho
Michel D. S. Mesquita
Ricardo de Camargo
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A Surface-Layer Study of the Transport and Dissipation of Turbulent Kinetic Energy and the Variances of Temperature, Humidity and CO$$_$$
2017
Boundary-Layer Meteorology
João A. Hackerott
Mostafa Bakhoday Paskyabi
Joachim Reuder
Amauri Pereira de Oliveira
Stephan T. Kral
Edson P. Marques Filho
Michel D. S. Mesquita
Ricardo de Camargo
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Similarity analysis of turbulent transport and dissipation for momentum, temperature, moisture, and CO 2 during BLLAST
2016
Atmospheric Chemistry and Physics
João A. Hackerott
Mostafa Bakhday Paskyabi
Stephan T. Kral
Joachim Reuder
Amauri Pereira de Oliveira
Edson P. Marques Filho
Michel D. S. Mesquita
Ricardo de Camargo
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Citations (1)
Impact of a warm core eddy on near-surface wind at Brazil-Malvinas Confluence region in high resolution simulations
2014
João A. Hackerott
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