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Ann-Sofi Smedman

Ann-Sofi Smedman

D-Index & Metrics

Environmental Sciences

D-Index
37
Citations
4230
World Ranking
8986
National Ranking
175

Overview

Ann-Sofi Smedman is affiliated with Uppsala University in Sweden, focusing primarily on Earth and Planetary Sciences. Their research spans several subfields including Oceanography, Atmospheric Science, and Earth-Surface Processes.

Their main areas of study cover topics such as Oceanographic and Atmospheric Processes, Ocean Waves and Remote Sensing, Meteorological Phenomena and Simulations, and Coastal and Marine Dynamics.

Recent publications by Ann-Sofi Smedman include:

  • Momentum fluxes and wind gradients in the marine boundary layer - a multi-platform study, 2024, Helda (University of Helsinki)
  • Investigating the effect of a wave-dependent momentum flux in a process oriented ocean model, 2024, Helda (University of Helsinki)

Their frequent co-authors include:

  • Anna Rutgersson
  • Ulf Högström
  • Erik Sahlée
  • William M. Drennan
  • Kimmo K. Kahma

Helda (University of Helsinki) is a notable publication venue where they have contributed multiple times.

Best Publications

  • Theory And Measurements For Turbulence Spectra And Variances In The Atmospheric Neutral Surface Layer

    Ulf Högström;Julian Hunt;Julian Hunt;Ann-Sofi Smedman

  • A case study of air-sea interaction during swell conditions

    Ann-Sofi Smedman;Ulf Högström;Hans Bergström;Anna Rutgersson

  • OBSERVATIONS OF A MULTI-LEVEL TURBULENCE STRUCTURE IN A VERY STABLE ATMOSPHERIC BOUNDARY LAYER

    Ann-Sofi Smedman

  • Critical Test of the Validity of Monin–Obukhov Similarity during Convective Conditions

    Cecilia Johansson;Ann-Sofi Smedman;U. L. F. Högström;James G. Brasseur

  • Spectra, variances and length scales in a marine stable boundary layer dominated by a low level jet

    Ann-Sofi Smedman;Hans Bergström;Ulf Högström

  • Analysis of the turbulence structure of a marine low-level jet

    Ann-Sofi Smedman;Michael Tjernström;Ulf Högström

  • Evolution of stable internal boundary layers over a cold sea

    Ann-Sofi Smedman;Hans Bergström;Branko Grisogono

  • Diagnostic and Prognostic Equations for the Depth of the Stably Stratified Ekman Boundary Layer

    Sergej Zilitinkevich;Alexander Baklanov;Jutta Rost;Jutta Rost;Ann-sofi Smedman

  • Observational Study of Marine Atmospheric Boundary Layer Characteristics during Swell

    A. Smedman;U. Högström;E. Sahleé;W. M. Drennan

  • The Near-Neutral Marine Atmospheric Boundary Layer with No Surface Shearing Stress: A Case Study

    Ann-Sofi Smedman;Michael Tjernström;Ulf Högström

  • Effect of sea state on the momentum exchange over the sea during neutral conditions

    Ann-Sofi Smedman;Xiaoli Guo Larsén;Ulf Högström;Kimmo K. Kahma

  • Accuracy of Sonic Anemometers: Laminar Wind-Tunnel Calibrations Compared to Atmospheric In Situ Calibrations Against a Reference Instrument

    Ulf Högström;Ann-Sofi Smedman

  • Turbulent exchange above a pine forest i. fluxes and gradients

    Ulf Högström;Hans Bergström;Ann-Sofi Smedman;Sven Halldin

  • Momentum fluxes and wind gradients in the marine boundary layer : a multi platform study

    Ulf Högström;Erik Sahlée;William M. Drennan;Kimmo K. Kahma

  • The Atmospheric Boundary Layer during Swell: A Field Study and Interpretation of the Turbulent Kinetic Energy Budget for High Wave Ages

    U. Högström;A. Smedman;E. Sahleé;W. M. Drennan

  • Use of conventional stability parameters during swell

    Anna Rutgersson;Ann-Sofi Smedman;Ulf Högström

  • Measured And Simulated Latent And Sensible Heat Fluxes At Two Marine Sites In The Baltic Sea

    Anna Rutgersson;Anna Rutgersson;Ann-Sofi Smedman;Anders Omstedt

  • The turbulent kinetic energy budget in the marine atmospheric surface layer

    Anna Sjöblom;Ann-Sofi Smedman

  • Enhanced air–sea CO2 transfer due to water-side convection

    Anna Rutgersson;Ann-Sofi Smedman

  • The vertical turbulence structure of the coastal marine atmospheric boundary layer

    Michael Tjernström;Ann-Sofi Smedman

  • Heat/mass transfer in the slightly unstable atmospheric surface layer

    Ann-Sofi Smedman;Ulf Högström;Julian C. R. Hunt;Julian C. R. Hunt;Erik Sahleé

Frequent Co-Authors

Ulf Högström
Ulf Högström Uppsala University
Anders Omstedt
Anders Omstedt University of Gothenburg
William M. Drennan
William M. Drennan University of Miami
Peter P. Sullivan
Peter P. Sullivan National Center for Atmospheric Research
Daniela Jacob
Daniela Jacob Helmholtz-Zentrum Geesthacht Centre for Materials and Coastal Research
Michael Tjernström
Michael Tjernström Stockholm University
Sven Halldin
Sven Halldin Uppsala University
Sergej Zilitinkevich
Sergej Zilitinkevich Finnish Meteorological Institute
Anders Lindroth
Anders Lindroth Lund University
Alexander Baklanov
Alexander Baklanov University of Copenhagen

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