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Annick Terpstra

Postdoctoral fellow
  • E-mailAnnick.Terpstra@uib.no
  • Phone+47 55 58 35 88
  • Visitor Address
    Allegt. 70
  • Postal Address
    Postboks 7803
    5020 BERGEN
Academic article
  • 2018. Polar Mesoscale Cyclone Climatology for the Nordic Seas Based on ERA-Interim. Journal of Climate. 2511-2532.
  • 2016. Forward and reverse shear environments during polar low genesis over the North East Atlantic. Monthly Weather Review. 1341-1354.
  • 2015. Idealised simulations of polar low development in an Arctic moist-baroclinic environment. Quarterly Journal of the Royal Meteorological Society. 1987-1996.
  • 2015. An initialization method for idealized channel simulations. Monthly Weather Review. 2043-2051.
Lecture
  • 2016. The role of surface fluxes on polar low development: idealised simulations.
  • 2016. Polar low dynamics: conducive environments and the role of moisture.
  • 2016. Climatology and Genesis Environments of Polar Lows in the Northeast Atlantic.
  • 2015. The dynamics of reverse shear polar lows.
  • 2015. Polar Low development in forward and reverse shear Arctic moist-baroclinic environments.
  • 2015. Polar Low development in forward and reverse shear Arctic moist-baroclinic environments.
  • 2015. Influence of surface fluxes on polar low development: idealised simulations.
  • 2015. Influence of surface fluxes on polar low development: idealised simulations.
  • 2015. Influence of Surface Fluxes on Polar Low Development: Idealised Simulations.
  • 2015. Idealised simulations of polar low development: diabetic heating and surface fluxes.
  • 2015. Idealised simulations of polar low development: diabatic heating and surface fluxes.
  • 2015. Environmental Conditions for Polar Lows in the Nordic Seas.
  • 2015. Atmospheric conditions associated with polar low genesis in the North-East Atlantic.
  • 2015. Atmospheric Conditions associated with Polar Low Genesis in the North-East Atlantic.
  • 2014. The dynamics of reverse shear polar lows.
  • 2014. The dynamics of polar lows: an idealized modelling approach.
  • 2014. The Dynamics of Polar Lows.
  • 2014. Idealized modelling using WRF.
  • 2014. Environmental Conditions for Polar Low Formation.
  • 2014. A WRF challenge: idealized polar low simulations.
  • 2013. Polar lows and experiment design.
  • 2013. Moist baroclinic instability: A unifying perspective on polar low development.
  • 2013. Moist baroclinic instability: A unifying perspective on polar low development.
  • 2012. The Diabatic Rossby Vortex as a mechanism for polar low initiation and intensification.
  • 2012. The Diabatic Rossby Vortex as a mechanism for polar low initiation and intensification.
  • 2012. The Diabatic Rossby Vortex as a mechanism for polar low initiation and intensification.
Academic lecture
  • 2018. Influences of sea surface temperature on mid latitude cyclones in an idealized framework.
  • 2016. Polar Lows, forward and reverse shear conditions and diabatic intensification.
  • 2016. Dynamics and Predictability of Arctic Extremes and the Influence of Air-Sea Interactions on their Evolution.
  • 2015. Polar Lows: impact, current understanding, and challenges ahead.
  • 2015. Polar Lows: impact, current understanding, and challenges ahead.
  • 2015. Polar Lows: Recent research on the dynamics of intense high-latitude cyclones.
  • 2015. Polar Lows.
Masters thesis
  • 2014. Influence of surface fluxes of polar low development: idealised simulations.
Doctoral dissertation
  • 2014. Dynamical perspectives on the formation and intensification of polar lows.
  • 2014. Dynamical Perspectives on the Formation and Intensification of Polar Lows.
Abstract
  • 2016. High-latitude dynamics of atmosphere-ice-ocean interactions. Bulletin of The American Meteorological Society - (BAMS). ES179-ES182.
Poster
  • 2018. Polar Mesoscale Cyclone Climatology for the Nordic Seas.
  • 2015. Present and future climatologies of polar lows over the Norwegian Sea.
  • 2015. Environmental Conditions for Polar Lows in the Nordic Seas.
  • 2014. Climatology and dynamical aspects of polar lows over the Nordic Seas.
  • 2012. The Diabatic Rossby Vortex as a mechanism for polar low initiation and intensification.
Academic literature review
  • 2019. The Iceland Greenland seas project. 1795-1817.

More information in national current research information system (CRIStin)