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Dr Beena Balan Sarojini

Post-doctoral Researcher

Research theme

  • Climate physics

Sub department

  • Atmospheric, Oceanic and Planetary Physics

Research groups

  • Predictability of weather and climate
beena.balansarojini@physics.ox.ac.uk
Robert Hooke Building, room S40
  • About
  • Publications

Impact of the ocean in-situ observations on the ECMWF seasonal forecasting system

Frontiers in Marine Science Frontiers Media 11 (2024) 1456013

Authors:

Magdalena Alonso Balmaseda, Beena Balan Sarojini, Michael Mayer, Steffen Tietsche, Hao Zuo, Frederic Vitart, Timothy N Stockdale

Abstract:

This study aims to evaluate the impact of the in-situ ocean observations on seasonal forecasts. A series of seasonal reforecasts have been conducted for the period 1993-2015, in which different sets of ocean observations were withdrawn in the production of the ocean initial conditions, while maintaining a strong constrain in sea surface temperature (SST). By comparing the different reforecast sets, it is possible to assess the impact on the forecast of ocean and atmospheric variables. Results show that the in-situ observations have profound and significant impacts on the mean state of forecast ocean and atmospheric variables, which can be classified into different categories: i) impact due to local air-sea interaction, as direct consequence of changes in the mixed layer in the ocean initial conditions, and visible in the early stages of the forecasts; ii) changes due to different ocean dynamical balances, most visible in the Equatorial Pacific in forecasts initialized in May, which amplify and evolve with forecast lead time; iii) changes to the atmospheric circulation resulting from changes in large scale SST gradients; these are non-local, mediated by the atmospheric bridge, and they are obvious from the visible impact of the removing in-situ observations on the Atlantic basin only in the global atmospheric circulation; iv) changes in the atmospheric tropical deep convection associated with the structure of the warm pools. The ocean observations have also a significant impact on the representation of the trends of the ocean initial conditions, which affect the trends in the seasonal forecasts of ocean and atmospheric variables. The impact of the ocean observing system in the Atlantic and extratropics appears dominated by Argo, but this is not the case in the Tropical Pacific, where the other ocean observing systems play a role in constraining the ocean state.

The role of in situ ocean data assimilation in ECMWF subseasonal forecasts of sea鈥恠urface temperature and mixed鈥恖ayer depth over the tropical Pacific ocean

Quarterly Journal of the Royal Meteorological Society Wiley 149:757 (2023) 3513-3524

Authors:

Ho鈥怘suan Wei, Aneesh C Subramanian, Kristopher B Karnauskas, Danni Du, Magdalena A Balmaseda, Beena B Sarojini, Frederic Vitart, Charlotte A DeMott, Matthew R Mazloff

Observed tropical cyclone-driven cold wakes in the context of rapid warming of the Arabian Sea

Journal of Operational Oceanography Taylor & Francis 16:3 (2023) 236-251

Authors:

RS Akhila, J Kuttippurath, B Balan Sarojini, A Chakraborty, R Rahul

Preliminary evaluation of the ECMWF 6th generation ocean and sea-ice reanalysis system (ORAS6)

Copernicus Publications (2023)

Authors:

Eric de Boisseson, Hao Zuo, Philip Browne, Marcin Chrust, Magdalena Balmaseda, Patricia de Rosnay, Beena Balan Sarojini

Assessing the Impact of Ocean In Situ Observations on MJO Propagation Across the Maritime Continent in ECMWF Subseasonal Forecasts

Journal of Advances in Modeling Earth Systems American Geophysical Union (AGU) 15:2 (2023)

Authors:

Danni Du, Aneesh C Subramanian, Weiqing Han, Ho鈥怘suan Wei, Beena Balan Sarojini, Magdalena Balmaseda, Frederic Vitart

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