Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A dynamical ocean feedback mechanism for the Madden–Julian Oscillation

View through CrossRef
AbstractComposite analysis is applied to study the dynamical ocean response to Madden–Julian (MJ) events, measured by anomalies in sea surface height from the merged TOPEX/Poseidon–European Remote Sensing satellite altimetry dataset. In each of the tropical ocean basins, significant equatorial waves are forced, which are shown to modulate the sea surface temperature (SST) by 0.2–0.3°C in the absence of strong surface heat fluxes. In the Indian Ocean there is a clear dynamical response which may play a significant role in generating later MJ events. Surface westerly winds, associated with the active phase of the Madden–Julian Oscillation (MJO), force an eastward‐propagating oceanic downwelling equatorial Kelvin wave, which, on reaching the eastern boundary at Sumatra, forces reflected downwelling equatorial Rossby waves and coastal Kelvin waves. The coastal Kelvin waves propagate southwards towards northern Australia and northwards into the Bay of Bengal, and will be important for local physical, chemical and biological processes. The equatorial Rossby waves propagate westward across the Indian Ocean, arriving in the western Indian Ocean approximately 80–100 days after the initial Kelvin wave was generated. The arrival of these waves generates positive SST anomalies which leads to convection and may trigger the next‐but‐one MJ event, or amplify the low‐frequency tail of the MJO. This constitutes a coupled feedback mechanism from the ocean dynamics onto the MJO, somewhat similar to the delayed oscillator mechanism for the El Niño Southern Oscillation. Copyright © 2010 Royal Meteorological Society
Title: A dynamical ocean feedback mechanism for the Madden–Julian Oscillation
Description:
AbstractComposite analysis is applied to study the dynamical ocean response to Madden–Julian (MJ) events, measured by anomalies in sea surface height from the merged TOPEX/Poseidon–European Remote Sensing satellite altimetry dataset.
In each of the tropical ocean basins, significant equatorial waves are forced, which are shown to modulate the sea surface temperature (SST) by 0.
2–0.
3°C in the absence of strong surface heat fluxes.
In the Indian Ocean there is a clear dynamical response which may play a significant role in generating later MJ events.
Surface westerly winds, associated with the active phase of the Madden–Julian Oscillation (MJO), force an eastward‐propagating oceanic downwelling equatorial Kelvin wave, which, on reaching the eastern boundary at Sumatra, forces reflected downwelling equatorial Rossby waves and coastal Kelvin waves.
The coastal Kelvin waves propagate southwards towards northern Australia and northwards into the Bay of Bengal, and will be important for local physical, chemical and biological processes.
The equatorial Rossby waves propagate westward across the Indian Ocean, arriving in the western Indian Ocean approximately 80–100 days after the initial Kelvin wave was generated.
The arrival of these waves generates positive SST anomalies which leads to convection and may trigger the next‐but‐one MJ event, or amplify the low‐frequency tail of the MJO.
This constitutes a coupled feedback mechanism from the ocean dynamics onto the MJO, somewhat similar to the delayed oscillator mechanism for the El Niño Southern Oscillation.
Copyright © 2010 Royal Meteorological Society.

Related Results

Dynamical Ocean Forcing of the Madden–Julian Oscillation at Lead Times of up to Five Months
Dynamical Ocean Forcing of the Madden–Julian Oscillation at Lead Times of up to Five Months
AbstractThe authors show that a simple three-dimensional ocean model linearized about a resting basic state can accurately simulate the dynamical ocean response to wind forcing by ...
Access impact of observations
Access impact of observations
The accuracy of the Copernicus Marine Environment and Monitoring Service (CMEMS) ocean analysis and forecasts highly depend on the availability and quality of observations to be as...
An epistemic justice account of students’ experiences of feedback
An epistemic justice account of students’ experiences of feedback
I am a storyteller. I believe in the power of stories to share experiences and to elucidate thoughts and ideas and to help us to make sense of complex social practices. This thesis...
Environmental History of Oceanic Noise Pollution
Environmental History of Oceanic Noise Pollution
The concept of “ocean noise” precedes the concept of “ocean noise pollution” by about half a century. Those seeking a body of scholarly literature on ocean noise as an environmenta...
Assessing the potential composition of Europa’s subsurface ocean from water-rock interactions.
Assessing the potential composition of Europa’s subsurface ocean from water-rock interactions.
<p><strong>Introduction:</strong> Constraining the composition of Europa’s ocean is critical to understanding whether it cou...
Dynamics of high-pressure ice layers in large ocean worlds
Dynamics of high-pressure ice layers in large ocean worlds
Ocean worlds seem to offer a very suitable environment for life appearance and sustainability and studying their internal dynamic is a key topic for exobiology. However, the ocean ...
Designing rich feedback encounters
Designing rich feedback encounters
Feedback is a cornerstone of effective learning, yet it remains one of the most persistently complex challenges in higher education, for educators and students alike. This workshop...

Back to Top