Javascript must be enabled to continue!
Topographic Trapping of the Leeuwin Current and Its Impact on the 2010/11 Ningaloo Niño
View through CrossRef
Abstract
Previous theoretical studies suggest that the topography along the west coast of Australia plays an important role in strengthening and trapping the Leeuwin Current (LC) at the coast. To isolate and quantify the effect of the continental shelf and slope on the LC and Ningaloo Niño, high-resolution (1/12°) ocean general circulation model experiments with different bottom topographies are performed. The “control” experiment uses a realistic bottom topography along the west coast of Australia, whereas the sensitivity (“no-shelf”) experiment uses a modified topography with no continental shelf and slope near the coast. The mean and variability of LC are realistically simulated in the control experiment. Compared to the control experiment, the strength of LC in the no-shelf experiment decreased by about 28%. The continental shelf influences the development of the 2010/11 Ningaloo Niño through modulating the LC variability: in August–October 2010 and January–February 2011, the LC in the control experiment is enhanced much more than that in the no-shelf experiment. As a result, the upper-50-m ocean temperature in the control experiment is about 26% warmer than the no-shelf experiment from September 2010 to March 2011. Different evolution of SST warming is also found in the two experiments. Comparisons of oceanic processes in the two experiments show that the shelf-slope topography can effectively trap the positive sea level anomaly at the coast in the control experiment while more Rossby waves radiate from the coast in the no-shelf experiment, resulting in a weaker LC.
Title: Topographic Trapping of the Leeuwin Current and Its Impact on the 2010/11 Ningaloo Niño
Description:
Abstract
Previous theoretical studies suggest that the topography along the west coast of Australia plays an important role in strengthening and trapping the Leeuwin Current (LC) at the coast.
To isolate and quantify the effect of the continental shelf and slope on the LC and Ningaloo Niño, high-resolution (1/12°) ocean general circulation model experiments with different bottom topographies are performed.
The “control” experiment uses a realistic bottom topography along the west coast of Australia, whereas the sensitivity (“no-shelf”) experiment uses a modified topography with no continental shelf and slope near the coast.
The mean and variability of LC are realistically simulated in the control experiment.
Compared to the control experiment, the strength of LC in the no-shelf experiment decreased by about 28%.
The continental shelf influences the development of the 2010/11 Ningaloo Niño through modulating the LC variability: in August–October 2010 and January–February 2011, the LC in the control experiment is enhanced much more than that in the no-shelf experiment.
As a result, the upper-50-m ocean temperature in the control experiment is about 26% warmer than the no-shelf experiment from September 2010 to March 2011.
Different evolution of SST warming is also found in the two experiments.
Comparisons of oceanic processes in the two experiments show that the shelf-slope topography can effectively trap the positive sea level anomaly at the coast in the control experiment while more Rossby waves radiate from the coast in the no-shelf experiment, resulting in a weaker LC.
Related Results
Changes in biological productivity associated with Ningaloo Niño/Niña events in the southern subtropical Indian Ocean in recent decades
Changes in biological productivity associated with Ningaloo Niño/Niña events in the southern subtropical Indian Ocean in recent decades
AbstractUsing observations and long term simulations of an ocean-biogeochemical coupled model, we investigate the biological response in the southern subtropical Indian Ocean (SIO)...
Establishment of a seismic topographic effect prediction model in the Lushan Ms 7.0 earthquake area
Establishment of a seismic topographic effect prediction model in the Lushan Ms 7.0 earthquake area
SUMMARYThe seismic topographic effect is one of the debated research topics in seismology and earthquake engineering. This debate is due to the discrepancy between the observed amp...
Comparison of Chemical and Hysteresis CO2 Trapping in the Nugget Formation
Comparison of Chemical and Hysteresis CO2 Trapping in the Nugget Formation
Abstract
The Moxa Arch Anticline is a regional-scale northwest-trending uplift in western Wyoming and it has been chosen for CO2 capture and storage. The Nugget Sand...
Do CMIP5 Models Show El Niño Diversity?
Do CMIP5 Models Show El Niño Diversity?
AbstractWhether the state-of-the-art CMIP5 models have different El Niño types and how the degree of modeled El Niño diversity would be impacted by the future global warming are st...
Evidence of a relation between El NIno and QBO, and for an El Nino in 1991–92
Evidence of a relation between El NIno and QBO, and for an El Nino in 1991–92
The possibility of a relation between El Nino and the quasi‐biennial oscillation (QBO) in equatorial low stratosphere is investigated. Based on the 9 El Ninos and 16 quasi‐biennial...
Effects of El Niño drought on seedling dynamics in a seasonally dry tropical forest in Northern Thailand
Effects of El Niño drought on seedling dynamics in a seasonally dry tropical forest in Northern Thailand
AbstractAs El Niño is predicted to become stronger and more frequent in the future, it is crucial to understand how El Niño‐induced droughts will affect tropical forests. Although ...
Karakteristik Madden-Julian Oscillation (MJO) Ketika El-Nino Southern Oscillation (ENSO)
Karakteristik Madden-Julian Oscillation (MJO) Ketika El-Nino Southern Oscillation (ENSO)
Perkembangan peristiwa El-Nino Southern Oscillation (ENSO) menunjukkan peran penting bagi Madden-Julian Oscillation (MJO). Variasi angin permukaan (UWND) dan konveksi (OLR) intramu...
Chile Niño/Niña processes across a hierarchy of models
Chile Niño/Niña processes across a hierarchy of models
Processus associés aux évènements du mode climatique "Chile Niño/Niña" à travers une hiérarchie de modèles couplés océan-atmosphère
La région d'upwelling de frontiè...

