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Volcanically Triggered Ocean Warming Near the Antarctic Peninsula
L S Verona1, I Wainer2, S Stevenson3
1Instituto Oceanográfico, Universidade de São Paulo (IO/USP), São Paulo, SP, Brazil. verona.laura@usp.br.
Scientific Reports
|July 3, 2019
Summary
Volcanic eruptions can cool the planet, but surprisingly warm the Antarctic Peninsula. This warming is linked to weakened ocean currents and shifted winds, potentially increasing ice shelf vulnerability.
Area of Science:
- Climate Science
- Oceanography
- Glaciology
Background:
- Explosive volcanic eruptions inject sulfate aerosols into the stratosphere, causing global surface cooling.
- The Southern Ocean's response to volcanic eruptions is critical for Antarctic ice sheet mass balance but remains poorly understood.
- Observations after the Mt. Pinatubo eruption showed cooling in most of the Southern Ocean, but unexpected warming off the Antarctic Peninsula.
Purpose of the Study:
- To investigate the physical mechanisms behind the observed warming off the Antarctic Peninsula following low-latitude volcanic eruptions.
- To determine if this warming is a direct or indirect consequence of volcanic aerosol injection.
- To assess the potential impact of future volcanic eruptions on Antarctic ice shelves.
Main Methods:
- Combined observational analysis of the Mt. Pinatubo eruption (1991).
- Utilized the Last Millennium Ensemble (850-1850) from the Community Earth System Model.
- Analyzed changes in Southern Ocean temperature, Weddell Gyre outflow, and Southern Hemisphere polar westerlies.
Main Results:
- The observed warming off the Antarctic Peninsula is consistent with the forced response to low-latitude eruptions.
- This warming is associated with a 16% weakening of the subsurface Weddell Gyre outflow.
- The weakening of the gyre outflow is triggered by a southward shift of the Southern Hemisphere polar westerlies by approximately 2° latitude.
Conclusions:
- Volcanic eruptions can induce regional ocean warming in the Southern Ocean, counteracting global cooling trends.
- Weakened Weddell Gyre outflow and shifted polar westerlies are key mechanisms driving this Antarctic Peninsula warming.
- Future volcanic eruptions may exacerbate the vulnerability of Antarctic Peninsula ice shelves due to induced warming.
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