Bryam Orihuela-Pinto
@BryamOP
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Postdoctoral fellow @CSUAtmosSci. Climate Scientist, PhD.
Joined December 2019
How does tropical Pacific sea surface temperature influence AMOC strength? Find out in our new paper, now available at @theAGU Geophysical Research Letters (GRL). W/ Agus Santoso, @ProfMattEngland & @AndreaTaschetto. Open access article: https://t.co/CVsIXJrIVH
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I will be giving a talk of my PhD thesis on the interaction between the AMOC and tropical Pacific climate, tomorrow 26th Jan, 15:30hrs EST at the University of Virginia. If you would like to join online feel free to DM me and I will share the zoom details.
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Orihuela-Pinto, Bryam (@BryamOP), Agus Santoso, Matthew H. England (@ProfMattEngland), & Andréa S. Taschetto (@AndreaTaschetto). "Reduced ENSO Variability due to a Collapsed Atlantic Meridional Overturning Circulation" #JClimate 35, 16 (2022): 5307-5320, https://t.co/ZfLCa9Unuq
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In response, ENSO variability reduces, as shown by the decrease in tropical Pacific sea surface temperature variability (blue shading). We also found reduced ENSO extreme events and changes in ENSO diversity. More details on the paper. Happy to share a copy w/anyone interested.
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The new tropical Pacific mean state under a collapsed AMOC scenario features cooler temperatures and an intensified Pacific Walker Circulation as explained in our previous @NatureClimate study ( https://t.co/mhYU60dC4r).
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Our new @AMSJCLi paper is out! Here we study the ENSO response to a new tropical Pacific mean state caused by a collapse of the Atlantic Meridional Overturning Circulation (AMOC). With A. Santoso @ProfMattEngland @AndreaTaschetto. ➡️ https://t.co/tGYabdwoV5 ⬇️🧵
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An analysis in @NatureClimate shows that the collapse of the Atlantic Meridional Overturning Circulation causes excess heat to accumulate in the tropical south Atlantic Ocean, resulting in atmospheric changes globally. https://t.co/o7NfiTNAHM
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@qbas81 @sarahinscience @ProfMattEngland @BryamOP @AndreaTaschetto @ccrc_unsw @AntarcticSciAus @abcnews Will video do?
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#ANALYSIS: The recent wet weather could become the norm in Australia — if this huge ocean current collapses
abc.net.au
The collapse of the Atlantic meridional overturning circulation would profoundly alter the anatomy of the world’s oceans, write Matthew England, Andréa S Taschetto and Bryam Orihuela-Pinto.
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Why the collapse of an Atlantic ocean current could mean La Niña becomes the norm | Matthew England, Andréa S. Taschetto and Bryam Orihuela-Pinto for the Conversation
theguardian.com
Global La Niña-like conditions could result in more flooding rains in east Australia and bushfires in US south-west
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Why the collapse of an Atlantic ocean current could mean La Niña becomes the norm
theguardian.com
Global La Niña-like conditions could result in more flooding rains in east Australia and bushfires in US south-west
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Climate change is slowing down the conveyor belt of ocean currents that brings warm water from the tropics up to the North Atlantic. New research looks at consequences of this conveyor collapsing entirely. @ProfMattEngland @AndreaTaschetto @BryamOP @UNSW
https://t.co/6d7nEhoRRE
theconversation.com
The collapse of the Atlantic meridional overturning circulation would profoundly alter the anatomy of the world’s oceans and climate. New research explores the consequences.
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Congratulations Bryam for submitting your PhD thesis this week! Fantastic achievement: 2 papers accepted, 1 to come, @UNSWScience writing scholarship award, + @theAGU 2021 Outstanding Student Presentation Award! Thanks the sup team @ProfMattEngland and A Santoso @ccrc_unsw
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My first ever article has been published in @NatureClimate 🎉 !!! Read it here: https://t.co/mhYU60dC4r and see quoted tweet for a nice summary of the findings. Big thanks to @ProfMattEngland and @AndreaTaschetto without whom this publication would not have been possible.
Just published! Our new paper exploring the global climate response to a shutdown in the Atlantic Meridional Overturning Circulation. With @BryamOP and @AndreaTaschetto @ccrc_unsw @AntarcticSciAus
https://t.co/vlJp8MuBgH (... my first ever🧵)
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