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Ocean-Land-Atmosphere Research

@olarjournal.bsky.social
56 followers 85 following 111 posts

An open access journal which is published in association with SML, technologically innovative research in marine, terrestrial and atmospheric studies(2771-0378) spj.science.org/journal/olar

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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 30/09/2026
Can #AI learn the physics of the #ocean? New research in @OLAR highlights how physics-informed AI can improve ocean reconstruction, climate prediction, and wave forecasting, paving the way for more reliable ocean predictions.🤓 @olarjournal.bsky.social www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 30/09/2026
Marine #viruses may be more diverse than we thought! New research in @OLAR expands the known diversity of Aoguangviridae from 59 to 227 genomes, revealing their widespread distribution across the global #ocean and potential roles in marine biogeochemical processes. www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 29/09/2026
How does ocean bathymetry shape Earth’s #climate? New research in @OLAR reveals how seafloor topography influences ocean circulation, heat transport, and climate asymmetry—even in the absence of continents.🤓 www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 24/09/2026
#Arctic winter sea-ice now increasingly suppresses China's summer heatwaves, a Zhejiang University team found. More Atlantic-sector ice weakens the polar vortex, shifts the East Asian jet southward, and cools China.👇 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 24/09/2026
#Atmospheric particles may have significantly slowed surface warming over India. New research in Ocean-Land-Atmosphere Research shows that #aerosols and #clouds contributed to substantial surface dimming over the region during 2001–2024, offsetting much of the observed #warming trend.👇
https://www.eurekalert.org/news-releases/1144898
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 24/09/2026
The world’s oceans are having a conversation—but not all at once. A new study in Ocean-Land-Atmosphere Research reveals a shifting “relay system” of climate signals among the #Pacific, #Atlantic, and #Indian oceans, unfolding from months to years. 🤓 www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 16/09/2026
#Mangroves shifted nutrient transport from south to north in Shenzhen Bay, increasing nitrogen-phosphorus imbalance risk in over 5% of the bay during wet season, highlighting the need for zone-specific management.👇 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 11/09/2026
#Ocean #viruses are widespread but mostly known from #DNA fragments. Researchers expanded #Aoguangviridae genomes to 227, revealing 22 subfamilies and 157 genera, with peak activity in the deep chlorophyll maximum layer.👇 @olarjournal.bsky.social spj.science.org/doi/epdf/10....
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 04/09/2026
Researchers built a parallel framework for the #MaCOM ocean model, achieving a 19.41x speedup from 128 to 4096 processes and running a seven-day #forecast in about 45 minutes.😀 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 31/08/2026
Reviewing 581 studies, this work proposes a six-part shoreline framework but flags poor model transferability and understudied African/South American coasts as key gaps.👇 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 28/08/2026
New research reports the first in situ observation of backward walking in a #fish. Researchers observed the armored searobin Scalicus engyceros walking both sideways and backward on the #seafloor in the South China Sea.👇 @olarjournal.bsky.social www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 28/08/2026
How does #global #warming feel over the #ocean? Our latest research story, highlighting a striking land–sea contrast in “feels like” temperature and the key role of wind, is now available on EurekAlert!🤓 @olarjournal.bsky.social www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 20/08/2026
A study of Colombia's Caribbean #coast reveals how seasonal changes drive PAH pollution in #mangroves, identifying critical hotspots for targeted #ecological monitoring and #pollution control.🤓 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 14/08/2026
Arctic ozone hit a record high in March 2024, driven by planetary waves and climate oscillations that disrupted the polar vortex.👇 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 14/08/2026
Two remote #Rossby wave trains converged over Central Asia, intensifying pressure gradients and driving record-breaking winds across northern China in April 2025. New research in Ocean-Land-Atmosphere Research reveals the #atmospheric dynamics behind this extreme event.👇 @olarjournal.bsky.social
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 10/08/2026
The #TPHL distribution better captures low winds and extreme gusts in #coastal areas. It improves wind resource assessment and coastal wind risk prediction by reducing #wind power estimation errors.👍 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 31/07/2026
Global warming drives seasonally opposite shifts in Northern and Southern storm tracks, revealing #hemispheric disparities key to extreme #weather #forecasting.🤓 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 24/07/2026
Scientists reveal why Arctic ozone reached its highest level in more than 45 years. The study shows how rare atmospheric processes combined to produce this unprecedented event, advancing our understanding of ozone variability in a changing climate.👇 #Arctic #Ozone www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 24/07/2026
#Evapotranspiration shifts from soil-moisture control in dry regions to #atmospheric control in humid regions, with both factors regulating transition zones. This improves drought prediction and water management. @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 17/07/2026
This review synthesizes the global landscape of Digital Twin Oceans (DTO), defining its technical architecture and key challenges to guide future research in #marine disaster mitigation and resource management. @olarjournal.bsky.social spj.science.org/doi/pdf/10.3...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 15/07/2026
A record-breaking #windstorm struck northern China in April 2025. It was driven by local weather systems and high-latitude #atmospheric wave trains, offering clues for better #forecasting.🤓 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 06/07/2026
Coastal #microbes show strong resilience to #ocean #alkalinity enhancement, supporting its potential as a safer marine #carbon removal strategy.👇 @olarjournal.bsky.social spj.science.org/doi/full/10....
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 30/06/2026
#Seafloor #topography strengthens subtropical circulations and AMOC, warming Antarctica while cooling the Arctic, reshaping global winds and precipitation, and modulating hemispheric asymmetry.👇 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 30/06/2026
What drove northern China’s record-breaking #winds in April 2025? A strong northwest ridge and deep northeast trough intensified the pressure gradient, fueling extreme spring windstorms. Recognizing this pattern can improve early warnings and protect #infrastructure.🤓 spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 18/06/2026
Luzon Strait deep-water overflow shows clear #seasonal variability, strengthening in autumn and weakening in spring. It is mainly driven by bottom pressure gradients and deep–surface #ocean coupling.🤓 @olarjournal.bsky.social spj.science.org/doi/epdf/10....
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 18/06/2026
Aquaplanet simulations show that realistic bathymetry alone drives hemispheric climate asymmetry by shaping #ocean circulation and heat redistribution, revealing the seafloor's fundamental role in #climate regulation.👇 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 09/06/2026
Deep water flow between the Pacific and South China Sea swings seasonally, driven by upper-layer currents and deep-ocean density shifts. Tracking these linked forces sharpens #climate #models and #ocean forecasts.🤓 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 08/06/2026
A new study reveals that how warm the ocean feelsto us isn’t just about the air temperature—it’s a tug-of-war between heat, humidity, and wind! @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 03/06/2026
Unraveling southern China's complex winter rainfall is challenging. This study identifies two key #patterns—a dominant uniform #mode (41.4%) driven by Eurasian waves and tropical seas, and a secondary east-west seesaw (14.3%) controlled by the Scandinavian teleconnection.👇 @olarjournal.bsky.social
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 28/05/2026
A breakthrough in ocean forecasting: the new 4D-MDA system merges satellite data with the MaCOM model, reducing errors and improving the simulation of currents and eddies.👍 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 25/05/2026
MOHDAS: China’s breakthrough ocean forecasting system. It delivers 1–7 day forecasts with outstanding accuracy—outperforming leading global models. A leap in ocean prediction.🤓 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 21/05/2026
#Climate change is supercharging #hurricanes. 🌪️ Future #storms will grab 9–20% more moisture from nearby #oceans, driving rainfall up by 1.8%-12.5%. Flood risk for the US East & Southeast will surge—especially if emissions stay high.👇 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 11/05/2026
The method uses instantaneous sensitivity to tune only the most critical parameters, achieving near-optimal​ results and more durable climate predictions.🤓 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 09/05/2026
#Metaphors can unlock science—or distort it; the real skill is balancing clarity with truth.👇 @olarjournal.bsky.social www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 23/04/2026
A rare warming pattern in the tropical Pacific, along with heat building up in the western Pacific this spring, could lead to a super El Niño by the end of 2026.👇 @olarjournal.bsky.social www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 22/04/2026
Scientists are closely monitoring a remarkable and unusual ocean warming pattern in the tropical Pacific—unseen in 40 years—that may supercharge an emerging El Niño.👇 @olarjournal.bsky.social spj.science.org/doi/abs/10.3...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 20/04/2026
A tiny green pigment—chlorophyll a—can reveal how powerful typhoons reshape water flow and disrupt entire aquatic ecosystems.👇 @olarjournal.bsky.social www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 17/04/2026
Tracking ocean life in motion: using the OCEANS observatory off Japan’s Oshima Island, researchers reveal how turbulence shapes plankton diversity and marine aggregates over long-term, high-frequency observations.👇 #ocean #plankton #marine @olarjournal.bsky.social www.eurekalert.org/multimedia/1...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 14/04/2026
New research reveals how sea surface temperature signals move between the Pacific, Atlantic, and Indian Oceans, creating a complex, time-shifted dialogue across the globe.🤓 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 07/04/2026
The Ocean’s Inner Turbulence: How Seafloor observatory links chaotic water motion to the precise daily clock of plankton migration. 🤓 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 03/04/2026
Phrases like "tipping points" and "ocean conveyor belt" turn complex climate models into public understanding. Grounded in data, these vivid stories help explain both sudden and gradual risks—bridging labs and society. 🤓 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Reposted by Ocean-Land-Atmosphere Research
Scripps Institution of Oceanography @scrippsocean.bsky.social · 26/03/2026
🛰️A satellite launched in 2022 may close a blind spot in tsunami science. New research co-authored by Scripps Oceanography scientists used the Surface Water and Ocean Topography (SWOT) satellite to reveal new details about a powerful 2025 earthquake off Russia’s Kamchatka Peninsula. ⤵️
scripps.ucsd.edu
New Satellite’s Observations Close Blind Spot in Tsunami Science
SWOT observations of the tsunami wave field offshore Kamchatka about one hour after the earthquake covering the two parallel diagonal lines cutting across the image. The measurements allowed the resea...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 27/03/2026
A new acoustic assay enables real-time assessment of coral reef health by quantifying photosynthetic oxygen bubble production.🤓 @olarjournal.bsky.social www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 20/03/2026
This study highlights that as climate change increases the frequency of such successive typhoons, we need to pay more attention to their ecological impacts on estuaries.🤓 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 16/03/2026
New research reveals a hidden shift: watersheds that once leaked high levels of nitrates around 2000 saw a dramatic drop by 2020🎯Why?🧐 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 13/03/2026
A newly optimized AI model improves forecasts of North Pacific sea level anomalies, helping coastal communities and maritime industries better prepare for short-term sea level changes.🤓 #ocean #AI @olarjournal.bsky.social www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 12/03/2026
Check out our video!🥳Coral reef algae "sing" as they photosynthesize! This underwater bubbling chorus changes with the seasons, offering a new, non-invasive way to monitor ocean health.👍 @olarjournal.bsky.social spj.science.org/doi/10.34133...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 06/03/2026
From the Arctic to the monsoon: early-summer sea ice melt may help shape the intensity and location of India’s late-season rainfall.🤓 @olarjournal.bsky.social www.eurekalert.org/news-release...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 27/01/2026
Check out our video! 🥳Melting Arctic sea ice 🧊 is shifting the South Asian monsoon westward, increasing rain in western India. This occurs via atmospheric waves triggered by ice loss, and models show this effect will strengthen. 👇 @olarjournal.bsky.social spj.science.org/doi/abs/10.3...
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Ocean-Land-Atmosphere Research @olarjournal.bsky.social · 23/01/2026
Check out our video!🤓 Arctic warming doubles global rate—fueled by human activity. Land use surprisingly amplifies it most. Antarctica warms slower, shielded by distance. Both poles face severe heating by 2100 without urgent action. @olarjournal.bsky.social spj.science.org/doi/10.34133...
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