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Oznaka: Earth system modelling

Quilcaille Y et al. (2025) Systematic attribution of heatwaves to the emissions of carbon majors. Nature 645.

10. septembra, 2025
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| Revija/članki - Journal/Articles

Quilcaille Y, Gudmundsson L, Schumacher DL et al. (2025) Systematic attribution of heatwaves to the emissions of carbon majors. Nature 645, 392–398 – https://doi.org/10.1038/s41586-025-09450-9 – open access article pdf – CC BY 4.0 Abstract (povzetek): Pripisovanje ekstremnih dogodkov ocenjuje, kako so podnebne spremembe vplivale na podnebne ekstreme, vendar se običajno osredotoča na posamezne dogodke. Poleg […]

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Posted in <a href="https://sustainability.unesco-floods.eu/category/revije-journals/" rel="category tag">Revija/članki - Journal/Articles</a> Tagged <a href="https://sustainability.unesco-floods.eu/tag/attribution/" rel="tag">attribution</a>, <a href="https://sustainability.unesco-floods.eu/tag/cement/" rel="tag">cement</a>, <a href="https://sustainability.unesco-floods.eu/tag/climate-modelling/" rel="tag">climate modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/earth-system-modelling/" rel="tag">Earth system modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/fossil-fuels/" rel="tag">fossil fuels</a>, <a href="https://sustainability.unesco-floods.eu/tag/heat-waves/" rel="tag">heat waves</a>, <a href="https://sustainability.unesco-floods.eu/tag/natural-hazards/" rel="tag">natural hazards</a>

Schöngart S et al. (2025) High-income groups disproportionately contribute to climate extremes worldwide. Nature Climate Change

7. maja, 2025
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Schöngart S, Nicholls Z, Hoffmann R et al. (2025) High-income groups disproportionately contribute to climate extremes worldwide. Nature Climate Change, in print – https://doi.org/10.1038/s41558-025-02325-x – open access article pdf – CC BY 4.0 Abstract (povzetek): Podnebna nepravičnost je še vedno prisotna, saj imajo najmanj odgovorni pogosto največje posledice, tako med državami kot znotraj njih. V […]

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Posted in <a href="https://sustainability.unesco-floods.eu/category/revije-journals/" rel="category tag">Revija/članki - Journal/Articles</a> Tagged <a href="https://sustainability.unesco-floods.eu/tag/climate-modelling/" rel="tag">climate modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/developing-world/" rel="tag">developing world</a>, <a href="https://sustainability.unesco-floods.eu/tag/droughts/" rel="tag">droughts</a>, <a href="https://sustainability.unesco-floods.eu/tag/earth-system-modelling/" rel="tag">Earth system modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/extreme-event-attribution/" rel="tag">extreme event attribution</a>, <a href="https://sustainability.unesco-floods.eu/tag/extreme-events/" rel="tag">extreme events</a>, <a href="https://sustainability.unesco-floods.eu/tag/heat-waves/" rel="tag">heat waves</a>, <a href="https://sustainability.unesco-floods.eu/tag/kitajska/" rel="tag">Kitajska</a>, <a href="https://sustainability.unesco-floods.eu/tag/zda/" rel="tag">ZDA</a>

Terhaar J, Vogt L, Foukal NP (2025) Atlantic overturning inferred from air-sea heat fluxes indicates no decline since the 1960s. nature Communications 16, 222.

15. januarja, 2025
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Terhaar J, Vogt L, Foukal NP (2025) Atlantic overturning inferred from air-sea heat fluxes indicates no decline since the 1960s. Nature Communications 16, 222 – https://doi.org/10.1038/s41467-024-55297-5 – open access article pdf – CC BY-NC-ND 4.0 Abstract (povzetek): Atlantsko meridionalno prevračanje (angl. Atlantic meridional overturning circulation – AMOC) je ključnega pomena za sprejem ogljika in toplote […]

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Posted in <a href="https://sustainability.unesco-floods.eu/category/revije-journals/" rel="category tag">Revija/članki - Journal/Articles</a> Tagged <a href="https://sustainability.unesco-floods.eu/tag/amoc/" rel="tag">AMOC</a>, <a href="https://sustainability.unesco-floods.eu/tag/atlantic-meridional-overturning-circulation/" rel="tag">Atlantic meridional overturning circulation</a>, <a href="https://sustainability.unesco-floods.eu/tag/climate-system-modelling/" rel="tag">climate system modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/earth-system-modelling/" rel="tag">Earth system modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/physical-oceanography/" rel="tag">physical oceanography</a>

Drijfhout S et al. (2024) Atlantic overturning collapses in global warming projections after 2100. Research Square – preprint

25. septembra, 2024
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Drijfhout S, Angevaare J, Mecking J, Rahmstorf S (2024) Atlantic overturning collapses in global warming projections after 2100. Research Square preprint – https://doi.org/10.21203/rs.3.rs-5077014/v1 – open access document pdf – CC BY 4.0 Abstract (povzetek): Atlantsko meridionalno prevračanje (AMOC) močno vpliva na podnebje, zlasti (vendar ne izključno) v severnem Atlantiku, njegove nestabilnosti pa pojasnjujejo nekatere največje […]

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Posted in <a href="https://sustainability.unesco-floods.eu/category/revije-journals/" rel="category tag">Revija/članki - Journal/Articles</a> Tagged <a href="https://sustainability.unesco-floods.eu/tag/amoc/" rel="tag">AMOC</a>, <a href="https://sustainability.unesco-floods.eu/tag/atlantic-meridional-overturning-circulation/" rel="tag">Atlantic meridional overturning circulation</a>, <a href="https://sustainability.unesco-floods.eu/tag/climate-change/" rel="tag">climate change</a>, <a href="https://sustainability.unesco-floods.eu/tag/climate-science/" rel="tag">climate science</a>, <a href="https://sustainability.unesco-floods.eu/tag/earth-system-modelling/" rel="tag">Earth system modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/physical-oceanography/" rel="tag">physical oceanography</a>

Kochkov et al. (2024) Neural general circulation models for weather and climate. Nature, on-line

22. julija, 2024
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Kochkov, D., Yuval, J., Langmore, I. et al. Neural general circulation models for weather and climate. Nature (2024). https://www.nature.com/articles/s41586-024-07744-y.pdf – open access article pdf Abstract (povzetek): Modeli splošne cirkulacije (GCM) so temelj napovedovanja vremena in podnebja. GCM so na fiziki temelječi simulatorji, ki združujejo numerično reševanje za dinamiko velikega obsega z uglašenimi predstavitvami za procese […]

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Posted in <a href="https://sustainability.unesco-floods.eu/category/revije-journals/" rel="category tag">Revija/članki - Journal/Articles</a> Tagged <a href="https://sustainability.unesco-floods.eu/tag/atmospheric-dynamics/" rel="tag">atmospheric dynamics</a>, <a href="https://sustainability.unesco-floods.eu/tag/climate-modelling/" rel="tag">climate modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/earth-system-modelling/" rel="tag">Earth system modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/machine-learning/" rel="tag">machine learning</a>, <a href="https://sustainability.unesco-floods.eu/tag/weather-forecast/" rel="tag">weather forecast</a>

Yuan T et al. (2024) Abrupt reduction in shipping emission as an inadvertent geoengineering termination shock produces substantial radiative warming. Communications Earth & Environment 5.

30. maja, 2024
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Yuan T, Song H, Oreopoulos L et al. (2024) Abrupt reduction in shipping emission as an inadvertent geoengineering termination shock produces substantial radiative warming. Communications Earth & Environment 5, 281 – https://doi.org/10.1038/s43247-024-01442-3 – open access article pdf – CC BY 4.0 Abstract (povzetek): Človekove dejavnosti vplivajo na podnebje Zemlje s spreminjanjem sestave atmosfere, kar povzroča […]

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Posted in <a href="https://sustainability.unesco-floods.eu/category/revije-journals/" rel="category tag">Revija/članki - Journal/Articles</a> Tagged <a href="https://sustainability.unesco-floods.eu/tag/aerosols/" rel="tag">aerosols</a>, <a href="https://sustainability.unesco-floods.eu/tag/atmospheric-chemistry/" rel="tag">atmospheric chemistry</a>, <a href="https://sustainability.unesco-floods.eu/tag/climate-system-modelling/" rel="tag">climate system modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/earth-system-modelling/" rel="tag">Earth system modelling</a>

Orihuela-Pinto B, England MH, Taschetto AS (2022) Interbasin and interhemispheric impacts of a collapsed Atlantic Overturning Circulation. Nature Climate Change 12, 558-565.

6. junija, 2022
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Orihuela-Pinto, B., England, M.H. & Taschetto, A.S. Interbasin and interhemispheric impacts of a collapsed Atlantic Overturning Circulation. Nature Climate Change 12, 558–565 – https://doi.org/10.1038/s41558-022-01380-y – CTK access article pdf Abstract (povzetek): Podnebne napovedi kažejo na oslabitev ali kolaps atlantske meridionalne prevratne cirkulacije (angl. Atlantic meridional overturning circulation – AMOC) ob globalnem segrevanju, pri čemer obstajajo […]

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Posted in <a href="https://sustainability.unesco-floods.eu/category/revije-journals/" rel="category tag">Revija/članki - Journal/Articles</a> Tagged <a href="https://sustainability.unesco-floods.eu/tag/amoc/" rel="tag">AMOC</a>, <a href="https://sustainability.unesco-floods.eu/tag/atlantic-meridional-overturning-circulation/" rel="tag">Atlantic meridional overturning circulation</a>, <a href="https://sustainability.unesco-floods.eu/tag/atmospheric-dynamics/" rel="tag">atmospheric dynamics</a>, <a href="https://sustainability.unesco-floods.eu/tag/climate-system-modelling/" rel="tag">climate system modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/earth-system-modelling/" rel="tag">Earth system modelling</a>, <a href="https://sustainability.unesco-floods.eu/tag/physical-oceanography/" rel="tag">physical oceanography</a>
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Najnovejši prispevki

  • UNEP (2025) Emissions Gap Report 2025.
  • Popular Mechanics.
  • Ups, znanstveniki so morda močno napačno ocenili število ljudi na Zemlji (Popular Mechanics – 31. oktober 2025)
  • Kaj je COP30 in zakaj je pomemben za podnebne spremembe? (BBC News – 7. oktober 2025)
  • Podnebna kriza pomeni, da je izredno močan orkan Melissa „nevarna nova realnost“ (The Guardian – 6. november 2025)

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Kategorije

Oznake

AMOC (21) Antarctica (24) artifical intelligence (30) artificial intelligence (22) Atlantic meridional overturning circulation (19) attribution (24) ChatGPT (17) China (18) climate (16) climate change (173) drought (16) Earth (35) El Niño (21) energy (20) energy transition (19) Europe (34) European Union (19) Evropa (18) Evropska unija (19) extreme event attribution (27) extreme events (18) extreme weather (20) floods (30) globalno segrevanje (16) global outlook (44) global warming (88) greenhouse gas emissions (21) hydrology (21) innovation (22) inovacije (18) Kitajska (29) large language models (25) natural hazards (22) oceans (17) planetary boundaries (18) podnebne spremembe (39) poplave (20) renewable energy (23) Slovenija (56) sustainability (34) sustainable development (17) technology (22) trajnostni razvoj (18) umetna inteligenca (46) United States of America (18)
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