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Introduction

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Rattachement africain : us, Sénégal, gb, ar, cr, br, Seychelles, fr, jp, de, pe, es, ch, py, ru, cl, sa, ad, no, ca, sk, jm, au, cn, kr, nz, cz, be, nl, pt, at, dk, se, Maroc, fi, it, ir, tt, Afrique du Sud, ie, ee, hu, hr, tw, lt, sg, bo, is, il, in, id, pl, gr, md, bb. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

Abstract —J. BLUNDEN, T. BOYER, AND E. BARTOW-GILLIES Earth’s global climate system is vast, complex, and intricately interrelated. Many areas are influenced by global-scale phenomena, including the “triple dip” La Niña conditions that prevailed in the eastern Pacific Ocean nearly continuously from mid-2020 through all of 2022; by regional phenomena such as the positive winter and summer North Atlantic Oscillation that impacted weather in parts the Northern Hemisphere and the negative Indian Ocean dipole that impacted weather in parts of the Southern Hemisphere; and by more localized systems such as high-pressure heat domes that caused extreme heat in different areas of the world. Underlying all these natural short-term variabilities are long-term climate trends due to continuous increases since the beginning of the Industrial Revolution in the atmospheric concentrations of Earth’s major greenhouse gases. In 2022, the annual global average carbon dioxide concentration in the atmosphere rose to 417.1±0.1 ppm, which is 50% greater than the pre-industrial level. Global mean tropospheric methane abundance was 165% higher than its pre-industrial level, and nitrous oxide was 24% higher. All three gases set new record-high atmospheric concentration levels in 2022. Sea-surface temperature patterns in the tropical Pacific characteristic of La Niña and attendant atmospheric patterns tend to mitigate atmospheric heat gain at the global scale, but the annual global surface temperature across land and oceans was still among the six highest in records dating as far back as the mid-1800s. It was the warmest La Niña year on record. Many areas observed record or near-record heat. Europe as a whole observed its second-warmest year on record, with sixteen individual countries observing record warmth at the national scale. Records were shattered across the continent during the summer months as heatwaves plagued the region. On 18 July, 104 stations in France broke their all-time records. One day later, England recorded a temperature of 40°C for the first time ever. China experienced its second-warmest year and warmest summer on record. In the Southern Hemisphere, the average temperature across New Zealand reached a record high for the second year in a row. While Australia’s annual temperature was slightly below the 1991–2020 average, Onslow Airport in Western Australia reached 50.7°C on 13 January, equaling Australia's highest temperature on record. While fewer in number and locations than record-high temperatures, record cold was also observed during the year. Southern Africa had its coldest August on record, with minimum temperatures as much as 5°C below normal over Angola, western Zambia, and northern Namibia. Cold outbreaks in the first half of December led to many record-low daily minimum temperature records in eastern Australia. The effects of rising temperatures and extreme heat were apparent across the Northern Hemisphere, where snow-cover extent by June 2022 was the third smallest in the 56-year record, and the seasonal duration of lake ice cover was the fourth shortest since 1980. More frequent and intense heatwaves contributed to the second-greatest average mass balance loss for Alpine glaciers around the world since the start of the record in 1970. Glaciers in the Swiss Alps lost a record 6% of their volume. In South America, the combination of drought and heat left many central Andean glaciers snow free by mid-summer in early 2022; glacial ice has a much lower albedo than snow, leading to accelerated heating of the glacier. Across the global cryosphere, permafrost temperatures continued to reach record highs at many high-latitude and mountain locations. In the high northern latitudes, the annual surface-air temperature across the Arctic was the fifth highest in the 123-year record. The seasonal Arctic minimum sea-ice extent, typically reached in September, was the 11th-smallest in the 43-year record; however, the amount of multiyear ice—ice that survives at least one summer melt season—remaining in the Arctic continued to decline. Since 2012, the Arctic has been nearly devoid of ice more than four years old. In Antarctica, an unusually large amount of snow and ice fell over the continent in 2022 due to several landfalling atmospheric rivers, which contributed to the highest annual surface mass balance, 15% to 16% above the 1991–2020 normal, since the start of two reanalyses records dating to 1980. It was the second-warmest year on record for all five of the long-term staffed weather stations on the Antarctic Peninsula. In East Antarctica, a heatwave event led to a new all-time record-high temperature of −9.4°C—44°C above the March average—on 18 March at Dome C. This was followed by the collapse of the critically unstable Conger Ice Shelf. More than 100 daily low sea-ice extent and sea-ice area records were set in 2022, including two new all-time annual record lows in net sea-ice extent and area in February. Across the world’s oceans, global mean sea level was record high for the 11th consecutive year, reaching 101.2 mm above the 1993 average when satellite altimetry measurements began, an increase of 3.3±0.7 over 2021. Globally-averaged ocean heat content was also record high in 2022, while the global sea-surface temperature was the sixth highest on record, equal with 2018. Approximately 58% of the ocean surface experienced at least one marine heatwave in 2022. In the Bay of Plenty, New Zealand’s longest continuous marine heatwave was recorded. A total of 85 named tropical storms were observed during the Northern and Southern Hemisphere storm seasons, close to the 1991–2020 average of 87. There were three Category 5 tropical cyclones across the globe—two in the western North Pacific and one in the North Atlantic. This was the fewest Category 5 storms globally since 2017. Globally, the accumulated cyclone energy was the lowest since reliable records began in 1981. Regardless, some storms caused massive damage. In the North Atlantic, Hurricane Fiona became the most intense and most destructive tropical or post-tropical cyclone in Atlantic Canada’s history, while major Hurricane Ian killed more than 100 people and became the third costliest disaster in the United States, causing damage estimated at $113 billion U.S. dollars. In the South Indian Ocean, Tropical Cyclone Batsirai dropped 2044 mm of rain at Commerson Crater in Réunion. The storm also impacted Madagascar, where 121 fatalities were reported. As is typical, some areas around the world were notably dry in 2022 and some were notably wet. In August, record high areas of land across the globe (6.2%) were experiencing extreme drought. Overall, 29% of land experienced moderate or worse categories of drought during the year. The largest drought footprint in the contiguous United States since 2012 (63%) was observed in late October. The record-breaking megadrought of central Chile continued in its 13th consecutive year, and 80-year record-low river levels in northern Argentina and Paraguay disrupted fluvial transport. In China, the Yangtze River reached record-low values. Much of equatorial eastern Africa had five consecutive below-normal rainy seasons by the end of 2022, with some areas receiving record-low precipitation totals for the year. This ongoing 2.5-year drought is the most extensive and persistent drought event in decades, and led to crop failure, millions of livestock deaths, water scarcity, and inflated prices for staple food items. In South Asia, Pakistan received around three times its normal volume of monsoon precipitation in August, with some regions receiving up to eight times their expected monthly totals. Resulting floods affected over 30 million people, caused over 1700 fatalities, led to major crop and property losses, and was recorded as one of the world’s costliest natural disasters of all time. Near Rio de Janeiro, Brazil, Petrópolis received 530 mm in 24 hours on 15 February, about

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Introduction
Date Crossref
01/09/2023
Éditeur
American Meteorological Society
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

NOAA National Environmental Satellite Data and Information ServiceNOAA National Centers for Environmental InformationAgence Nationale de l'Aviation Civile et de la MétéorologieEuropean Centre for Medium-Range Weather ForecastsEarth System Science Interdisciplinary CenterUniversity of Maryland, College ParkScripps Institution of OceanographyUniversity of California San DiegoNOAA National Centers for Environmental PredictionNOAA Climate Prediction CenterKawerakNational Meteorological ServiceUniversidad de Costa RicaNational Centre for Earth ObservationUniversity of ReadingCentro Nacional de Monitoramento e Alertas de Desastres NaturaisHampton UniversitySeychelles Fishing AuthorityInstitut National de Recherche pour l'Agriculture, l'Alimentation et l'EnvironnementUniversité Savoie Mont BlancOsaka Prefecture UniversityOsaka Metropolitan UniversityUniversity of BremenMet OfficeServicio Nacional de Meteorología e Hidrología del PerúConsejo Superior de Investigaciones CientíficasCentre d'Investigacions sobre DesertificacióNational Park ServiceFederal Office of Meteorology and Climatology MeteoSwissUniversidad Católica Nuestra Señora de la AsunciónUniversity of Colorado BoulderUniversity of Alaska FairbanksCooperative Institute for Research in Environmental SciencesRussian Academy of SciencesInstitute of GeographyInstitute of Global Climate and EcologyCentre National de la Recherche ScientifiqueUniversité de Versailles Saint-Quentin-en-YvelinesCommissariat à l'Énergie Atomique et aux Énergies AlternativesPontificial Catholic University of ValparaisoLaboratoire des Sciences du Climat et de l'EnvironnementArgentine Naval Hydrographic ServiceTemple UniversityKing Abdullah University of Science and TechnologyUniversity of MiamiUniversity of AndorraNorwegian Meteorological InstituteMétéo-FranceNorthern Arizona UniversityBiospherical Instruments (United States)Utah State UniversityNOAA Atlantic Oceanographic and Meteorological LaboratoriesDeutscher WetterdienstNorwegian Institute for Nature ResearchYork UniversityNational Oceanic and Atmospheric AdministrationNewcastle UniversitySlovak Hydrometeorological InstituteInstitut de physique du globe de ParisUniversité Paris CitéGoddard Space Flight CenterSorbonne UniversitéCenter for Climate and Resilience ResearchUniversity of ValparaísoNOAA National Weather Service Alaska RegionUniversity of Alabama in HuntsvilleUniversität HamburgNOAA National Weather ServiceLamont-Doherty Earth ObservatoryColumbia UniversityUniversity of the West IndiesDirección de Investigación y DesarrolloUniversity of WashingtonNOAA Pacific Marine Environmental LaboratoryMorgan State UniversityUniversity of South Florida St. PetersburgCollege of MarinWoods Hole Oceanographic InstitutionBureau of MeteorologyNOAA Chemical Sciences LaboratoryNanjing University of Information Science and TechnologyChinese Academy of SciencesInstitute of Atmospheric PhysicsEnvironment and Climate Change CanadaKorea Polar Research InstituteVictoria University of WellingtonInstituto Nacional de Pesquisas EspaciaisAtmospheric and Environmental ResearchDeutsches Zentrum für Luft- und Raumfahrt e. V. (DLR)British Antarctic SurveyNational Oceanography CentreLawrence Livermore National LaboratoryScience Systems and Applications (United States)Université Toulouse III - Paul SabatierUniversité Fédérale de Toulouse Midi-PyrénéesLaboratoire d’Études en Géophysique et Océanographie SpatialesInstitut de Recherche pour le DéveloppementCzech Hydrometeorological InstituteUniversity of ArizonaInstitut des Géosciences de l'EnvironnementUniversité Grenoble AlpesRoyal Meteorological Institute of BelgiumRoyal Netherlands Meteorological InstituteCentre National de Recherches MétéorologiquesUniversity of SaskatchewanUniversity of FribourgPortuguese Sea and Atmosphere InstituteNOAA Air Resources LaboratoryNorwegian Polar InstituteUniversität InnsbruckInstitució Catalana de Recerca i Estudis AvançatsUniversitat Politècnica de CatalunyaTU WienDanish Meteorological InstituteUniversity of GothenburgUniversity of Wisconsin–MadisonMax Planck Institute for BiogeochemistryUniversity of TorontoDirection de la Météorologie NationaleUniversity of VirginiaInstitut polytechnique de GrenobleRutgers, The State University of New JerseyTechnical University of MunichNational Institute of Water and Atmospheric ResearchGeological Survey of Denmark and GreenlandUniversity of LiègeOhio UniversityUniversity of LaplandCooperative Institute for Climate and SatellitesJet Propulsion LaboratoryAlaska Biological Research (United States)University of BathWoodland TrustThe University of QueenslandJoint Research CentreWorld Meteorological OrganizationForschungszentrum JülichPacific Northwest National LaboratoryUniversity of ViennaOld Dominion UniversityUniversity of East AngliaNational Centre for Atmospheric ScienceSwedish Meteorological and Hydrological InstituteForest ResearchUniversity of BirminghamAlfred-Wegener-Institut Helmholtz-Zentrum für Polar- und MeeresforschungETH ZurichRemote Sensing Systems (United States)NOAA Center for Satellite Applications and ResearchUniversity of TasmaniaAustralian Antarctic DivisionAustralian Research CouncilWoodwell Climate Research CenterMasaryk UniversityNorthwest Institute of Eco-Environment and ResourcesFinnish Meteorological InstituteJapan Meteorological AgencyMeteorological Research InstituteEuropean Organisation for the Exploitation of Meteorological SatellitesNorwegian Radiation and Nuclear Safety AuthorityNOAA Earth System Research LaboratoryUniversity of OsloUnited States Fish and Wildlife ServiceGraz University of TechnologyIran Meteorological OrganizationUniversity of GrazUniversity of Trinidad and TobagoHydrometeorological Research Centre of Russian FederationKorea Meteorological AdministrationColorado State UniversityGhent UniversityAll Russian Research Institute of Hydrometeorological information World Data CenterUniversity of KonstanzSouth African Weather ServiceDundalk Institute of TechnologyEstonian University of Life SciencesPrinceton UniversityHungarian Meteorological ServiceFlanders Marine InstituteMarshall Space Flight CenterUniversity of Illinois Urbana-ChampaignMadison Area Technical CollegeHong Kong ObservatoryIthaca CollegeUniversity of Cape TownInternational Geographical UnionCroatian Meteorological and Hydrological ServiceNational Taiwan UniversityMassachusetts Institute of TechnologyLangley Research CenterUniversity of Hawaii SystemUK Centre for Ecology & HydrologyUniversity of St AndrewsCentre d'Études Spatiales de la BiosphèreUniversity of Newcastle AustraliaGoddard Institute for Space StudiesNorthwest Research AssociatesLithuanian Ornithological SocietyAustralian Centre for Excellence in Antarctic ScienceNational Institute for Environmental StudiesUniversity of Nevada, RenoMarine Biological LaboratoryCommonwealth Scientific and Industrial Research OrganisationNorth Carolina Agricultural and Technical State UniversityUnited States Geological SurveyMeteorological Service SingaporeUniversidad Mayor de San AndrésUniversity of GeorgiaTechnická univerzita vo ZvolenePhysikalisch-Meteorologisches Observatorium DavosGeorge Washington UniversityHarvard UniversityDana-Farber/Harvard Cancer CenterAmes Research CenterNASA Research ParkBay Area Environmental Research InstituteNichols CollegeIcelandic Meteorological OfficeWellington City CouncilGreater Wellington Regional CouncilUniversity of SheffieldUppsala UniversityAgenzia Regionale per la Protezione Ambientale del PiemonteUniversity at Buffalo, State University of New YorkTel Aviv UniversityFinnish Environment InstituteUniversity of Hawaiʻi at MānoaMinistry of Earth SciencesNSF National Center for Atmospheric ResearchUniversity of California, Los AngelesNORCE Research ASAgencia Estatal de MeteorologíaEarth Cryosphere InstituteLaboratoire d'Océanographie et du Climat : Expérimentations et Approches NumériquesPhilipps University of MarburgHumboldt-Universität zu BerlinIrkutsk State UniversitySwiss Academy of SciencesIndia Meteorological DepartmentGuyra ParaguayInnsbruck Medical UniversityLaboratoire d’Océanographie de VillefrancheSwiss Federal Institute of Aquatic Science and TechnologyNorth Carolina State UniversityNortheastern UniversityBrookhaven National LaboratoryMeteorological, Climatological, And Geophysical AgencyAlaska Sea GrantUniversity of New HampshireArctic and Antarctic Research InstituteUniversity of California, Santa BarbaraNatural Resources CanadaGeological Survey of CanadaUniversidade Federal do ParáPoznań University of Life SciencesFlorida State UniversityMet ÉireannInstitute of Arctic and Alpine ResearchUniversity of Maryland, Baltimore CountyNILUNOAA Center for Operational Oceanographic Products & ServicesUniversity of AlbertaCalifornia Institute of TechnologyYale UniversityAristotle University of ThessalonikiState Hydrometeorological ServiceUniversidade de Santiago de CompostelaCaribbean Disaster Emergency Management AgencyPennsylvania State UniversityWageningen University & ResearchPacific International Center for High Technology ResearchGeorgia Institute of TechnologyUniversity of ZurichOregon State UniversityMississippi State UniversityBangor UniversityStony Brook UniversitySouthern University of Science and TechnologyBeijing Climate Center

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Atmospheric and Environmental Gas Dynamics

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