{ "id": 4135, "url": "https://nasaviz.gsfc.nasa.gov/4135/", "page_type": "Visualization", "title": "Five-Year Global Temperature Anomalies from 1880 to 2013", "description": "NASA scientists say 2013 tied with 2009 and 2006 for the seventh warmest year since 1880, continuing a long-term trend of rising global temperatures. With the exception of 1998, the 10 warmest years in the 134-year record all have occurred since 2000, with 2010 and 2005 ranking as the warmest years on record.NASA's Goddard Institute for Space Studies (GISS) in New York, which analyzes global surface temperatures on an ongoing basis, released an updated report Tuesday on temperatures around the globe in 2013. The comparison shows how Earth continues to experience temperatures warmer than those measured several decades ago. The average temperature in 2013 was 58.3 degrees Fahrenheit (14.6 degrees Celsius), which is 1.1 °F (0.6 °C) warmer than the mid-20th century baseline. The average global temperature has risen about 1.4 °F (0.8 °C) since 1880, according to the new analysis. Exact rankings for individual years are sensitive to data inputs and analysis methods.\"Long-term trends in surface temperatures are unusual and 2013 adds to the evidence for ongoing climate change,\" GISS climatologist Gavin Schmidt said. \"While one year or one season can be affected by random weather events, this analysis shows the necessity for continued, long-term monitoring.\"Scientists emphasize that weather patterns always will cause fluctuations in average temperatures from year to year, but the continued increases in greenhouse gas levels in Earth's atmosphere are driving a long-term rise in global temperatures. Each successive year will not necessarily be warmer than the year before, but with the current level of greenhouse gas emissions, scientists expect each successive decade to be warmer than the previous.Carbon dioxide is a greenhouse gas that traps heat and plays a major role in controlling changes to Earth's climate. It occurs naturally and also is emitted by the burning of fossil fuels for energy. Driven by increasing man-made emissions, the level of carbon dioxide in Earth's atmosphere presently is higher than at any time in the last 800,000 years. The carbon dioxide level in the atmosphere was about 285 parts per million in 1880, the first year in the GISS temperature record. By 1960, the atmospheric carbon dioxide concentration, measured at the National Oceanic and Atmospheric Administration's (NOAA) Mauna Loa Observatory in Hawaii, was about 315 parts per million. This measurement peaked last year at more than 400 parts per million.While the world experienced relatively warm temperatures in 2013, the continental United States experienced the 42nd warmest year on record, according to GISS analysis. For some other countries, such as Australia, 2013 was the hottest year on record.The temperature analysis produced at GISS is compiled from weather data from more than 1,000 meteorological stations around the world, satellite observations of sea-surface temperature, and Antarctic research station measurements, taking into account station history and urban heat island effects. Software is used to calculate the difference between surface temperature in a given month and the average temperature for the same place from 1951 to 1980. This three-decade period functions as a baseline for the analysis. It has been 38 years since the recording of a year of cooler than average temperatures.The GISS temperature record is one of several global temperature analyses, along with those produced by the Met Office Hadley Centre in the United Kingdom and NOAA's National Climatic Data Center in Asheville, N.C. These three primary records use slightly different methods, but overall, their trends show close agreement.Additional commentary on the 2013 temperature anomaly is provided by Dr. James Hansen of Columbia University at: http://www.columbia.edu/~jeh1/mailings/2014/20140121_Temperature2013.pdfThe GISTEMP analysis website is located at: http://data.giss.nasa.gov/gistemp/ || ", "release_date": "2014-01-21T00:00:00-05:00", "update_date": "2023-11-14T00:05:06.433374-05:00", "main_image": { "id": 459440, "url": "https://nasaviz.gsfc.nasa.gov/vis/a000000/a004100/a004135/GCM2013update_robinson_composite.0790.jpg", "filename": "GCM2013update_robinson_composite.0790.jpg", "media_type": "Image", "alt_text": "This color-coded map in Robinson projection displays a progression of changing global surface temperatures anomalies from 1880 through 2013. Higher than normal temperatures are shown in red and lower then normal temperatures are shown in blue.The final frame represents global temperature anomalies averaged from 2009 through 2013. ", "width": 1920, "height": 1080, "pixels": 2073600 }, "main_video": { "id": 459436, "url": "https://nasaviz.gsfc.nasa.gov/vis/a000000/a004100/a004135/GCM2013update_robinsonComposite.mp4", "filename": "GCM2013update_robinsonComposite.mp4", "media_type": "Movie", "alt_text": "This color-coded map in Robinson projection displays a progression of changing global surface temperatures anomalies from 1880 through 2013. Higher than normal temperatures are shown in red and lower then normal temperatures are shown in blue.The final frame represents global temperature anomalies averaged from 2009 through 2013. ", "width": 1920, "height": 1080, "pixels": 2073600 }, "progress": "Complete", "media_groups": [ { "id": 341986, "url": "https://nasaviz.gsfc.nasa.gov/4135/#media_group_341986", "widget": "Basic text with HTML", "title": "", "caption": "", "description": "NASA scientists say 2013 tied with 2009 and 2006 for the seventh warmest year since 1880, continuing a long-term trend of rising global temperatures. With the exception of 1998, the 10 warmest years in the 134-year record all have occurred since 2000, with 2010 and 2005 ranking as the warmest years on record.
NASA's Goddard Institute for Space Studies (GISS) in New York, which analyzes global surface temperatures on an ongoing basis, released an updated report Tuesday on temperatures around the globe in 2013. The comparison shows how Earth continues to experience temperatures warmer than those measured several decades ago. The average temperature in 2013 was 58.3 degrees Fahrenheit (14.6 degrees Celsius), which is 1.1 °F (0.6 °C) warmer than the mid-20th century baseline. The average global temperature has risen about 1.4 °F (0.8 °C) since 1880, according to the new analysis. Exact rankings for individual years are sensitive to data inputs and analysis methods.
\"Long-term trends in surface temperatures are unusual and 2013 adds to the evidence for ongoing climate change,\" GISS climatologist Gavin Schmidt said. \"While one year or one season can be affected by random weather events, this analysis shows the necessity for continued, long-term monitoring.\"
Scientists emphasize that weather patterns always will cause fluctuations in average temperatures from year to year, but the continued increases in greenhouse gas levels in Earth's atmosphere are driving a long-term rise in global temperatures. Each successive year will not necessarily be warmer than the year before, but with the current level of greenhouse gas emissions, scientists expect each successive decade to be warmer than the previous.
Carbon dioxide is a greenhouse gas that traps heat and plays a major role in controlling changes to Earth's climate. It occurs naturally and also is emitted by the burning of fossil fuels for energy. Driven by increasing man-made emissions, the level of carbon dioxide in Earth's atmosphere presently is higher than at any time in the last 800,000 years. The carbon dioxide level in the atmosphere was about 285 parts per million in 1880, the first year in the GISS temperature record. By 1960, the atmospheric carbon dioxide concentration, measured at the National Oceanic and Atmospheric Administration's (NOAA) Mauna Loa Observatory in Hawaii, was about 315 parts per million. This measurement peaked last year at more than 400 parts per million.
While the world experienced relatively warm temperatures in 2013, the continental United States experienced the 42nd warmest year on record, according to GISS analysis. For some other countries, such as Australia, 2013 was the hottest year on record.
The temperature analysis produced at GISS is compiled from weather data from more than 1,000 meteorological stations around the world, satellite observations of sea-surface temperature, and Antarctic research station measurements, taking into account station history and urban heat island effects. Software is used to calculate the difference between surface temperature in a given month and the average temperature for the same place from 1951 to 1980. This three-decade period functions as a baseline for the analysis. It has been 38 years since the recording of a year of cooler than average temperatures.
The GISS temperature record is one of several global temperature analyses, along with those produced by the Met Office Hadley Centre in the United Kingdom and NOAA's National Climatic Data Center in Asheville, N.C. These three primary records use slightly different methods, but overall, their trends show close agreement.
Additional commentary on the 2013 temperature anomaly is provided by Dr. James Hansen of Columbia University at: http://www.columbia.edu/~jeh1/mailings/2014/20140121_Temperature2013.pdf
The GISTEMP analysis website is located at: http://data.giss.nasa.gov/gistemp/", "items": [], "extra_data": {} }, { "id": 341987, "url": "https://nasaviz.gsfc.nasa.gov/4135/#media_group_341987", "widget": "Video player", "title": "", "caption": "", "description": "This color-coded map in Robinson projection displays a progression of changing global surface temperatures anomalies from 1880 through 2013. Higher than normal temperatures are shown in red and lower then normal temperatures are shown in blue.The final frame represents global temperature anomalies averaged from 2009 through 2013. 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Graphs and tables are updated around the middle of every month using current data files from NOAA GHCN v4 (meteorological stations) and ERSST v5 (ocean areas), combined as described in our publications [Hansen et al. (2010)](https://pubs.giss.nasa.gov/abs/ha00510u.html) and [Lenssen et al. (2019)](https://pubs.giss.nasa.gov/abs/le05800h.html).", "credit": "Lenssen, N., G. Schmidt, J. Hansen, M. Menne, A. Persin, R. Ruedy, and D. Zyss, 2019: [Improvements in the GISTEMP uncertainty model](https://pubs.giss.nasa.gov/abs/le05800h.html). J. Geophys. Res. 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With warmer temperatures and thinner, less resilient ice, the Arctic sea ice is on a downward trend.Here is the YouTube video. || ", "release_date": "2014-09-22T06:00:00-04:00", "update_date": "2023-05-03T13:50:32.451569-04:00", "main_image": { "id": 451691, "url": "https://nasaviz.gsfc.nasa.gov/vis/a010000/a011600/a011654/G2014-087-Arcticseaicemin2014_youtube_hq.00002_print.jpg", "filename": "G2014-087-Arcticseaicemin2014_youtube_hq.00002_print.jpg", "media_type": "Image", "alt_text": "For complete transcript, click here.", "width": 1024, "height": 576, "pixels": 589824 } }, { "id": 11627, "url": "https://nasaviz.gsfc.nasa.gov/11627/", "page_type": "Produced Video", "title": "Arctic Sea Ice Live Shot 2014", "description": "Canned Interviews and B-roll for Arctic Sea Ice 2014 live shot campaign. || ", "release_date": "2014-08-22T14:55:00-04:00", "update_date": "2023-05-03T13:50:38.869407-04:00", "main_image": { "id": 452571, "url": "https://nasaviz.gsfc.nasa.gov/vis/a010000/a011600/a011627/Screen_Shot_2014-08-22_at_12.33.14_AM.png", "filename": "Screen_Shot_2014-08-22_at_12.33.14_AM.png", "media_type": "Image", "alt_text": "Broll for sea ice live shot.", "width": 1261, "height": 710, "pixels": 895310 } }, { "id": 11508, "url": "https://nasaviz.gsfc.nasa.gov/11508/", "page_type": "Produced Video", "title": "GPM GMI First Light", "description": "On March 10, the Core Observatory passed over an extra-tropical cyclone about 1055 miles (1700 kilometers) due east of Japan's Honshu Island. 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Scientists analyze that data and then use it to calculate the light to heavy rain rates and falling snow within the storm. || ", "release_date": "2014-03-25T01:00:00-04:00", "update_date": "2023-11-14T00:18:57.115287-05:00", "main_image": { "id": 457054, "url": "https://nasaviz.gsfc.nasa.gov/vis/a010000/a011500/a011508/First_Light_Narr_v1_nasaportal_web.png", "filename": "First_Light_Narr_v1_nasaportal_web.png", "media_type": "Image", "alt_text": "Narrated video using the first light visualizations of the GPM GMI instrument.For complete transcript, click here.This video is also available on our YouTube channel.", "width": 320, "height": 180, "pixels": 57600 } }, { "id": 11509, "url": "https://nasaviz.gsfc.nasa.gov/11509/", "page_type": "Produced Video", "title": "GPM DPR First Light", "description": "Images and animation from the GPM DPR first light. || ", "release_date": "2014-03-25T01:00:00-04:00", "update_date": "2023-05-03T13:51:04.366697-04:00", "main_image": { "id": 457036, "url": "https://nasaviz.gsfc.nasa.gov/vis/a010000/a011500/a011509/GPM_DPR_first-light_final.1018_print.jpg", "filename": "GPM_DPR_first-light_final.1018_print.jpg", "media_type": "Image", "alt_text": "Credit: JAXAExtratropical cyclone in the Northwest Pacific observed by the Dual-frequency Precipitation Radar (DPR) on board the Global Precipitation Measurement (GPM) Core Observatory around 13:39Z on March 10th, 2014.", "width": 1280, "height": 720, "pixels": 921600 } }, { "id": 11444, "url": "https://nasaviz.gsfc.nasa.gov/11444/", "page_type": "Produced Video", "title": "It's Getting Warmer", "description": "With the coming and going of any given day's weather, it can be difficult to gauge how Earth’s climate is changing. 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Watch the video to see how global temperatures have changed from 1950 through 2013. || ", "release_date": "2014-01-23T00:00:00-05:00", "update_date": "2023-05-03T13:51:17.501520-04:00", "main_image": { "id": 458954, "url": "https://nasaviz.gsfc.nasa.gov/vis/a010000/a011400/a011444/c-1024.jpg", "filename": "c-1024.jpg", "media_type": "Image", "alt_text": "See six decades of global warming in less than 30 seconds.", "width": 1024, "height": 576, "pixels": 589824 } } ], "sources": [], "products": [], "newer_versions": [ { "id": 5060, "url": "https://nasaviz.gsfc.nasa.gov/5060/", "page_type": "Visualization", "title": "Global Temperature Anomalies from 1880 to 2022", "description": "This color-coded map in Robinson projection displays a progression of changing global surface temperature anomalies. Normal temperatures are shown in white. Higher than normal temperatures are shown in red and lower than normal temperatures are shown in blue. 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Scale in degrees Fahrenheit. || 2021f-TemperatureAnomalyF.0900_print.jpg (1024x576) [164.1 KB] || 2021f-TemperatureAnomalyF.0900_searchweb.png (180x320) [74.9 KB] || 2021f-TemperatureAnomalyF.0900_thm.png (80x40) [14.4 KB] || 2021f-TemperatureAnomalyF.0900.tif (1920x1080) [1.6 MB] || 2021GISStempF-5yrAvg.mp4 (1920x1080) [41.1 MB] || frames/1920x1080_16x9_30p/fahrenheit/ (1920x1080) [64.0 KB] || 2021GISStempF-5yrAvg.webm (1920x1080) [3.4 MB] || ", "release_date": "2022-01-13T00:00:00-05:00", "update_date": "2024-03-24T00:13:44.088816-04:00", "main_image": { "id": 373796, "url": "https://nasaviz.gsfc.nasa.gov/vis/a000000/a004900/a004964/2021f-TemperatureAnomalyF.0900_print.jpg", "filename": "2021f-TemperatureAnomalyF.0900_print.jpg", "media_type": "Image", "alt_text": "This color-coded map in Robinson projection displays a progression of changing global surface temperature anomalies. Normal temperatures are shown in white. 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Higher than normal temperatures are shown in red and lower than normal temperatures are shown in blue. The final frame represents the 5 year global temperature anomalies from 2016-2020. Scale in degrees Celsius. || print_cel2020_00000_print.jpg (1024x576) [184.6 KB] || print_cel2020_00000_searchweb.png (320x180) [71.3 KB] || print_cel2020_00000_thm.png (80x40) [6.5 KB] || GISSTEMP_celsius_fade_composite.mp4 (1920x1080) [69.1 MB] || GISSTEMP_celsius_fade_composite.webm (1920x1080) [3.4 MB] || print_cel2020_00000.tif (3840x2160) [23.7 MB] || ", "release_date": "2021-01-14T11:00:00-05:00", "update_date": "2024-01-31T00:13:51.850767-05:00", "main_image": { "id": 380257, "url": "https://nasaviz.gsfc.nasa.gov/vis/a000000/a004800/a004882/print_cel2020_00000_print.jpg", "filename": "print_cel2020_00000_print.jpg", "media_type": "Image", "alt_text": "This color-coded map in Robinson projection displays a progression of changing global surface temperature anomalies. 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Scale in degrees Celsius. || CelsiusRobinson_0889_print.jpg (1024x576) [111.8 KB] || CelsiusRobinson_0889_searchweb.png (320x180) [79.4 KB] || CelsiusRobinson_0889_thm.png (80x40) [7.1 KB] || CelsiusRobinson2019update_1080p30.mp4 (1920x1080) [19.0 MB] || frames/1920x1080_16x9_30p/RobinsonCelsiusSequenceComposite/ (1920x1080) [64.0 KB] || CelsiusRobinson2019update_1080p30.webm (1920x1080) [3.7 MB] || frames/3840x2160_16x9_30p/Celsius_UHD_composite/ (3840x2160) [64.0 KB] || GISSTEMP2019_Celsius_UHD_2160p30.mp4 (3840x2160) [69.3 MB] || ", "release_date": "2020-01-15T11:00:00-05:00", "update_date": "2023-11-15T00:14:25.235206-05:00", "main_image": { "id": 387991, "url": "https://nasaviz.gsfc.nasa.gov/vis/a000000/a004700/a004787/CelsiusRobinson_0889_print.jpg", "filename": "CelsiusRobinson_0889_print.jpg", "media_type": "Image", "alt_text": "This color-coded map in Robinson projection displays a progression of changing global surface temperature anomalies. 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