{
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    "title": "Hurricane Matthew Rainfall Totals",
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            "description": "In 2016, Hurricane Matthew was a very powerful, long-lived and deadly tropical cyclone that became the first Category 5 Atlantic hurricane since Hurricane Felix in 2007. The storm travelled across the Western Atlantic, including parts of Haiti, Cuba, Dominican Republic and Lucayan Archipelago, the southeastern United States, and the Canadian Maritimes. \r\rThis visualization shows the amount of rainfall dropped by Hurricane Matthew over the life and track of the storm from September 28 – October 10, 2016, using the global Integrated Multi-satellite Retrievals from GPM (IMERG) precipitation dataset. Hurricane Matthew’s interaction with a frontal boundary caused extreme rainfall in North Carolina resulting in over 20 inches (508 mm) of rain being reported in some locations. The area was already saturated before Hurricane Matthew arrived. Heavy rainfall from a slow moving low and frontal system moved through during the last week of September. Maximum rainfall total estimates for the real-time IMERG product have been adjusted to reflect observed values.\r\rThe global IMERG precipitation dataset provides rainfall rates for the entire world every 30 minutes. IMERG is derived using data from the Global Precipitation Measurement (GPM) mission—a network of international satellites including the GPM Core Observatory.",
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            "title": "For More Information",
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            "description": "See [http://www.nasa.gov/feature/goddard/2016/matthew-atlantic-ocean](http://www.nasa.gov/feature/goddard/2016/matthew-atlantic-ocean)",
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                    "name": "Marit Jentoft-Nilsen",
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                "alt_text": "Global tour of Earth - stopping off at 10 different spots to highlight significant precipitation events that GPM has covered over the past 10 years. These events include the 2014 Indian Monsoons, Hurricane Kilo in 2015, Hurricane Matthew in 2016, Hurricane Harvey in 2017, the Snow Bomb Cyclone in 2018, Hurricane Dorian in 2019, Hurricane Laura in 2020, El Nino/La Nina in 2021, Australian floods in 2022, Cyclone Freddy in 2023, and the IMERG monthly climatology data product produced in 2024. ",
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        {
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            "page_type": "Visualization",
            "title": "NASA Studies Hurricane Matthew",
            "description": "This data visualization follows Hurricane Matthew throughout its destructive run in the Caribbean and Southeast U.S. coast. By utilizing different data sets from NOAA's GOES satellite, NASA/JAXA's GPM, MERRA-2 model runs, IMERG, Goddard's soil moisture product, and sea surface temperatures, scientists are able to put together a clearer picture of how this hurricane quickly intensified and eventually weakened. || matthew_narrated_v106.5800_print.jpg (1024x576) [189.6 KB] || matthew_narrated_v106.5800_searchweb.png (320x180) [114.8 KB] || matthew_narrated_v106.5800_thm.png (80x40) [7.8 KB] || matthew (1920x1080) [0 Item(s)] || matthew_narrated_v106.webm (1920x1080) [22.0 MB] || matthew_narrated_v106.mp4 (1920x1080) [140.5 MB] || 3840x2160_16x9_30p (3840x2160) [0 Item(s)] || matthew_narrated_v106_4k.mp4 (3840x2160) [443.1 MB] || matthew_narrated_nosound.hwshow || ",
            "release_date": "2017-07-31T00:00:00-04:00",
            "update_date": "2025-02-02T00:09:53.910126-05:00",
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                "id": 413735,
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                "media_type": "Image",
                "alt_text": "This data visualization follows Hurricane Matthew throughout its destructive run in the Caribbean and Southeast U.S. coast. By utilizing different data sets from NOAA's GOES satellite, NASA/JAXA's GPM, MERRA-2 model runs, IMERG, Goddard's soil moisture product, and sea surface temperatures, scientists are able to put together a clearer picture of how this hurricane quickly intensified and eventually weakened.",
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