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These data are available at GHRC beginning in 2015. Hurricane and Severe Storm Sentinel (HS3) is an Earth Ventures – Suborbital 1 mission aimed at better understanding the physical processes that control hurricane intensity change, addressing questions related to the roles of environmental conditions and internal storm structures to storm intensification.Ī variety of in-situ, satellite observations, airborne data, meteorological analyses, and simulation data were collected with missions over the Atlantic in August and September of three observation years (2012, 2013, 2014).GHRC also hosts a database of Atlantic and Pacific tropical storm tracks derived from the storm data published by the National Hurricane Center (NHC).
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Field campaigns provide for intensive observation of specific phenomena using a variety of instruments on aircraft, satellites and surface networks. We are the archive and distribution center for data collected during HSRP field campaigns, as well as the recent Hurricane Science and Severe Storm Sentinel (HS3) Earth Venture mission. GHRC has worked with NASA's Hurricane Science Research Program (HSRP) since the 1990's.Long term atmospheric temperature records from satellites ground-based and airborne observations from satellites.Atmospheric winds and related measurements.Atmospheric water vapor and related measurements.Precipitation and related measurements.Lightning data from satellite, airborne and ground instruments.View the latest additions to our data holdings using HyDRO.Earthdata is NASA's next generation metadata and service discovery tool, providing search and access capabilities for dataset holdings at all of the Distributed Active Archive Centers (DAACs) including the GHRC.HyDRO will also help you find information about browse imagery, access restrictions, and dataset guide documents. With HyDRO, you can search, discover, and filter GHRC's dataset holdings. HyDRO is GHRC's custom dataset search and order tool.View a list of all GHRC dataset holdings using our custom search tool, HyDRO.Want to dive deeper into our lightning data? You can click on the lightning reports below for the United States. Head over to Lightning Detection 101 to learn how we locate strikes and how our network works. Detecting in-cloud lightning enables us to generate faster, lightning alerts and warn of other forms of severe weather like tornadoes, downbursts and hail. Our ability to monitor in-cloud lightning sets us apart from other lightning networks by enabling the most complete lightning alert system. Total Lightning = Cloud-to-Ground strikes + In-Cloud strikes With 1,800+ sensors covering over 100 countries around the world, our network is the most extensive and technologically-advanced global lightning network. How do we detect lightning? Our Total Lightning Network™ is the first of its kind. Find out where they happened with this lightning map: Click To Tweet About Our U.S. The Earth Networks Total Lightning Network detected 19,020,340 cloud-to-ground lightning strikes in the U.S. What part of the United States saw the most lightning in 2019? Why do you think that is? (Hint: The answers are in our 2019 U.S.Which state saw the least cloud-to-ground lightning strikes in 2019?.Which state saw the most cloud-to-ground lightning strikes in 2019?.Now that you’ve seen the map, try to see if you can answer the following questions: