{"id":546102,"date":"2022-11-01T19:59:22","date_gmt":"2022-11-02T02:59:22","guid":{"rendered":"https:\/\/www.esri.com\/about\/newsroom\/?post_type=arcnews&#038;p=546102"},"modified":"2022-10-28T09:20:32","modified_gmt":"2022-10-28T16:20:32","slug":"an-inspiring-journey-to-map-the-deepest-part-of-the-ocean","status":"publish","type":"arcnews","link":"https:\/\/www.esri.com\/about\/newsroom\/arcnews\/an-inspiring-journey-to-map-the-deepest-part-of-the-ocean","title":{"rendered":"An Inspiring Journey to Map the Deepest Part of the Ocean"},"author":5752,"featured_media":0,"menu_order":0,"template":"","format":"standard","meta":{"_acf_changed":false,"sync_status":"","episode_type":"","audio_file":"","podmotor_file_id":"","podmotor_episode_id":"","castos_file_data":"","cover_image":"","cover_image_id":"","duration":"","filesize":"","filesize_raw":"","date_recorded":"","explicit":"","block":"","itunes_episode_number":"","itunes_title":"","itunes_season_number":"","itunes_episode_type":"","_links_to":"","_links_to_target":""},"categories":[463771,15412,457141],"tags":[341402,271,1721,138062,374922],"arcnews_issues":[481982],"class_list":["post-546102","arcnews","type-arcnews","status-publish","format-standard","hentry","category-climate-change","category-oceans","category-scientific-currents","tag-gis-and-science","tag-mapping","tag-ocean-exploration","tag-science","tag-seafloor-mapping","arcnews_issues-fall-2022","arcnews_sections-gis-people"],"acf":{"short_description":"Esri\u2019s chief scientist became the first person of African descent to dive to Challenger Deep, where she surveyed its Western Pool.","pdf":{"host_remotely":false,"file":"","file_url":""},"flexible_content":[{"acf_fc_layout":"content","content":"On a warming planet, understanding the ocean is more critical than ever. Not only does the ocean cover almost three-quarters of the surface of the earth, it also absorbs 90 percent of the world\u2019s excess heat and 25 percent of its carbon dioxide. This means that the ocean is buying humans and other species valuable time. But how much, and at what cost, is unknown.\r\n\r\nLike the rest of the planet, the ocean is in peril. Climate change, overfishing, and ocean acidification are jeopardizing the health of marine ecosystems. Loss of biodiversity and the destruction of coral reefs threaten the ocean\u2019s ability to provide food and sustainable livelihoods to millions of people."},{"acf_fc_layout":"image","image":545002,"image_position":"right","orientation":"horizontal","hyperlink":""},{"acf_fc_layout":"content","content":"To understand what\u2019s happening to the ocean and, in turn, how this affects the rest of the earth, humans need comprehensive maps of the ocean. Yet there are more detailed maps of the surface of Mars than there are of Earth\u2019s ocean floor. To date, only 23.4 percent of the ocean floor has been mapped to modern standards, and we need to get to 100 percent to more fully use and protect the ocean\u2019s resources and uncover clues about what climate change might do to the rest of the planet.\r\n\r\nPart of the reason for this disparity stems from differences in technology. To map other planets, scientists use electromagnetic energy, which easily travels through Earth\u2019s atmosphere and space but not through water. Because Earth is a water planet, and given how well acoustic (sound) energy travels through water\u2014think about the calls of marine mammals\u2014this is the best type of energy to use to map the ocean floor. Gathering data from acoustic instrumentation, however, takes much longer than it does with satellite or airborne remote sensing technology.\r\n\r\nThere are two ways that acoustic instrumentation is deployed: either at the surface of the ocean, in large arrays from the bottoms of ships and surface drones; or closer to the ocean floor, in portable arrays from deep-diving drones and submersibles. There are also two ways that acoustic energy is used: to measure the travel time of sound pulses to and from the ocean floor, which returns depths (bathymetry), or to measure the intensity of those sound pulses as they return, which yields backscatter imagery of the seafloor (akin to a hillshade or an aerial photograph). The instruments deployed at the surface of the ocean can already provide very good maps of the ocean floor. But maps of certain places still need more intricate detail\u2014hence the higher-resolution mapping from deep-diving drones and submersibles."},{"acf_fc_layout":"image","image":545012,"image_position":"left","orientation":"horizontal","hyperlink":""},{"acf_fc_layout":"content","content":"On July 12, 2022, I took part in an expedition with ocean research company Caladan Oceanic to dive with its founder, undersea explorer Victor Vescovo, to the deepest point on Earth: Challenger Deep, located in the Pacific Ocean\u2019s Mariana Trench near Guam. With Vescovo piloting the <em>Limiting Factor<\/em> submersible, the two of us descended 10,919 meters below the ocean\u2019s surface to the Western Pool of Challenger Deep. For our dive, the submersible was outfitted with a first-of-its-kind portable acoustic instrument for mapping the backscatter of the ocean floor. Normally, these types of portable instruments implode at 6,000 meters due to the intense pressures of the deep ocean, but our instrument was customized to operate at the greatest depths of the ocean\u2014that is, full ocean depth. We just needed to prove it. So as mission specialist, my primary duties during the dive were to operate this instrument and, together with Vescovo, conduct the first high-resolution backscatter survey of this part of Challenger Deep.\r\n\r\nDuring our ten-and-a-half-hour dive\u2014with two-and-a-half hours of visual observation and successful acoustic surveying on the bottom of the ocean\u2014Vescovo and I saw stunning evidence of where two tectonic plates collided; several deep-water marine species, including some striking anemones and amphipods; and, if you can believe it, a beer bottle. We must do better!"},{"acf_fc_layout":"image","image":545022,"image_position":"right","orientation":"horizontal","hyperlink":""},{"acf_fc_layout":"content","content":"In all, we collected nearly four terabytes of data that maritime scientists at Esri are currently processing using ArcGIS Pro and ArcGIS Image for ArcGIS Online. Among the many products we hope to release are the first high-resolution acoustic images of a portion of Challenger Deep\u2019s Western Pool, which will add to our knowledge of the geomorphology there and inform the design of future deep-diving portable acoustic instruments. When the data and maps are ready, they will be shared through ArcGIS Living Atlas of the World; through a series of ArcGIS StoryMaps stories; and with Seabed 2030, a joint project of the Nippon Foundation and the General Bathymetric Chart of the Oceans (GEBCO) that seeks to get 100 percent of the ocean floor mapped to modern standards by the end of the decade.\r\n\r\nMany firsts were achieved during this dive to the deep ocean floor, including this one: I became the first person of African descent (of any gender) to visit Challenger Deep. I hope that like many of my own heroes did for me\u2014including oceanographer Dr. Evan Forde, who in 1979 became the first Black person to complete a research dive in a submersible, and Dr. Mae Jemison, who in 1992 became the first African American woman to go to outer space\u2014this adventure will inspire young people, especially young Black people and early career academics and scientists, to live out their own dreams. Science, the oceans, and the earth will be the better for it."},{"acf_fc_layout":"sidebar","layout":"standard","image_reference":null,"image_reference_figure":"","spotlight_image":null,"section_title":"","spotlight_name":"","position":"Center","content":"Find out more about my dive to Challenger Deep by exploring the following resources:\r\n<ul>\r\n \t<li>See <a href=\"https:\/\/mappingthedeep-story.hub.arcgis.com\/\">photos from the dive<\/a> and get an idea of how I pre-pared for it. More resources will be added to this hub site as they become available.<\/li>\r\n \t<li>Learn why it\u2019s important to <a href=\"https:\/\/storymaps.arcgis.com\/stories\/efb2c2d295054b508dcfb61afe208682\">map the ocean floor<\/a>.<\/li>\r\n \t<li>Read about <a href=\"https:\/\/storymaps.arcgis.com\/collections\/0655edef77e14d9cac03d147c10aa988\">other expeditions<\/a> that Caladan Oceanic has undertaken to help increase understanding of the ocean.<\/li>\r\n \t<li>Discover how <a href=\"https:\/\/www.esri.com\/en-us\/about\/science\/initiatives\/ocean-science?rsource=https%3A%2F%2Flinks.esri.com%2Focean-science\">GIS is used in marine science<\/a>.<\/li>\r\n<\/ul>","snippet":""}],"references":null},"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v25.9 (Yoast SEO v25.9) - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>An Inspiring Journey to Map the Deepest Part of the Ocean | ArcNews | Fall 2022<\/title>\n<meta name=\"description\" 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