  {"id":132875,"date":"2020-12-22T08:00:12","date_gmt":"2020-12-22T18:00:12","guid":{"rendered":"https:\/\/www.hawaii.edu\/news\/?p=132875"},"modified":"2020-12-21T09:05:11","modified_gmt":"2020-12-21T19:05:11","slug":"doubling-tropical-cyclone-risk","status":"publish","type":"post","link":"https:\/\/www.hawaii.edu\/news\/2020\/12\/22\/doubling-tropical-cyclone-risk\/","title":{"rendered":"Doubling tropical cyclone risk to Hawai\u02bbi possible"},"content":{"rendered":"<span class=\"span-reading-time rt-reading-time\" style=\"display: block;\"><span class=\"rt-label rt-prefix\">Reading time: <\/span> <span class=\"rt-time\"> 2<\/span> <span class=\"rt-label rt-postfix\">minutes<\/span><\/span><figure id=\"attachment_132889\" aria-describedby=\"caption-attachment-132889\" style=\"width: 676px\" class=\"wp-caption alignright\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/www.hawaii.edu\/news\/wp-content\/uploads\/2020\/12\/manoa-soest-tropical-cyclones.jpg\" alt=\"tropical cyclones\" width=\"676\" height=\"381\" class=\"size-full wp-image-132889\" srcset=\"https:\/\/www.hawaii.edu\/news\/wp-content\/uploads\/2020\/12\/manoa-soest-tropical-cyclones.jpg 676w, https:\/\/www.hawaii.edu\/news\/wp-content\/uploads\/2020\/12\/manoa-soest-tropical-cyclones-300x169.jpg 300w, https:\/\/www.hawaii.edu\/news\/wp-content\/uploads\/2020\/12\/manoa-soest-tropical-cyclones-130x73.jpg 130w\" sizes=\"auto, (max-width: 676px) 100vw, 676px\" \/><figcaption id=\"caption-attachment-132889\" class=\"wp-caption-text\">Four tropical cyclones in the Pacific Ocean, Sept. 2015. (Photo credit: NASA\/NOAA GOES Project.)<\/figcaption><\/figure>\n<p>Global warming will intensify landfalling tropical cyclones of a category three or higher in the Indian and Pacific Oceans, while suppressing the formation of weaker events. In <span aria-label=\"Hawaii,\">Âé¶¹´«Ã½,<\/span> model simulations show a doubling of the risk of landfalling tropical cyclones, if <abbr title=\"carbon dioxide\">CO2<\/abbr> concentrations double. That\u2019s according to a study published in <a href=\"https:\/\/advances.sciencemag.org\/content\/6\/51\/eabd5109?__cf_chl_jschl_tk__=3d35750979cec5431eea546090791fcbb9df2b2d-1608155685-0-AWQQLAA_yaXAbXa497HkzMunJ9ZSJS80azUquboFsI-wp4exWZmRlN1fX1U_HLUv-yzQQBVc5ehD4B5bY1XrbtJQ1SlgZzaRnIur10KVC2ymGiDs-Ytd1jCH-Uzj7Z1GIA-NN9jciWJJidrrM2TJK7Eojw36aFNk8Cc3GKKVgw1bfkxnWU26BdLaXXTx0h_utE1-4kdRYlMP69RC51bDS1VSvmMZi_hgiYkL3L5_bj5D3tNhFWsdTtKh3av_7g2xpkO7dKwlOplaq4HNU6PSXvrr_YEMiqSU_oWXAx1vjgVqkMeqtuHx7rY_QEq-IangiTJs40hJRO_g4h1-DbLC0eM\"><em>Science Advances<\/em><\/a> and co-authored by <strong>Malte Stuecker<\/strong>, assistant professor of <a href=\"http:\/\/www.soest.hawaii.edu\/oceanography\/\">oceanography<\/a> in the University of <span aria-label=\"Hawaii\">Âé¶¹´«Ã½<\/span> at M&#257;noa School of Ocean and Earth Science and Technology (<abbr>SOEST<\/abbr>).<\/p>\n<p>Tropical cyclones, including typhoons and hurricanes, are the most fatal and costliest weather disasters on our planet. But how tropical cyclones will change in response to global warming has long remained a mystery.<\/p>\n<p>To address this question, scientists for more than two decades have used the world\u2019s largest supercomputers to run climate model simulations that show important aspects of these destructive storms. However, until recently the computing power has been insufficient to capture both atmospheric details and resolve the full interaction with the ocean on a global scale.<\/p>\n<p>A team of scientists, led by researchers at South Korea\u2019s Institute for Basic Science (<abbr>IBS<\/abbr>) Center for Climate Physics (<abbr>ICCP<\/abbr>) at Pusan National University, recently completed one of the most computing-intensive and detailed global warming simulations to date using the supercomputer Aleph at <abbr>IBS<\/abbr>. The global climate model records small-scale atmospheric and oceanic processes with unprecedented resolution. The model also more accurately simulates ocean temperature than the previous generation of climate models.<\/p>\n<p>&ldquo;This improvement was important for a realistic simulation of typhoons in the Indian and Pacific Ocean,&rdquo; said Jung-Eun Chu, lead author of the study and a project leader at the <abbr>ICCP<\/abbr>.<\/p>\n<h2><span aria-label=\"Hawaii\">Âé¶¹´«Ã½<\/span> ocean temperatures fuel tropical cyclones<\/h2>\n<p>While tropical cyclone numbers are simulated to decrease in the deep tropics, the situation is slightly different for <span aria-label=\"Hawaii,\">Âé¶¹´«Ã½,<\/span> which is located at the edge of the tropics. <span aria-label=\"Hawaii\">Âé¶¹´«Ã½<\/span> is typically protected from tropical cyclones due strong northeasterly trade winds that flow in the opposite direction than the westerly winds aloft in the upper atmosphere. This so-called &ldquo;vertical wind shear&rdquo; normally tears tropical cyclones apart that approach the islands. In response to climate change, this wind shear is simulated to weaken and ocean temperatures are projected to warm near <span aria-label=\"Hawaii\">Âé¶¹´«Ã½<\/span>&#8212;fueling tropical cyclones.<\/p>\n<p>&ldquo;Our new model simulations show an approximate doubling of the risk of landfalling tropical cyclones in <span aria-label=\"Hawaii\">Âé¶¹´«Ã½<\/span> if <abbr>CO2<\/abbr> concentrations are doubled&rdquo; said Stuecker. &ldquo;Importantly, the impacts of landfalling tropical cyclones will be much more severe due to higher rainfall and increasing sea level. Flood risk and storm surge will be much intensified in coastal areas.&rdquo;<\/p>\n<p>For more information see <a href=\"https:\/\/www.soest.hawaii.edu\/soestwp\/announce\/news\/expect-fewer-but-more-destructive-landfalling-tropical-cyclones-in-future\/\"><abbr>SOEST<\/abbr>\u2019s website<\/a>.<\/p>\n<p><em>&#8212;By Marcie Grabowski<\/em><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Global warming will intensify landfalling tropical cyclones of category three or higher in the Indian and Pacific Oceans, while suppressing the formation of weaker 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