{"id":166793,"date":"2021-01-29T19:46:11","date_gmt":"2021-01-29T16:46:11","guid":{"rendered":"https:\/\/en.buradabiliyorum.com\/yangtze-river-observational-system-to-improve-east-asian-rainy-season-forecasting\/"},"modified":"2021-01-29T19:46:11","modified_gmt":"2021-01-29T16:46:11","slug":"yangtze-river-observational-system-to-improve-east-asian-rainy-season-forecasting","status":"publish","type":"post","link":"https:\/\/buradabiliyorum.com\/en\/yangtze-river-observational-system-to-improve-east-asian-rainy-season-forecasting\/","title":{"rendered":"#Yangtze River observational system to improve East Asian rainy season forecasting"},"content":{"rendered":"<p>&#8220;<strong>#Yangtze River observational system to improve East Asian rainy season forecasting<\/strong>&#8221;<\/p>\n<div>\n<div class=\"article-gallery lightGallery\">\n<div data-thumb=\"https:\/\/scx1.b-cdn.net\/csz\/news\/tmb\/2019\/yangtzeriver.jpg\" data-src=\"https:\/\/scx2.b-cdn.net\/gfx\/news\/hires\/2019\/yangtzeriver.jpg\" data-sub-html=\"Credit: CC0 Public Domain\">\n<figure class=\"article-img\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/scx1.b-cdn.net\/csz\/news\/800a\/2019\/yangtzeriver.jpg\" alt=\"yangtze river\" title=\"Credit: CC0 Public Domain\" width=\"800\" height=\"530\"\/><figcaption class=\"text-darken text-low-up text-truncate-js text-truncate mt-3\">\n                Credit: CC0 Public Domain<br \/>\n            <\/figcaption><\/figure>\n<\/div>\n<\/div>\n<p>Researchers have completed the first ever multi-level hydrological tracking of the Yangtze River from the ground, air and space in order to investigate the properties of cloud formation during the mei-yu\u2014an intense rainy season that forms part of East Asia&#8217;s summer monsoon. The effort should permit greater understanding of the mei-yu precipitation process and thus enable much more accurate forecasts of this key meteorological phenomenon in the region.<\/p>\n<section class=\"article-banner first-banner ads-336x280\"><!-- \/4988204\/Phys_Story_InText_Box --><br \/>\n      <\/section>\n<p>The mei-yu, also known as the &#8216;Plum Rain,&#8217; is a period of severe, concentrated rainfall that lasts for up to two months during the late spring and early summer, covering mainland China, Taiwan, Japan and Korea.<\/p>\n<p>This intense weather phenomenon arises from interactions between systems of convection (transfer of heat within a fluid) at multiple, mid-range or mesoscale levels, ranging from 2-20 km up to 20-200 km. These are considered mesoscale because they develop at a larger level than microscale, or under 1 km-sized phenomena, such as small, fleeting, cloud &#8216;puffs,&#8217; but still smaller than synoptic scale phenomena over 1000 km such as cyclones.<\/p>\n<p>Conventional observations cannot deliver the detailed spatial and temporal variations that exist within such mid-ranking multi-scale convective systems. Nor can they describe their cloud structures or microphysical processes and properties. As a result, researchers with the Hubei Key Laboratory for Heavy Rain Monitoring and Warning Research, at the China Meteorological Administration&#8217;s Institute of Heavy Rain, organized an ambitious monitoring effort that itself works at multiple levels along the middle and lower reaches of the Yangtze River.<\/p>\n<p>The Integrative Monsoon Frontal Rainfall Experiment (IMFRE-II) took place during ten heavy rainfall events of the 2020 mei-yu and employed ground-based, airborne and satellite observations.<\/p>\n<p>&#8220;Last year&#8217;s mei-yu was a particularly extreme one that broke records,&#8221; said meteorologist Chunguang Cui, lead author of the study, published on Jan 5 in the journal <i>Advances in Atmospheric Physics <\/i>. It lasted 44 days, some 19 days longer than average\u2014the eighth longest mei-yu since 1951, at a greater than normal intensity, and over a larger area. &#8220;This was a gift in terms of the data we were able to gather.&#8221;<\/p>\n<p>The campaign involved the use of seven aircraft flights measuring various attributes of ice particles, cloud droplets and raindrops at various altitudes, as well as seven ground-based observation systems and global precipitation measurement (GPM) satellites.<\/p>\n<p>IMFRE-II followed on from IMFRE-I, which was conducted in 2018 over the middle reaches of the Yangtze. In 2022, the researchers hope to carry out a third such effort.<\/p>\n<p>In combination, the three field campaigns will allow the researchers to investigate the microphysical properties of clouds and precipitation in a mei-yu, and significantly improve the computer models describing how the mei-yu system forms and later disperses. This will in turn give a big boost to the accuracy of mei-yu forecasts, of enormous benefit to the agricultural sector and flood protection planning.<\/p>\n<hr\/>\n<div class=\"article-main__explore my-4 d-print-none\">\n<p>                                            Raindrop size distributions vary across seasons and rain types\n                                        <\/p><\/div>\n<hr class=\"mb-4\"\/>\n<div class=\"article-main__more p-4\">\n                                                                                                <strong>More information:<\/strong><br \/>\n                                                Chunguang Cui et al, Phase Two of the Integrative Monsoon Frontal Rainfall Experiment (IMFRE-II) over the Middle and Lower Reaches of the Yangtze River in 2020, <i>Advances in Atmospheric <a href=\"https:\/\/buradabiliyorum.com\/en\/category\/sciencee\/\" data-internallinksmanager029f6b8e52c=\"5\" title=\"Science\" target=\"_blank\" rel=\"noopener\">Science<\/a>s<\/i> (2021).  <a rel=\"nofollow noopener\" target=\"_blank\" data-doi=\"1\" href=\"http:\/\/dx.doi.org\/10.1007\/s00376-020-0262-9\">DOI: 10.1007\/s00376-020-0262-9<\/a><\/p><\/div>\n<div class=\"d-inline-block text-medium my-4\">\n                                                Provided by<br \/>\n                                                                                                    Chinese Academy of Sciences<br \/>\n                                                                                                        <a rel=\"nofollow noopener\" target=\"_blank\" class=\"icon_open\" href=\"http:\/\/www.cas.ac.cn\/\"><br \/>\n                                                        <svg><use href=\"https:\/\/phys.b-cdn.net\/tmpl\/v6\/img\/svg\/sprite.svg#icon_open\" x=\"0\" y=\"0\"\/><\/svg><\/a><\/p><\/div>\n<p>                                        <!-- print only --><\/p>\n<div class=\"d-none d-print-block\">\n<p>                                                 <strong>Citation<\/strong>:<br \/>\n                                                 Yangtze River observational system to improve East Asian rainy season forecasting (2021, January 29)<br \/>\n                                                 retrieved 30 January 2021<br \/>\n                                                 from https:\/\/phys.org\/<a href=\"https:\/\/buradabiliyorum.com\/en\/category\/news\/\" data-internallinksmanager029f6b8e52c=\"2\" title=\"News\" target=\"_blank\" rel=\"noopener\">news<\/a>\/2021-01-yangtze-river-east-asian-rainy.html<\/p>\n<p>                                            This document is subject to copyright. 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