  {"id":55564,"date":"2017-01-30T11:10:06","date_gmt":"2017-01-30T21:10:06","guid":{"rendered":"http:\/\/www.hawaii.edu\/news\/?p=55564"},"modified":"2020-05-08T12:51:11","modified_gmt":"2020-05-08T22:51:11","slug":"new-ocean-observations-improve-understanding-of-motion","status":"publish","type":"post","link":"https:\/\/www.hawaii.edu\/news\/2017\/01\/30\/new-ocean-observations-improve-understanding-of-motion\/","title":{"rendered":"New ocean observations improve understanding of motion"},"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_55574\" aria-describedby=\"caption-attachment-55574\" style=\"width: 630px\" class=\"wp-caption alignleft\"><img loading=\"lazy\" decoding=\"async\" src=\"http:\/\/www.hawaii.edu\/news\/wp-content\/uploads\/2017\/01\/manoa-soest-ocean-circulation.jpg\" alt=\"\" width=\"620\" height=\"495\" class=\"size-full wp-image-55574\" srcset=\"https:\/\/www.hawaii.edu\/news\/wp-content\/uploads\/2017\/01\/manoa-soest-ocean-circulation.jpg 620w, https:\/\/www.hawaii.edu\/news\/wp-content\/uploads\/2017\/01\/manoa-soest-ocean-circulation-260x208.jpg 260w\" sizes=\"auto, (max-width: 620px) 100vw, 620px\" \/><figcaption id=\"caption-attachment-55574\" class=\"wp-caption-text\">Detailed circulation is calculated where eddies dominate&#8211;lee of Big Island. (Image courtesy of D Menemenlis, <abbr title=\"National Aeronautics and Space Administration - Jet Propulsion Laboratory\">NASA-JPL<\/abbr>)<\/figcaption><\/figure>\n<p class=\"clear-photo\">Oceanographers commonly calculate large scale surface ocean circulation from satellite sea level information using a concept called &ldquo;geostrophy,&rdquo; which describes the relationship between oceanic surface flows and sea level gradient. Conversely, researchers rely on data from in-water current meters to measure smaller scale motion. New research led by <a href=\"http:\/\/manoa.hawaii.edu\/\">University of <span aria-label=\"Hawaii\">Hawai&#699;i<\/span> at M&#257;noa<\/a> oceanographer <a href=\"http:\/\/www.soest.hawaii.edu\/oceanography\/bo\/\"><strong>Bo Qiu<\/strong><\/a> has determined from observational data the length scale at which using sea level height no longer offers a reliable calculation of circulation.<\/p>\n<p>Upper-ocean processes dissipate heat, transport nutrients and impact the uptake of carbon dioxide&#8212;making circulation a critical driver of biological activity in the ocean. The movement of water in the ocean is determined by many factors including tides; winds; surface waves; internal waves, those that propagate within the layers of the ocean; and differences in temperature, salinity or sea level height. Additionally, like high and low pressure systems seen on <abbr title=\"television\">TV<\/abbr> weather maps, the ocean is full of eddies, slowly swirling masses of water.<\/p>\n<h2>Developing a more detailed picture of circulation<\/h2>\n<p>&ldquo;As length scales become smaller from several hundred miles to a few tens of miles, we discovered the point at which geostrophic balance becomes no longer valid&#8212;meaning that sea level is no longer useful for calculating ocean circulation,&rdquo; said Qiu, a professor at the <abbr title=\"University of Hawaii\">糖心视频<\/abbr> M&#257;noa <a href=\"http:\/\/www.soest.hawaii.edu\">School of Ocean and Earth Science and Technology<\/a> and lead author of the study. &ldquo;That is due to the presence of oceanic internal wave motions which essentially disrupts the motion that would be caused by geostrophy.&rdquo;<\/p>\n<p>Scientists use sea level as a means to calculate ocean circulation because satellites circle Earth daily, acquiring sea level data frequently and accurately. Prior to this study published in <a href=\"http:\/\/www.nature.com\/articles\/ncomms14055\"><em>Nature Communications<\/em><\/a>, oceanographers knew that sea level can be used to provide a picture of circulation in a general way but not in very fine detail. However, the specific level of detail that can be provided using this approach was not known, until this study.<\/p>\n<h2>Higher resolution picture around eddies<\/h2>\n<p>Further, in areas of the ocean with persistent or frequent eddies, Qiu and co-authors from the Japan Meteorological Agency, Caltech and NASA Jet Propulsion Laboratory determined that sea level can reliably be used to calculate circulation at a fairly high resolution, that is, at fairly small length scales (resolution of 10 miles). However, in areas where motion is dominated by internal waves, satellite sea level can only be used to infer motion on a very large scale (resolution of 125 miles).<\/p>\n<p>&ldquo;This aspect of the study was a bit of a surprise,&rdquo; said Qiu. &ldquo;I didn&#8217;t anticipate that the transition point would vary by an order of magnitude within the western North Pacific.&rdquo;<\/p>\n<p>In the future, Qiu and colleagues hope to develop a mathematical approach to creating more detailed pictures of circulation based on sea level in more locations throughout the Pacific.<\/p>\n<p><em>&#8212;By Marcie Grabowski<\/em><\/p>\n","protected":false},"excerpt":{"rendered":"<p><abbr>糖心视频<\/abbr> M&#257;noa oceanographer Bo Qiu determined limitations of using sea level height to calculate ocean 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