{"id":10228,"date":"2017-11-23T00:00:00","date_gmt":"2017-11-23T00:00:00","guid":{"rendered":"https:\/\/www.mercator-ocean.eu\/ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model\/"},"modified":"2017-11-23T00:00:00","modified_gmt":"2017-11-23T00:00:00","slug":"ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model","status":"publish","type":"post","link":"https:\/\/www.mercator-ocean.eu\/fr\/actualites\/ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model\/","title":{"rendered":"IFOP hydrodynamic model to boost aquaculture using Mercator Ocean \/ CMEMS model"},"content":{"rendered":"<div style=\"margin-top: 0px; margin-bottom: 0px;\" class=\"sharethis-inline-share-buttons\" ><\/div><p><a href=\"https:\/\/www.ifop.cl\/en\/\" target=\"_blank\" rel=\"noopener noreferrer\"><img decoding=\"async\" class=\"wp-image-14900 alignleft\" src=\"https:\/\/www.mercator-ocean.eu\/wp-content\/uploads\/2017\/11\/2017-11-22-13_41_45-About-Us-_-Instituto-de-Fomento-Pesquero-300x100.png\" alt=\"IFOP\" width=\"180\" height=\"60\" \/><\/a>Chile is home to the world&rsquo;s largest\u00a0estuarine\u00a0system, it has some 80,000 km of coastline, and the country&rsquo;s economy depends on this fragile coastal ecosystem. It is\u00a0the world&rsquo;s second largest salmon producer, with around\u00a038% of the market share. Chile has been confronted with\u00a0ecosystem\u00a0challenges in terms of resources and changing\u00a0environmental patterns. For example last year, they had unprecedented algal blooms (red tides).<\/p>\n<p>&nbsp;<\/p>\n<p><img fetchpriority=\"high\" decoding=\"async\" class=\"size-medium wp-image-14898 alignright\" src=\"https:\/\/www.mercator-ocean.eu\/wp-content\/uploads\/2017\/11\/WhatsApp-Image-2017-11-22-at-11.42.47-300x225.jpeg\" alt=\"\" width=\"300\" height=\"225\" \/><a href=\"https:\/\/www.ifop.cl\/en\/\" target=\"_blank\" rel=\"noopener noreferrer\">Instituto de Fomento Pesquero<\/a>\u00a0(IFOP)\u00a0is a public institution in Chile, which\u00a0supports the sustainable development of the country\u2019s fishing &amp; aquaculture sector. It has developed\u00a0an oceanographic operational system for southern Chile that is used to better manage this ecosystem and its fishery \/ aquaculture activities. It includes near real-time monitoring and a hydrodynamic model that\u00a0delivers 72 hour forecasts of salinity, temperature, current, and sea level variables.\u00a0The complex model uses many inputs\u00a0such as atmospheric and freshwater variables to cover the\u00a0estuarine system. The ocean boundary conditions\u00a0 are fed by the <a href=\"https:\/\/www.mercator-ocean.eu\/en\/solutions-expertise\/customized-oceanographic-services\/\" target=\"_blank\" rel=\"noopener noreferrer\">Mercator Ocean<\/a> \/ <a href=\"http:\/\/marine.copernicus.eu\" target=\"_blank\" rel=\"noopener noreferrer\">Copernicus Marine Service<\/a> \u00a0<a href=\"http:\/\/marine.copernicus.eu\/services-portfolio\/access-to-products\/?option=com_csw&amp;task=results&amp;advancedsearch-geographical_area[]=advancedsearch-geographical_area-global-ocean\" target=\"_blank\" rel=\"noopener noreferrer\">global model<\/a>.<\/p>\n<p>\u00ab\u00a0This kind of meeting is important for Mercator Ocean,\u00a0 as it allow us to collaborate with experts all around the world . Their feedback on our systems and their knowledge within\u00a0their own regions, will allow us to improve our products, and hopefully become more useful for them,\u00a0\u00bb said Mercator Ocean oceanographer Julien Paul. Paul helped to forge the collaboration and arranged the meeting with the IFOP scientists at Mercator Ocean.<\/p>\n<p>The IFOP use case is an especially interesting example of how our ocean models have been used to create more focused, \u00a0high-resolution models to meet specific regional, policy, and\/or\u00a0business needs. In this case, it is applied to issues that directly support aquaculture\/fisheries and sustainable practices. Today, November 22, a group from IFOP came to Mercator Ocean to present their model and discuss with our team how Mercator Ocean \/ Copernicus Marine Service products can be further applied to meet their needs.<\/p>\n<h2>More detailed information released by IFOP team:<\/h2>\n Fig 1) Bathymetry used on MOSA domain\n<p>Since 2014, Instituto de Fomento Pesquero (IFOP) has initiated a program for the implementation of an operational system, whose main objective is to generate forecasts of oceanographic variables in the fjord and canal area of southern Chile. In this area aquaculture plays an important social and economical role, but lacks adequate environmental management. That is why this operational system in its first stage seeks to solve the local hydrodynamics, what will enable in the mid-term to couple it with biogeochemical modules. The operational model (hereinafter MOSA) is based on ROMS AGRIF. The domain has a horizontal resolution of ~ 1 km (<strong>Fig 1<\/strong>), arranged in 32 vertical sigma levels, while the digital elevation model that supports the domain\u00a0was built from nautical charts prepared by the Navy&rsquo;s Hydrographic and Oceanographic Service (SHOA), GEBCO bathymetry and other multibeam data sources from specific areas.\u00a0It is expected to host at least 2 nested domains, both of horizontal resolutions near 300 meters in the areas of Central Chiloe, and Aysen Region.<\/p>\n<p>Both boundary and initial conditions of mass and velocity fields are daily downloaded from the Mercator Ocean model and then downscalled to MOSA\u00b4s specific resolution. Tide conditions are constructed with the first 10 harmonic constituents obtained from TPX 07 for every boundary. The atmospheric forcing is solved from a WRF operational model built specifically for MOSA\u00b4s domain.\u00a0At this stage we use a 12 km horizontal resolution model, developed by the Chilean Meteorological Office (DMC), but we are currently implementing our own operational model based on WRF that will be able to reach up to 1 km of resolution (necessary to solve local patterns\u00a0of winds in the fjord area).\u00a0In order to introduce freshwater sources to the model, a variety of data sources were used, including climatologies obtained from monitoring stations of the General Water Directorate (DGA), as well as approximations obtained from the hydrological balance of DGA 1987 * for the most important rivers.<\/p>\n<p>&nbsp;<\/p>\n<p><img decoding=\"async\" class=\" wp-image-96566 alignright\" src=\"http:\/\/marine.copernicus.eu\/wp-content\/uploads\/2017\/11\/MOSA.png\" alt=\"MOSA\" width=\"352\" height=\"266\" \/>Model starts every day using as initial condition the mass field and velocities of the last state predicted the previous day, delivering forecasts for 72 hours of salinity temperature and currents every 1 hour.\u00a0These results will be presented in the upcoming portal www.chonos.org (under construction), where the user will be able to visualize and download environmental information through a diverse range tools, such as calculation of drift of passive particles, statistics of connectivity, etc.\u00a0The figure below shows the daily MOSA engine while Figure 3 presents the interface of the page currently under construction.<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: center;\">Page interface under construction that will display MOSA results (www.chonos.org)<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"wp-image-96567 aligncenter\" src=\"http:\/\/marine.copernicus.eu\/wp-content\/uploads\/2017\/11\/ROMS.png\" alt=\"ROMS\" width=\"885\" height=\"475\" \/><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Chile is home to the world&rsquo;s largest\u00a0estuarine\u00a0system, it has some 80,000 km of coastline, and the country&rsquo;s economy depends on this fragile coastal ecosystem. It is\u00a0the world&rsquo;s second largest salmon producer, with around\u00a038% of the market share. Chile has been confronted with\u00a0ecosystem\u00a0challenges in terms of resources and changing\u00a0environmental patterns. For example last year, they had [&hellip;]<\/p>\n","protected":false},"author":2,"featured_media":6722,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[37],"tags":[],"translation-status":[],"class_list":["post-10228","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-actualites"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.6 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>IFOP hydrodynamic model to boost aquaculture using Mercator Ocean \/ CMEMS model - Mercator Ocean International<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.mercator-ocean.eu\/fr\/actualites\/ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model\/\" \/>\n<meta property=\"og:locale\" content=\"fr_FR\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"IFOP hydrodynamic model to boost aquaculture using Mercator Ocean \/ CMEMS model - Mercator Ocean International\" \/>\n<meta property=\"og:description\" content=\"Chile is home to the world&rsquo;s largest\u00a0estuarine\u00a0system, it has some 80,000 km of coastline, and the country&rsquo;s economy depends on this fragile coastal ecosystem. It is\u00a0the world&rsquo;s second largest salmon producer, with around\u00a038% of the market share. Chile has been confronted with\u00a0ecosystem\u00a0challenges in terms of resources and changing\u00a0environmental patterns. For example last year, they had [&hellip;]\" \/>\n<meta property=\"og:url\" content=\"https:\/\/www.mercator-ocean.eu\/fr\/actualites\/ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model\/\" \/>\n<meta property=\"og:site_name\" content=\"Mercator Ocean International\" \/>\n<meta property=\"article:publisher\" content=\"https:\/\/www.facebook.com\/MercatorOcean\" \/>\n<meta property=\"article:published_time\" content=\"2017-11-23T00:00:00+00:00\" \/>\n<meta property=\"og:image\" content=\"https:\/\/www.mercator-ocean.eu\/wp-content\/uploads\/2024\/03\/ROMS.png\" \/>\n\t<meta property=\"og:image:width\" content=\"1439\" \/>\n\t<meta property=\"og:image:height\" content=\"772\" \/>\n\t<meta property=\"og:image:type\" content=\"image\/png\" \/>\n<meta name=\"author\" content=\"Damien Goubeau\" \/>\n<meta name=\"twitter:card\" content=\"summary_large_image\" \/>\n<meta name=\"twitter:creator\" content=\"@MercatorOcean\" \/>\n<meta name=\"twitter:site\" content=\"@MercatorOcean\" \/>\n<meta name=\"twitter:label1\" content=\"\u00c9crit par\" \/>\n\t<meta name=\"twitter:data1\" content=\"Damien Goubeau\" \/>\n\t<meta name=\"twitter:label2\" content=\"Dur\u00e9e de lecture estim\u00e9e\" \/>\n\t<meta name=\"twitter:data2\" content=\"4 minutes\" \/>\n<script type=\"application\/ld+json\" class=\"yoast-schema-graph\">{\"@context\":\"https:\\\/\\\/schema.org\",\"@graph\":[{\"@type\":\"Article\",\"@id\":\"https:\\\/\\\/www.mercator-ocean.eu\\\/fr\\\/actualites\\\/ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model\\\/#article\",\"isPartOf\":{\"@id\":\"https:\\\/\\\/www.mercator-ocean.eu\\\/fr\\\/actualites\\\/ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model\\\/\"},\"author\":{\"name\":\"Damien Goubeau\",\"@id\":\"https:\\\/\\\/www.mercator-ocean.eu\\\/fr\\\/#\\\/schema\\\/person\\\/8707759d6e2641e91ea76ae3fc537134\"},\"headline\":\"IFOP hydrodynamic model to boost aquaculture using Mercator Ocean \\\/ CMEMS model\",\"datePublished\":\"2017-11-23T00:00:00+00:00\",\"mainEntityOfPage\":{\"@id\":\"https:\\\/\\\/www.mercator-ocean.eu\\\/fr\\\/actualites\\\/ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model\\\/\"},\"wordCount\":777,\"commentCount\":0,\"publisher\":{\"@id\":\"https:\\\/\\\/www.mercator-ocean.eu\\\/fr\\\/#organization\"},\"image\":{\"@id\":\"https:\\\/\\\/www.mercator-ocean.eu\\\/fr\\\/actualites\\\/ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model\\\/#primaryimage\"},\"thumbnailUrl\":\"https:\\\/\\\/www.mercator-ocean.eu\\\/wp-content\\\/uploads\\\/2024\\\/03\\\/ROMS.png\",\"articleSection\":[\"Actualit\u00e9s\"],\"inLanguage\":\"fr-FR\",\"potentialAction\":[{\"@type\":\"CommentAction\",\"name\":\"Comment\",\"target\":[\"https:\\\/\\\/www.mercator-ocean.eu\\\/fr\\\/actualites\\\/ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model\\\/#respond\"]}]},{\"@type\":\"WebPage\",\"@id\":\"https:\\\/\\\/www.mercator-ocean.eu\\\/fr\\\/actualites\\\/ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model\\\/\",\"url\":\"https:\\\/\\\/www.mercator-ocean.eu\\\/fr\\\/actualites\\\/ifop-hydrodynamic-model-to-boost-aquaculture-using-mercator-ocean-model\\\/\",\"name\":\"IFOP hydrodynamic model to boost aquaculture using Mercator Ocean \\\/ CMEMS model - 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