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<title>ESA Hydrology TEP</title><meta data-n-head="ssr" data-hid="description" name="description" content="Hydrology services in a cloud‑based collaborative platform."><meta data-n-head="ssr" name="viewport" content="width=device-width,initial-scale=1"><meta data-n-head="ssr" charset="utf-8"><link data-n-head="ssr" rel="icon" href="/guest/htep-favicon.png" type="image/png"><base href="/guest/"><link rel="preload" href="/guest/_nuxt/79921c0d78e928259d15.js" as="script"><link rel="preload" href="/guest/_nuxt/1d4f7d6570a20d7eb67d.js" as="script"><link rel="preload" href="/guest/_nuxt/90fb497d3fa502117f8c.js" as="script"><link rel="preload" href="/guest/_nuxt/72d5c0d13ae36964d952.js" as="script"><link rel="preload" href="/guest/_nuxt/ac0703649af43463946a.js" as="script"><style data-vue-ssr-id="4f857918:0 4aeb9021:0 a00c0960:0 447e8901:0 0f6dd49b:0 076be111:0 53bacd1f:0 17ba617e:0 abcc300a:0 21c3e626:0 16b4d082:0">/*! normalize.css v8.0.1 | MIT License | github.com/necolas/normalize.css */html{line-height:1.15;-webkit-text-size-adjust:100%}body{margin:0}main{display:block}h1{font-size:2em;margin:.67em 0}hr{box-sizing:content-box;height:0;overflow:visible}pre{font-family:monospace,monospace;font-size:1em}a{background-color:transparent}abbr[title]{border-bottom:none;text-decoration:underline;-webkit-text-decoration:underline dotted;text-decoration:underline dotted}b,strong{font-weight:bolder}code,kbd,samp{font-family:monospace,monospace;font-size:1em}small{font-size:80%}sub,sup{font-size:75%;line-height:0;position:relative;vertical-align:baseline}sub{bottom:-.25em}sup{top:-.5em}img{border-style:none}button,input,optgroup,select,textarea{font-family:inherit;font-size:100%;line-height:1.15;margin:0}button,input{overflow:visible}button,select{text-transform:none}[type=button],[type=reset],[type=submit],button{-webkit-appearance:button}[type=button]::-moz-focus-inner,[type=reset]::-moz-focus-inner,[type=submit]::-moz-focus-inner,button::-moz-focus-inner{border-style:none;padding:0}[type=button]:-moz-focusring,[type=reset]:-moz-focusring,[type=submit]:-moz-focusring,button:-moz-focusring{outline:1px dotted ButtonText}fieldset{padding:.35em .75em .625em}legend{box-sizing:border-box;color:inherit;display:table;max-width:100%;padding:0;white-space:normal}progress{vertical-align:baseline}textarea{overflow:auto}[type=checkbox],[type=radio]{box-sizing:border-box;padding:0}[type=number]::-webkit-inner-spin-button,[type=number]::-webkit-outer-spin-button{height:auto}[type=search]{-webkit-appearance:textfield;outline-offset:-2px}[type=search]::-webkit-search-decoration{-webkit-appearance:none}::-webkit-file-upload-button{-webkit-appearance:button;font:inherit}details{display:block}summary{display:list-item}[hidden],template{display:none}/*! 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<div data-server-rendered="true" id="__nuxt"><!----><div id="__layout"><div><header class="Topbar"><a href="/" class="Topbar__logo"><span class="Logo"><span class="Logo__shade">Hydrology</span> TEP </span></a> <div class="Topbar__links hidden-sm"><div class="Topbar__accountActions"><a href="/guest/support/" class="Topbar__login">
support
</a> <span class="Topbar__loginSeparator">|</span> <a href="/t2api/oauth" class="Topbar__login">
sign in
</a> <span class="Topbar__loginSeparator">|</span> <a href="/guest/register/?from=topbar" class="Topbar__login">
register
</a></div> <div class="Topbar__sections"><a href="/guest/about/" class="Topbar__section">
about
</a> <a href="/guest/pricing/" class="Topbar__section">
pricing
</a> <a href="/guest/services/" class="Topbar__section">
services
</a> <a href="/guest/communities/" class="Topbar__section">
communities
</a> <a href="/guest/news/" class="Topbar__section">
news
</a> <a href="/guest/quick-start/" class="Topbar__section">
quick start
</a></div></div> <span class="Topbar__menuToggle"><img src="data:image/svg+xml;base64,PHN2ZyB4bWxucz0iaHR0cDovL3d3dy53My5vcmcvMjAwMC9zdmciIHdpZHRoPSIyNCIgaGVpZ2h0PSIyNCIgdmlld0JveD0iMCAwIDI0IDI0Ij48cGF0aCBkPSJNMCAwaDI0djI0SDB6IiBmaWxsPSJub25lIi8+PHBhdGggZmlsbD0iYmxhY2siIGQ9Ik0zIDE4aDE4di0ySDN2MnptMC01aDE4di0ySDN2MnptMC03djJoMThWNkgzeiIvPjwvc3ZnPg=="></span></header> <div class="payload"><div class="Home"><div class="Home__lead box highlighted"><div class="Home__leadText"><h1>
Hydrology services in a cloud‑based collaborative platform.
</h1> <a href="/guest/register/?from=home" class="btn big Home__callToAction">
Get started
</a></div> <div><img src="/guest/_nuxt/img/dcc13fb.png"></div></div> <section class="Stories"><h1 class="low-box">
Hydrology TEP is being used for…
</h1> <div class="Stories__list"><a href="/guest/story/operating-a-flood-warning-system-in-west-africa/" class="Stories__storyWrapper"><div class="Stories__story" style="background-image:url(/guest/_nuxt/img/efb8059.jpg)"><span class="Stories__storyTitle">
Operating a flood warning system in West Africa
</span></div></a><a href="/guest/story/reporting-2030-sdg-set-by-un/" class="Stories__storyWrapper"><div class="Stories__story" style="background-image:url(/guest/_nuxt/img/974f828.jpg)"><span class="Stories__storyTitle">
Reporting the 2030 Sustainable Development Goals set by the UN
</span></div></a><a href="/guest/story/arctic-ocean/" class="Stories__storyWrapper"><div class="Stories__story" style="background-image:url(/guest/_nuxt/img/3fd311a.jpg)"><span class="Stories__storyTitle">
Analysing fresh water flow to the Arctic Ocean for scientists
</span></div></a></div></section> <section class="Services"><h1 class="Services__title">
Adapted geobrowser with specific parameters to make your work easier.
</h1> <div class="Services__list"><a href="/guest/service/flood-monitoring/" class="Services__itemWrapper"><div class="Services__item" style="background-image:url(/guest/_nuxt/img/4845e9d.jpg)"><div class="Services__itemText"><h2 class="Services__itemTitle">
Flood Monitoring
</h2> <p class="Services__itemDescription">
Monitoring, assess and inventor water resources in a cost-effective manner using Earth Observation data.
</p></div></div></a><a href="/guest/service/hydrological-modelling/" class="Services__itemWrapper"><div class="Services__item" style="background-image:url(/guest/_nuxt/img/88e386a.jpg)"><div class="Services__itemText"><h2 class="Services__itemTitle">
Hydrological Modelling
</h2> <p class="Services__itemDescription">
Upload your own hydrological model and/or their own input data to existing or new models.
</p></div></div></a><a href="/guest/service/water-quality/" class="Services__itemWrapper"><div class="Services__item" style="background-image:url(/guest/_nuxt/img/255f220.jpg)"><div class="Services__itemText"><h2 class="Services__itemTitle">
Water Quality
</h2> <p class="Services__itemDescription">
Key parameters of water quality measures such as chlorophyll-a, total suspended solids and colored dissolved organic matter based on organic absorption and surface water temperature.
</p></div></div></a><a href="/guest/service/water-level/" class="Services__itemWrapper"><div class="Services__item" style="background-image:url(/guest/_nuxt/img/1219342.jpg)"><div class="Services__itemText"><h2 class="Services__itemTitle">
Water Level
</h2> <p class="Services__itemDescription">
Water level time series referenced to geoid for lakes, rivers and reservoirs from Sentinel-3 and CryoSAT-2 altimeters.
</p></div></div></a><a href="/guest/service/arctic-inland-water-monitoring-and-forecast/" class="Services__itemWrapper"><div class="Services__item" style="background-image:url(/guest/_nuxt/img/19c5be3.jpg)"><div class="Services__itemText"><h2 class="Services__itemTitle">
Arctic Inland Water Monitoring and Forecast
</h2> <p class="Services__itemDescription">
Water level and hydrological modelling to monitor Arctic regions.
</p></div></div></a><a href="/guest/service/fanfar/" class="Services__itemWrapper"><div class="Services__item" style="background-image:url(/guest/_nuxt/img/8e85d72.jpg)"><div class="Services__itemText"><h2 class="Services__itemTitle">
FANFAR
</h2> <p class="Services__itemDescription">
Water-related applications such as hydrological modelling and water level for West Africa.
</p></div></div></a><a href="/guest/service/wois/" class="Services__itemWrapper"><div class="Services__item" style="background-image:url(/guest/_nuxt/img/acc61ef.jpg)"><div class="Services__itemText"><h2 class="Services__itemTitle">
Water Observation and Information System (WOIS)
</h2> <p class="Services__itemDescription">
Monitor, assess and inventory water resources in a cost-effective manner using Earth Observation data.
</p></div></div></a><a href="/guest/service/hasard-flood-mapping/" class="Services__itemWrapper"><div class="Services__item" style="background-image:url(/guest/_nuxt/img/445924e.jpg)"><div class="Services__itemText"><h2 class="Services__itemTitle">
SAR Based Flooded Area Detection (HASARD Flood Mapping)
</h2> <p class="Services__itemDescription">
Change detection-based flood mapping service to rapidly and automatically produce floodwater maps 'on demand'.
</p></div></div></a></div></section> <section class="Home__communities"><h1>Get inspired by our communities</h1> <p>
Users associate to share knowledge services or locations among others.
</p> <p>You can join or create a new community.</p> <a href="/guest/communities/" class="btn big shrinkable Home__callToAction">
Browse communities
</a></section></div></div> <footer class="Footer"><div class="Footer__identity">
Hydrology TEP
</div> <div class="Footer__links"><a href="/guest/support/" class="Footer__link">
Support
</a> <a href="https://docs.terradue.com/hydrology-tep/" target="_blank" class="Footer__link">
Documentation
</a> <a href="/guest/privacy/" class="Footer__link">
Privacy policy
</a> <a href="https://www.esa.int/" target="_blank" class="Footer__link">
ESA
</a></div> <div class="Footer__social"><a href="https://twitter.com/hydrotep" target="_blank"><div class="Footer__shareIcon"><?xml version="1.0" encoding="utf-8"?>
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</a></div> <!----> <!----></section></div></div></div><script>window.__NUXT__=function(e,a){return{layout:"default",data:[{stories:[{id:"operating-a-flood-warning-system-in-west-africa",title:"Operating a flood warning system in West Africa",body:"Floods are a growing concern in West Africa and they are projected to increase due to climate change. There is a great need for reliable access to operational flood forecasts and alerts, produced by a robust Information and Communication Technology (ICT) system, adapted to regional conditions and operated by West African institutions.\n\nThe FANFAR project, funded by the European Commission (EC) aims at building such a system. In this context, isardSAT's satellite-based water level products of the Niger River basin floodplain are sequentially assimilated into a hydrological model from the Swedish Meteorological and Hydrological Institute (SMHI) to generate river discharge return periods. These results are then used in SMHI’s flood forecasting and early-warning alert system in West Africa.\n\n![West Africa](story1-img.png)\n\nThe Hydrology TEP operates this flood warning system, by running isardSAT's satellite-based, global water level service. This water level service is well-suited to complement in-situ sensor networks. It can also be used as a proxy of streamflow, for model calibration and validation as well as for hydrologic data assimilation.\n\nFANFAR is providing reliable and timely access to flood forecasts and alerts through a range of distribution channels to ensure that the information reaches its target audience. These distribution channels include web visualisations, SMS, e-mail and Application Programming interfaces (API).\n",summaryImage:"Stories_Darfur_Sudan.jpg",rank:-30},{id:"reporting-2030-sdg-set-by-un",body:"In the frame of this use case, satellite-based water monitoring services for inland and coastal waters are provided for selected number of pilot areas of major interest defined by the user.\n\nThe aims of the different Thematic Exploitation Platforms are often complementary to the 2030 Sustainable Development Goals (SDG) set by the UN. For the Hydrology TEP, the most relevant goal is SDG 6, which aims at ensuring availability and sustainable management of water and sanitation for all (UN Water, 2018). \n\nIn order to track progress of SDG 6, a list of global indicators is defined. These should aid policy- and decision-makers in governmental agencies with the identification of challenges, opportunities, implementation, priority setting and progress monitoring. Hydrology TEP is positioned to play an important role in a country’s journey towards achieving SDG 6 by contributing with the monitoring of several global indicators.\n\nEOMAP has developed the SDG 6 portal that can be accessed at:\n[](url)http://sdg6-hydrology-tep.eu/\n\n![SDG portal screenshot](\nhttps://files.isardsat.co.uk/web-htep/HTEP-Stories_SDG6_portal.png)\n\n\n",title:"Reporting the 2030 Sustainable Development Goals set by the UN",summaryImage:"Stories_UN_Hungary.jpg",rank:-20},{id:"arctic-ocean",title:"Analysing fresh water flow to the Arctic Ocean for scientists",summaryImage:"Stories_Arctic.jpg",body:"The **Arctic Earth Observation Network** provides a basis for monitoring and analyzing fresh water flows as well as changes in the upstream hydrological regime of the Arctic Ocean.\n\n\n![](https://editorial.lobelia.earth:22105/web-files/stories-arctic-inside.png)\n\n\nBased on the HYPE model developed by the [Swedish Meteorological and Hydrological Institute (SMHI)](https://www.smhi.se/en), the [Arctic HYPE model](https://hypeweb.smhi.se/) provides river discharge analyses and forecasts. These results provided by the Arctic HYPE model can be improved by assimilating additional information on river discharge and river water level. This information about the water level measurements is obtained by [isardSAT](https://www.isardsat.cat/en/home/) by means of altimetry algorithms.\n\nFor this thematic app, a set of stations from the [Arctic-HYCOS observing system](https://hydrohub.wmo.int/en/projects/Arctic-HYCOS) that provide daily and monthly gauged river discharge data in the Arctic regions are used. Additionally, there is an operational processing of the Hydrology TEP water level service for virtual stations. These virtual stations are selected locations in which there are cross-sections of the Sentinel-3 satellite track and the Arctic rivers included in the Arctic HYPE model.\n\n ",rank:-10}],services:[{id:"flood-monitoring",name:"Flood Monitoring",summary:"Monitoring, assess and inventor water resources in a cost-effective manner using Earth Observation data. ",image:"Apps_floods.jpg",rank:0,body:"The Flood Monitoring service allows the detection and the analysis of large extent floods. \n\n\nThis thematic app provides:\n\n- The historical analysis of large floods events at medium resolution. The results that users can obtain have been refined with data from Sentinel-1 GRD and from the MODIS archive.\n\n- It is also possible to monitor floods and display a detailed mapping of the affected areas at high resolution. Results have been refined with data from Sentinel-1 and optical imagery.\n\n- The assessment of the water extent and floods evolution over time can be done by using basic statistics such as flood and water frequency maps, maximum floodable area and time series. Advanced temporal statistics can also be analysed by means of trends.\n\n\nThe Flood Monitoring service is currently available for 2 regions:\n\n- Niger River\n- Red River\n\n\nIn order to get started with the Flood Monitoring service, you can [read the documentation](https://docs.terradue.com/hydrology-tep/apps/fm.html) and the [service pricing](/guest/pricing#flood-monitoring).\n\n### Service specifications\n\n#### Outputs for Sentinel 1 SAR images Ground Range Detected (GRD)\n\n- Water masks\n- Reference mask\n- Water frequency maps\n- Flood maps\n- Flood frequency map\n- Maximum floodable area\n\n#### Outputs for Sentinel 2 Optical images\n\n- Water masks results refinement\n\n#### Outputs for ENVISAT ASAR\n\n- Historical analysis of floods (2003-2012) at medium resolution\n\n#### Outputs for MODIS archive\n\n- Results refinement of historical analysis of floods",developedBy:"altamira"},{id:"hydrological-modelling",name:"Hydrological Modelling",summary:"Upload your own hydrological model and/or their own input data to existing or new models. ",image:"Apps_hydrological_modelling.jpg",rank:10,developedBy:e,body:"The Hydrological Modelling service allows users to access the following data:\n\n- River discharge\n- Lake outflow\n- Land surface water balance components such as precipitation, evapotranspiration and soil moisture\n\nThis thematic app provides data from simulation of historical periods as well as short-term and seasonal forecasts.\n\nThe geographical area covered by the Hydrological Modelling thematic app is the domain of the Niger HYPE model that covers the Niger river basin.\n\nIn order to get started with the Hydrological Modelling service, you can [read the documentation](https://docs.terradue.com/hydrology-tep/apps/hm.html) and the [service pricing](/guest/pricing#hydrological-modelling).\n\n### Service specifications\n\n#### Inputs\n\n- Arctic-HYPE model data"},{id:"water-quality",rank:40,name:"Water Quality",summary:"Key parameters of water quality measures such as chlorophyll-a, total suspended solids and colored dissolved organic matter based on organic absorption and surface water temperature.",image:"Apps_water_quality.jpg",body:"The Water Quality thematic app provides key parameters of water quality measures, such as: chlorophyll-a, total suspended solids and colored dissolved organic matter based on organic absorption and surface water temperature.\n\nThis service has been generated by EOMAP’s proprietary water quality processor Modular Inversion and Processing system (MIP). This processor includes sensor independent state of the art algorithms for adjacency correction, coupled atmospheric in water retrieval considering all bidirectional aspects from extreme clean to extreme turbid case 2 waters in a physically correct approach.\n\nThe Water Quality service is currently available for 2 regions:\n\n- Niger River\n- Red River\n\nIn order to get started with the Water Quality service, you can [read the documentation](https://docs.terradue.com/hydrology-tep/apps/wq.html) and the [service pricing](/guest/pricing#water-quality).\n\n### Service specifications\n\n#### Sentinel 2 MSI L1C Outputs\n\nThe resolution of the outputs is of 10m\n\n- Chlorophyll-a (CHL)\n\n - GeoTiff 8bit, scaled and colored\n - GeoTiff 32bit, real values in μg/l\n - XML, metadata \n\n- Colored Dissolved Organic Matter (CDOM)\n\n - GeoTiff 8bit, scaled and colored\n - GeoTiff 32bit, real values in 1/m\n - XML, metadata\n\n- Total Suspended Solids/Matter (TSS/TSM)\n\n - GeoTiff 8bit, scaled and colored\n - Geotiff 32bit, real values in mg/l\n - XML, metadata \n\n- Secchi Disk Depth (SDD)\n - GeoTiff 8bit, scaled and colored\n - Geotiff 32bit, real values in m\n - XML, metadata\n\n- Harmful Algae Bloom Indicator (HAB)\n - GeoTiff 8bit, scaled and colored\n - Geotiff 32bit, real values\n - XML, metadata \n\n- Trophic State Index (TSC)\n - GeoTiff 8bit, scaled and colored\n - XML, metadata\n\n- Remote Sensing Reflectance (RRS)\n - GeoTiff 32bit multichannel Rrs (0+) in 1/sr\n - XML, metadata \n\n#### Landsat 8 Outputs\n\nThe resolution of outputs is of 30m\n\n- Chlorophyll-a (CHL)\n - GeoTiff 8bit, scaled and colored\n - GeoTiff 32 bit, real values in μg/l\n - XML, metadata \n\n- Colored Dissolved Organic Matter (CDOM)\n - GeoTiff 8 bit, scaled and colored\n - GeoTiff 32 bit, real values in 1/m\n - XML, metadata\n\n- Total Suspended Solids/Matter (TSS/TSM)\n - GeoTiff 8bit, scaled and colored\n - Geotiff 32bit, real values in mg/l\n - XML, metadata \n\n- Secchi Disk Depth (SDD)\n - GeoTiff 8bit, scaled and colored\n - Geotiff 32bit, real values in m\n - XML, metadata\n\n- Surface Water Temperature (SWT)\n - GeoTiff 8bit, scaled and colored\n - GeoTiff 32bit, real values in ºC\n - XML, metadata\n\n- Harmful Algae Bloom Indicator (HAB)\n - GeoTiff 8bit, scaled and colored\n - Geotiff 32bit, real values\n - XML, metadata \n\n- Trophic State Index (TSC)\n - GeoTiff 8bit, scaled and colored\n - XML, metadata \n\n- Remote Sensing Reflectance (RRS)\n - GeoTiff 32bit multichannel Rrs (0+) in 1/sr\n - XML, metadata \n\n\n",developedBy:"eomap"},{id:"water-level",rank:50,name:"Water Level",summary:"Water level time series referenced to geoid for lakes, rivers and reservoirs from Sentinel-3 and CryoSAT-2 altimeters.",image:"Apps_waterlevel.jpg",developedBy:a,body:"The Water Level thematic app provides water level time series referenced to geoid for lakes, rivers and reservoirs.\n\nData from altimeters of satellite missions such as Sentinel-3 are available. Radar altimeters are active sensors that use the ranging capability of radar to measure the surface height profile along the satellite track.\n \nThe Water Level service is currently available for 3 regions:\n\n- Niger River\n- Red River\n- Myanmar\n\nPlease [contact us](https://hydrology-tep.eu/guest/support/) in case you are interested in the water level service for another region not listed above. \n\nIn order to get started with the Water Level service you can [read the documentation](https://docs.terradue.com/hydrology-tep/) and the [service pricing](/guest/pricing#water-level).\n\n### Service specifications\n\n#### Inputs\n\n- Sentinel 3A and 3B\n- Saral-Altika\n- Jason 3\n\n#### Outputs\n\n- Water level time series at in situ stations\n- Water level time series at virtual stations\n\n"},{id:"arctic-inland-water-monitoring-and-forecast",rank:70,name:"Arctic Inland Water Monitoring and Forecast",summary:"Water level and hydrological modelling to monitor Arctic regions.",image:"arctic_service.jpg",body:"The Arctic Inland Water Monitoring and Forecast thematic app allows the operational processing of the Hydrology TEP water level service for areas located in the Arctic. These selected areas fulfill the following conditions:\n\n- A selection of suitable cross-sections of the Sentinel-3 satellite track\n\n- Arctic rivers included in the Arctic HYPE model\n\n\nThe aim of this service is to combine river discharge simulations from the Arctic HYPE model provided by SMHI with the Earth Observation (EO) water level data provided by isardSAT.\n\nTherefore, users of the communities interested in the regions of the Arctic will be able to:\n\n- Establish stage-discharge relationships for estimating river discharge from the water level data\n\n- Operational production of EO water level data for the Arctic regions\n\n- River discharge estimates for Arctic regions \n\n\nIn order to get started with the Arctic Inland Water Monitoring and Forecast service, you can [read the documentation](https://docs.terradue.com/hydrology-tep/).\n\n\n### Service specifications\n\n#### Inputs\n\n- Sentinel 3A and 3B\n- Saral-Altika\n- Jason 3\n- Water extent from the Global Surface Water Explorer\n- Arctic-HYPE model data\n\n#### Outputs\n\n- Water level time series at virtual stations\n- River discharge time series at virtual stations\n\n\n",developedBy:a,developedByExtra:e},{id:"fanfar",rank:80,summary:"Water-related applications such as hydrological modelling and water level for West Africa.",name:"FANFAR",image:"fanfar_service.jpg",developedBy:a,developedByExtra:e,body:"The FANFAR thematic app allows users to see the current 10-day forecast in the Niger river basin. It is also possible to run jobs with the services that are available in the app, such as the Water Level.\n\nThe FANFAR service allows you to search, process data, reproduce results and share data or results with your community, other Hydrology TEP users or external visitors of the Hydrology TEP.\n\nThe geographical area covered by the FANFAR thematic app is West Africa. \n\nIn order to get started with the FANFAR service, you can watch the FANFAR Video Tutorials or read the [documentation](https://docs.terradue.com/hydrology-tep/)."},{id:"wois",rank:90,name:"Water Observation and Information System (WOIS) ",body:"The Water Observation and Information System (WOIS) is an open-source software tool that allows the monitoring, assessment and inventorying of water resources by means of Earth Observation (EO) data.\n\nThe WOIS system can be used by policy-makers such as the African water authorities for a better for Integrated Water Resource Management (IWRM).\n\nYou can find below a list of the output workflows and products available:\n\n- Large lakes water quality monitoring\n- Land degradation index\n- Land cover and land use mapping\n- Land cover change detection\n- Small water body mapping\n- Flood mapping system\n- Hydrological characterization\n- Water supply and sanitation planning support\n- Seasonal variation of wetland areas\n- Erosion potential indicator\n \nIn order to get started with the WOIS service, you can read the [documentation](https://docs.terradue.com/hydrology-tep/apps/wois_app.html)",developedBy:"deimos",image:"Apps_Wois.jpg",summary:"Monitor, assess and inventory water resources in a cost-effective manner using Earth Observation data."},{id:"hasard-flood-mapping",rank:100,name:"SAR Based Flooded Area Detection (HASARD Flood Mapping)",body:"The HASARD flood mapping service exploits pairs of Sentinel-1 images to rapidly and automatically produce flood extent maps 'on demand'. The users define their area and dates of interest and select two Sentinel-1 images representing, respectively, a so-called flood image and a dry reference. The algorithm maps all flooding-related changes between the two image acquisitions.\n\nThe flood mapping service can be applied at global scale to any pair of Sentinel-1 GRD images available in the catalogue (2014 –present).\n\nIn order to get started with the Flood Monitoring service, you can [read the service pricing](/guest/pricing#hasard-flood-mapping).\n\n### Service specifications\n#### Outputs for Sentinel 1 SAR images Ground Range Detected (GRD)\n- Water masks depicting the extent of floodwater (Geotiff format)\n",summary:"Change detection-based flood mapping service to rapidly and automatically produce floodwater maps 'on demand'.",image:"Apps_flood_mapping.jpg",developedBy:"list"}]}],error:null,state:{loggedUsername:null},serverRendered:!0}}("smhi","isardsat")</script><script src="/guest/_nuxt/79921c0d78e928259d15.js" defer></script><script src="/guest/_nuxt/ac0703649af43463946a.js" defer></script><script src="/guest/_nuxt/1d4f7d6570a20d7eb67d.js" defer></script><script src="/guest/_nuxt/90fb497d3fa502117f8c.js" defer></script><script src="/guest/_nuxt/72d5c0d13ae36964d952.js" defer></script>
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