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We have found 491 datasets for the keyword "réseau hydrographique". You can continue exploring the search results in the list below.
Datasets: 104,046
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491 Datasets, Page 1 of 50
Surface hydrography
Surface hydrographic network of the City of Rouyn-Noranda**This third party metadata element was translated using an automated translation tool (Amazon Translate).**
Linear hydrography
Linear hydrographic network of the City of Rouyn-Noranda. The ditches ofdrainage is not included.**This third party metadata element was translated using an automated translation tool (Amazon Translate).**
Hydrography of the agglomeration of Montreal
Geometric and conventional representation of the hydrographic network. The 3D hydrographic layer is represented by several natural or physical elements associated with the presence of water. These elements form part of the layers in the digital cartographic compilation.**This third party metadata element was translated using an automated translation tool (Amazon Translate).**
Base Stream and Flow Representation Update
The Base Hydrography Single Line Hydrography Network (SLNET) is the Alberta Environment and Protected Areas base SLNET data set. It is an update of the Base Features HydroSLNET in Southern Alberta from orthophoto and various sources of provincial base data. It contains all captured single line representations of hydrographic features. In addition, single line representations of polygonal features and single line arbitrary network connectors are in the file.
Base Stream and Flow Representation
The Single Line Hydrography Network (SLNET) contains all captured single line representations of hydrographic features. In addition, single line representations of polygonal features and single line arbitrary network connectors are in the file.
Nova Scotia Hydrographic Network
The Nova Scotia Hydrographic Network is an enhanced version of the Nova Scotia Topographic Database's Water Features theme. This dataset includes network spines for connectivity of water flow and various attribution for flow direction, priority of water flow and toponymic objects where applicable.
Geobase of the Quebec hydrographic network at high resolution (GRHQ-HR)
Please note that a web service is currently under development and will be launched in winter 2026. Stay on the lookout!## #Avertissement :###### #Le broadcaster cannot guarantee the accuracy, precision, or completeness of the data nor can it be held responsible for the conclusions that arise from their use. This data has no legal value. ####The Geobase of the Quebec Hydrographic Network at High Resolution (GRHQ-HR) offers an up-to-date representation of the hydrographic network with very high precision (scale of 1/2,000). This repository, produced from lidar data, is offered by hydrographic division unit (UDH). The deployment of this geobase is carried out progressively by levels of completeness (NC). Ultimately, it will cover the territory of southern Quebec. During the deployment phase of the repository, [the Quebec Hydrographic Network Geobase (GRHQ)] (https://www.donneesquebec.ca/recherche/fr/dataset/grhq), the GRHQ-HR as well as [potential flow beds] (https://www.donneesquebec.ca/recherche/dataset/lits-d-ecoulements-potentiels-issus-du-lidar) from the lidar will be simultaneously available on Data Quebec for this portion of the territory.The GRHQ-HR includes a 3D linear geometric network, which represents the continuity and direction of flow in all types of aquatic entities (streams, lakes, wetlands, etc.). This network is created by modeling potential flow beds and completed by central flow lines (simplified representation of hydrographic surfaces in central lines). This geobase is part of a strategy to update the cartographic map of Quebec's hydrography. It was carried out in partnership with the Ministry of the Environment, the Fight against Climate Change, Wildlife and Parks (MELCCFP). # #Caractéristiques UDH completion levels##Each level of completeness characterizes the level of work, editing, validation, and descriptive content of the datasets. Thematic and toponymic data will enhance the datasets. ### #NC -1 (primary geometric network) ####* Potential and filamentary flow beds derived from hydrographic, oriented, and topological surfaces.* Priority level defined (allows network analyses).* Presence of certain basic attributes (sustainability, network connection, accumulation of flows, Strahler and Horton orders, distance from upstream, distance from downstream).* Linear reference system (road numbers, vertex M coordinates).* Hydrographic surfaces of the GRHQ on a scale of 1/20,000 (2D).* Presence of some toponyms as an attribute.* Hydrocoherent digital terrain models (GeoTIFF).* Flow accumulation matrices (GeoTIFF).* Flow direction matrices (GeoTIFF).### #NC -2 (enhanced geometric network) ####* NC-1 features.* Update of hydrographic surfaces by photogrammetry.* Correction of errors in the path of potential flow beds and update of downstream filamentaries.* Partial addition of thematic hydrographic data (dams, falls, reefs, islands, wetlands, rapids).* Lidar survey date index.* Topological nesting of matrices.* Update of hydrocoherent numerical terrain models.* Update of flow direction matrices.* Update of flow accumulation matrices.### #NC -3 (thematic bonus) ####* Characteristics of the NC-2.* Hydrographic themes completed (breakwaters, quays).* Addition of toponyms.### #NC -4 (improvement of toponymic content) ####* NC-3 features.* Continuity of toponymic data on geometries.* Addition of named entities.**This third party metadata element was translated using an automated translation tool (Amazon Translate).**
Qu’Appelle Valley Lakes system – Spot Height Points 2008
Spot Height Points for the Pasqua, Crooked, Echo, and Round Lakes area within the Qu'Appelle Valley River system in Saskatchewan
New Brunswick Hydrographic Network (NBHN)
Surface drainage features including rivers, streams, lakes, islands, and watershed boundaries including names for many rivers and streams. Individual components of this dataset can be found on DNRED’s Open Data Catalogue. Those individual components may be more up-to-date than those used in this packaged dataset.
Hydrocoherent numerical terrain models at the regional scale
### #Des hydrocoherent numerical terrain models (MNT-HC) are also offered south of the 52nd parallel. They are accessible via the [High Resolution Quebec Hydrographic Network Geobase (GRHQ-HR)] (https://www.donneesquebec.ca/recherche/dataset/geobase-du-reseau-hydrographique-du-quebec-a-haute-resolution-grhq-hr) These hydrocoherent numerical terrain models (DTM — HC) offer a regional numerical representation of Quebec relief based on altimetric (altitude) and planimetric (rectangular or geographic) data. They are the result of a collaboration between the Ministry of Natural Resources and Forests (MRNF) and Natural Resources Canada (NRCan) within the framework of the Agreement to produce an up-to-date digital map of northern Quebec and the creation of the product “National Hydro Network (RHN)” for the territory of Quebec.When integrated into a geographic information system, these models allow the implementation of multiple types of spatial analyses such as natural risks, landscape analysis, infrastructure implementation, etc.Hydrocoherent MNTs are obtained as a result of hypsometric and hydrographic data processing that uses the concept of hydrocoherence, which consists in interpolating altimetric values by ensuring a connected drainage network and an accurate representation of ridges and watercourses. The oriented RHN filament makes it possible to grade lakes and to control the altimetric descent of watercourses. The final product is a quality portrait of relief on a scale of 1/50,000. DMTs provide altitude values that are based on a grid with a resolution of 0.324 arcseconds in geographic coordinates, which corresponds to a resolution of about 10 meters in the field.**This third party metadata element was translated using an automated translation tool (Amazon Translate).**
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