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Elevation/DEM_Hillshade_Multi_MNE_Ombrage_Multiple (ImageServer)

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Service Description: A Hillshade is a greyscale 3D representation of the bare earth terrain, with the sun’s relative position (azimuth) taken into account for shading the image. Hillshades do not provide absolute elevation values. This Hillshade was created using a multidirectional method, which combines light from multiple sources/directions. This method is advantageous because it displays more detail than a traditional hillshade. Provided in New Brunswick Stereographic Double Projection with CGVD2013 vertical datum. Produced in 2020, from LiDAR data acquired between 2015-2018. L’ombrage est une représentation tridimensionnelle en nuances de gris de la surface à nu, la position relative du soleil (l’azimut) étant prise en compte pour l’ombrage de l’image. L’ombrage ne fournit pas une valeur d’élévation absolue. Cet ombrage a été créé en utilisant une méthode multidirectionnelle, qui combine la lumière provenant de plusieurs sources et directions. Cette méthode est avantageuse, car elle permet d’afficher plus de détails qu’un ombrage traditionnel. Fourni en projection stéréographique double du Nouveau-Brunswick avec la donnée du canevas altimétrique CGVD2013.

Name: Elevation/DEM_Hillshade_Multi_MNE_Ombrage_Multiple

Description: A Hillshade is a greyscale 3D representation of the bare earth terrain, with the sun’s relative position (azimuth) taken into account for shading the image. Hillshades do not provide absolute elevation values. This Hillshade was created using a multidirectional method, which combines light from multiple sources/directions. This method is advantageous because it displays more detail than a traditional hillshade. Provided in New Brunswick Stereographic Double Projection with CGVD2013 vertical datum. Produced in 2020, from LiDAR data acquired between 2015-2018. L’ombrage est une représentation tridimensionnelle en nuances de gris de la surface à nu, la position relative du soleil (l’azimut) étant prise en compte pour l’ombrage de l’image. L’ombrage ne fournit pas une valeur d’élévation absolue. Cet ombrage a été créé en utilisant une méthode multidirectionnelle, qui combine la lumière provenant de plusieurs sources et directions. Cette méthode est avantageuse, car elle permet d’afficher plus de détails qu’un ombrage traditionnel. Fourni en projection stéréographique double du Nouveau-Brunswick avec la donnée du canevas altimétrique CGVD2013.

Single Fused Map Cache: false

Extent: Initial Extent: Full Extent: Pixel Size X: 1.0

Pixel Size Y: 1.0

Band Count: 1

Pixel Type: U8

RasterFunction Infos: {"rasterFunctionInfos": [{ "name": "None", "description": "A No-Op Function.", "help": "" }]}

Mensuration Capabilities:

Has Histograms: true

Has Colormap: false

Has Multi Dimensions : false

Rendering Rule:

Min Scale: 0

Max Scale: 0

Copyright Text: Service New Brunswick / Service Nouveau-Brunswick

Service Data Type: esriImageServiceDataTypeGeneric

Min Values: 0

Max Values: 238

Mean Values: 131.84497707069818

Standard Deviation Values: 106.76710443288323

Object ID Field: OBJECTID

Fields: Default Mosaic Method: Northwest

Allowed Mosaic Methods: NorthWest,Center,LockRaster,ByAttribute,Nadir,Viewpoint,Seamline,None

SortField:

SortValue: null

Mosaic Operator: First

Default Compression Quality: 75

Default Resampling Method: Bilinear

Max Record Count: 1000

Max Image Height: 4100

Max Image Width: 15000

Max Download Image Count: 20

Max Mosaic Image Count: 20

Allow Raster Function: true

Allow Compute TiePoints: false

Supports Statistics: true

Supports Advanced Queries: true

Use StandardizedQueries: true

Raster Type Infos: Has Raster Attribute Table: false

Edit Fields Info: null

Ownership Based AccessControl For Rasters: null

Child Resources:   Info   Histograms   Key Properties   Legend   MultiDimensionalInfo   rasterFunctionInfos

Supported Operations:   Export Image   Query   Identify   Measure   Compute Histograms   Compute Statistics Histograms   Get Samples   Compute Class Statistics   Query Boundary   Compute Pixel Location