-->
* {{GIS data for Graphic Lab |name=ETOPO1 |url_download=http://www.ngdc.noaa.gov/mgg/global/global.html |publisher=[[NGDC]]-[[NOAA]] |year=2009 |license= Public ___domain |tag= standard |url_doc=http://www.ngdc.noaa.gov/mgg/global/etopo1sources.html |layers=topography & bathymetry |precision_max=1850m (1minute arch) |covered_area= all Earth (90N-90S, landmass & sea floor) |datum=WSG 84 |projection = (?) |extensions=.zip → .tif and others |size_compressed=326Mo |size_uncompressed=900Mo |tile_size=whole earth |tiles_total= 1 |comment = Perfect for very large maps (ex: > France). Download: [http://www.ngdc.noaa.gov/mgg/global/relief/ETOPO1/data/ice_surface/grid_registered/georeferenced_tiff/ ETOPO1 Ice Surface (grid registered)], [http://www.ngdc.noaa.gov/mgg/global/relief/ETOPO1/data/bedrock/grid_registered/georeferenced_tiff/ ETOPO1 Bedrock (grid-registered)]. nb: ETOPO1 is a better data than ETOPO2 (lower quality). |editor_note= }} Citation: “Amante, C. and B. W. Eakins, ETOPO1 1 Arc-Minute Global Relief Model: Procedures, Data Sources and Analysis. NOAA Technical Memorandum NESDIS NGDC-24, 19 pp, March 2009.”
* {{GIS data for Graphic Lab |name=GTOPO30|url_download=httphttps://gdex.crwww.usgs.gov/gdexcenters/eros/science/usgs-eros-archive-digital-elevation-global-30-arc-second-elevation-gtopo30 |publisher= NASA / USGS |year= 1996 |license= [http://www.usgs.gov/visual-id/credit_usgs.html Public Domain] |tag= standard |url_doc= http://eros.usgs.gov/#/Find_Data/Products_and_Data_Available/gtopo30_info |layers= topography |precision_max= 930m (30"arch) |covered_area= World (landmass only) |datum= WGS 84 |extensions= .tif |size_compressed= |size_uncompressed= |tile_size= on command |tiles_total= 1 |comment= While ETOPO have to be the whole earth, this once can be a selected area such as Spain, and thus 'may be' more convenient for country-size project.|editor_note=}}<!-- Résolution par pixel : à l'équateur 928 m (Est-Ouest) – 921 m (Nord-Sud) ; à 82° de latitude 130 m (E-O) – 931 m (N-S). Précision verticale : très variable en fonction de la source utilisée, 9 m RMSE (Nouvelle-Zélande, 0,2% des donnés, précision la meilleure) ; 18 m RMSE (50% des données) ; 304 m RMSE (Pérou, 0,1% des données, précision la plus mauvaise).
-->
NASA [[Shuttle Radar Topography Mission]] (SRTM) Digital Elevation Model. Including SRTM1 (1 arch-sec = 31m), SRTM3 (3 arch-sec = 93m), SRTM30 (30 arch-sec = 930m). [http://dds.cr.usgs.gov/srtm/version2_1/Documentation/SRTM_Topo.pdf Documentation], [http://www2.jpl.nasa.gov/srtm/ introduction]. WGS84/EGM96 geoid?
* {{GIS data for Graphic Lab |name=ASTER|url_download=httphttps://gdex.crlpdaac.usgs.gov/gdexproducts/astgtmv003/ |publisher= NASA / USGS |year= ? |license= [http://www.usgs.gov/visual-id/credit_usgs.html Public Domain] |tag= standard |url_doc= |layers= topography |precision_max= 31m (1"arch) |covered_area= World (landmass only) |datum= WGS 84 |extensions= .tif |size_compressed= |size_uncompressed= |tile_size= on command |tiles_total= 1 |editor_note= The finest topographic we have, still some distortions know.}}<!-- ASTER, SRTM1 et SRTM3 -->
* {{GIS data for Graphic Lab |name= SRTM3 |url_download= httphttps://gdex.crlpdaac.usgs.gov/gdexproducts/srtmgl3v003/ |publisher= NASA / USGS |year= 2000 |license= [http://www.usgs.gov/visual-id/credit_usgs.html Public ___domain] |tag= standard |url_doc= http://dds.cr.usgs.gov/srtm/version2_1/Documentation/SRTM_Topo.pdf |layers= topography |precision_max= 93m (3"arch) |covered_area= 60⁰N-56⁰S (landmass only) |datum= WGS 84 |extensions= .tif |size_compressed= |size_uncompressed= |tile_size= on command |tiles_total= 1 |editor_note=}}
<!--
** Former download system: {{GIS data for Graphic Lab |name= SRTM3 v2 (tiles download) |url_download= http://dds.cr.usgs.gov/srtm/version2_1/SRTM3 |publisher= NASA / USGS |year= 2000 |license= Public Domain |url_doc= http://dds.cr.usgs.gov/srtm/version2_1/Documentation/SRTM_Topo.pdf |layers= topography |precision_max= 93m (3"arch) |covered_area= 60⁰N-56⁰S (landmass only) |datum= WGS 84 |extensions= .zip → .hgt |size_compressed= ~2Mo each |size_uncompressed= ~4Mo each |tile_size= 1⁰ x 1⁰arch |tiles_total= ~20.000 |comment = perfect for small areas anywhere in the world. |editor_note=Former system, far more difficult to manage.}}
* {{GIS data for Graphic Lab |name=SRTM4.1_90m |url_download=http://dwtkns.com/srtm/ |publisher=CIAT-CSI |year=2008 |license= restricted by email request |tag= danger |url_doc=http://www.cgiar-csi.org/data/srtm-90m-digital-elevation-database-v4-1 |layers= topography|precision_max=90m (3"arch) |covered_area=60⁰N-60⁰S (landmass only) |datum=WGS84 |projection= ? |extensions=.zip→.tiff |size_compressed=2GB |size_uncompressed=20GB |tile_size=5⁰x5⁰ |tiles_total=~800 (72*24-waters) |comment=SRTM data from NASA improved, gaps filled thanks to algorythm. Full citation: ''Jarvis A., H.I. Reuter, A. Nelson, E. Guevara, 2008, Hole-filled seamless SRTM data V4, International Centre for Tropical Agriculture (CIAT), available from http://srtm.csi.cgiar.org.''|editor_note= }}
* {{GIS data for Graphic Lab |name= SRTM1 |url_download= httphttps://gdex.crlpdaac.usgs.gov/gdexproducts/srtmgl1v003/ |publisher= NASA / USGS |year=2000 |license=[http://www.usgs.gov/visual-id/credit_usgs.html Public Domain] |url_doc= http://dds.cr.usgs.gov/srtm/version2_1/Documentation/SRTM_Topo.pdf
|layers=topography |precision_max=31m (1"arch) |covered_area=[http://dds.cr.usgs.gov/srtm/version2_1/SRTM1/Region_definition.jpg USA and dependencies] (landmass only) |datum=WGS 84 |projection = ? |extensions= → .tif |size_compressed= |size_uncompressed= |tile_size= on command |tiles_total= 1 |comment=USA only. |editor_note=}}
<!--
|layers=topography |precision_max=31m (1"arch) |covered_area=[http://dds.cr.usgs.gov/srtm/version2_1/SRTM1/Region_definition.jpg USA and dependencies] (landmass only) |datum=WGS 84 |projection = ? |extensions= .zip→.hgt |size_compressed= ~4Mo |size_uncompressed= ~30Mo |tile_size= 1⁰ x 1⁰arch |tiles_total= |comment = Files names from the lower-left corner's coordinates (ex: N48E001.hgt.zip) |editor_note= }}
-->
* {{GIS data for Graphic Lab |name=SRTM30 |url_download=httphttps://dds.crlpdaac.usgs.gov/srtmproducts/version2_1srtmgl30v021/SRTM30 |publisher= NASA |year= 2000 |license= [http://www.usgs.gov/visual-id/credit_usgs.html Public Domain] |url_doc= http://dds.cr.usgs.gov/srtm/version2_1/Documentation/SRTM_Topo.pdf |layers= topography |precision_max= 930m (30"arch) |covered_area= 60⁰N-56⁰S (landmass only) |datum= WGS84 |extensions= .zip → 12 files |size_compressed=<!-- various--> |size_uncompressed= ? |tile_size= 50°lat x 40°long |tiles_total= ? |comment = For very large maps anywhere in the world. Is a merge of SRTM and GTOPO30. File namimg from the top-left corner's coordinates. 12 files in the online folder, 10 are useful (to exclude: <tt>*.jpg.zip</tt> et <tt>*.gif.zip</tt>, which are previews). In [[3DEM]], après avoir décompressé ces 10 fichiers, sélectionner l'option <tt>GTOPO30 Tile</tt> puis dans la nouvelle fenêtre représentant la carte du monde, centrer le cadre sur la région d'intérêt et spécifier comme projection <tt>Lat/Lon</tt>. Naviguer dans l'arborescence et sélectionner le fichier <tt>.DEM</tt>.|editor_note= }}
* {{GIS data for Graphic Lab |name=SRTM Water Body Data (SWBD) |url_download=httphttps://dds.crlpdaac.usgs.gov/srtmproducts/version2_1srtmswbdv003/SWBD |publisher= NASA |year= 2000 |license= [http://www.usgs.gov/visual-id/credit_usgs.html Public Domain] |url_doc=http://dds.cr.usgs.gov/srtm/version2_1/SWBD/SWBD_Documentation/SWDB_Product_Specific_Guidance.pdf |layers= water bodies (major rivers, lakes, coastlines) |precision_max= 31m (1"arch) |covered_area= 60⁰N-56⁰S (landmass only) |datum= WGS 84 |extensions= .zip → .shp |size_compressed= |size_uncompressed= |tile_size= 1⁰ x 1⁰arch |tiles_total= |comment= Vector layer, for waterways, lakes, and very precise coastline base on the sea's average level. |editor_note= }}
* {{GIS data for Graphic Lab |name=REMA (Reference Elevation Model of Antarctica) |url_download= |publisher=University of Minesota |year=2018 |license= |tag= |url_doc=https://pgc.umn.edu/data/rema/ |layers=topography including snow |precision_max=8m |covered_area=60-88° South (Antartica) |datum= |projection = |extensions= |size_compressed= |size_uncompressed= |tile_size=2x2m;8x8m;... |tiles_total= |comment=Full data is 43TB large! |editor_note= See also [https://gis.stackexchange.com/q/90715/19460?stw=2 Why are poles missing from GIS topographic data?]}}
== Water bodies ==
'''Scope:''' Major rivers, lakes, coastlines. '''Exclude:''' sea's bottom (bathymetry), for this, see #Topography/Bathymetry.<br />
{{Collapse|title= Colormap "Water-areas_1areas_2.0.qml" (vector polygon only)|1=<pre>
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<italic fieldname="" on="0"/>
<underline fieldname="" on="0"/>
<strikeout fieldname="" on="0"/>
<color fieldname="" red="0" blue="0" green="0"/>
<x fieldname=""/>
<y fieldname=""/>
<offset x="0" y="0" units="pt" yfieldname="" xfieldname=""/>
<angle fieldname="" value="0" auto="0"/>
<alignment fieldname="" value="center"/>
<buffercolor fieldname="" red="255" blue="255" green="255"/>
<buffersize fieldname="" units="pt" value="1"/>
<bufferenabled fieldname="" on=""/>
<multilineenabled fieldname="" on=""/>
<selectedonly on=""/>
</labelattributes>
<SingleCategoryDiagramRenderer diagramType="Histogram" sizeLegend="0" attributeLegend="1">
<DiagramCategory penColor="#000000" labelPlacementMethod="XHeight" penWidth="0" diagramOrientation="Up" sizeScale="0,0,0,0,0,0" minimumSize="0" barWidth="5" penAlpha="255" maxScaleDenominator="1e+08" backgroundColor="#ffffff" transparency="0" width="15" scaleDependency="Area" backgroundAlpha="255" angleOffset="1440" scaleBasedVisibility="0" enabled="0" height="15" lineSizeScale="0,0,0,0,0,0" sizeType="MM" lineSizeType="MM" minScaleDenominator="inf">
<fontProperties description="Ubuntu,11,-1,5,50,0,0,0,0,0" style=""/>
</DiagramCategory>
<symbol alpha="1" clip_to_extent="1" type="marker" name="sizeSymbol">
<layer pass="0" class="SimpleMarker" locked="0">
<prop k="angle" v="0"/>
<prop k="color" v="255,0,0,255"/>
<prop k="horizontal_anchor_point" v="1"/>
<prop k="joinstyle" v="bevel"/>
<prop k="name" v="circle"/>
<prop k="offset" v="0,0"/>
<prop k="offset_map_unit_scale" v="0,0,0,0,0,0"/>
<prop k="offset_unit" v="MM"/>
<prop k="outline_color" v="0,0,0,255"/>
<prop k="outline_style" v="solid"/>
<prop k="outline_width" v="0"/>
<prop k="outline_width_map_unit_scale" v="0,0,0,0,0,0"/>
<prop k="outline_width_unit" v="MM"/>
<prop k="scale_method" v="diameter"/>
<prop k="size" v="2"/>
<prop k="size_map_unit_scale" v="0,0,0,0,0,0"/>
<prop k="size_unit" v="MM"/>
<prop k="vertical_anchor_point" v="1"/>
</layer>
</symbol>
</SingleCategoryDiagramRenderer>
<DiagramLayerSettings yPosColumn="-1" showColumn="-1" linePlacementFlags="10" placement="0" dist="0" xPosColumn="-1" priority="0" obstacle="0" zIndex="0" showAll="1"/>
<annotationform>.</annotationform>
<aliases>
<alias field="OSM_ID" index="0" name=""/>
<alias field="NAME" index="1" name=""/>
<alias field="NATURAL" index="2" name=""/>
<alias field="WATERWAY" index="3" name=""/>
<alias field="WETLAND" index="4" name=""/>
</aliases>
<excludeAttributesWMS/>
<excludeAttributesWFS/>
<attributeactions default="-1"/>
<attributetableconfig actionWidgetStyle="dropDown" sortExpression="" sortOrder="0">
<columns>
<column width="-1" hidden="0" type="field" name="OSM_ID"/>
<column width="-1" hidden="0" type="field" name="NAME"/>
<column width="-1" hidden="0" type="field" name="NATURAL"/>
<column width="-1" hidden="0" type="field" name="WATERWAY"/>
<column width="-1" hidden="0" type="field" name="WETLAND"/>
<column width="-1" hidden="1" type="actions"/>
</columns>
</attributetableconfig>
<editform>.</editform>
<editforminit/>
<editforminitcodesource>0</editforminitcodesource>
<editforminitfilepath></editforminitfilepath>
<editforminitcode><![CDATA[# -*- coding: utf-8 -*-
"""
QGIS forms can have a Python function that is called when the form is
opened.
Use this function to add extra logic to your forms.
Enter the name of the function in the "Python Init function"
field.
An example follows:
"""
from qgis.PyQt.QtWidgets import QWidget
def my_form_open(dialog, layer, feature):
geom = feature.geometry()
control = dialog.findChild(QWidget, "MyLineEdit")
]]></editforminitcode>
<featformsuppress>0</featformsuppress>
<editorlayout>generatedlayout</editorlayout>
<widgets/>
<conditionalstyles>
<rowstyles/>
<fieldstyles/>
</conditionalstyles>
<defaults>
<default field="OSM_ID" expression=""/>
<default field="NAME" expression=""/>
<default field="NATURAL" expression=""/>
<default field="WATERWAY" expression=""/>
<default field="WETLAND" expression=""/>
</defaults>
<previewExpression></previewExpression>
<layerGeometryType>2</layerGeometryType>
</qgis>
</pre>
}}
== Mercury, Venus, Moon, Mars, Jovean ==
Links to explore, GIS to find :
* https://www.usgs.gov/special-topics/planetary-geologic-mapping/interactive-planetary-maps : Mercury, Venus, Moon, Mars, Io, Ganymede, Callisto
* https://ode.rsl.wustl.edu : Mercury, Venus, Moon, Mars
<!-- These links are to comment better using {{GIS data for Graphic Lab |}} -->
Former links (broken) :
* http://webgis.wr.usgs.gov/pigwad/down/index.html
** http://webgis.wr.usgs.gov/pigwad/down/venus_dl.htm
|