Geoglobe
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Case study – Reinforcement of a sandy road in a desert area General OverviewSoft soils or soils with lowbearing capacityRural roads and access roadsBeing aware of the geological, ecological, economic and human challenges of our century, GeoGlobe® Europe designs and manufactures geosynthetic systems for soil stabilization and erosion control and puts its know-how and its experience in service of the Earth – Stabilization. Being dynamic, GeoGlobe® Europe consists of a team of specialists with a permanent and consistent participation in the world of geosynthetic committees. GeoGlobe® Europe continuously invests in research and development of technologies whose effectiveness is proven in long terms. Based on many years of experience in studying and realization of geosyntheticsolutions applied in the infrastructure projects and terrain stabilization, we focus on the feasibility and durability of the solutions. GeoGlobe® Europe takes care to offer today’s customized solutions harmoniously combining the technical performance at the level of civil engineering with the human pledge including the socioeconomic development and the ecological engineering in respect to the environment for a more stable future.Reinforcement of a sandy road in a desert area and developing of inaccessible agricultural areasThe challengeIt is necessary to cross the desert areas to reach the isolated agricultural lands.Even the 4×4 vehicles get stuck in the sandy areas.Need to create a firm and stable lane on a sandy terrain for the development of the agriculturalareas, ensuring the regular transport of people and equipment.Load SupportSoft soils or soils with low bearing capacity,Rural roads, tracks and access roadsThe SolutionTo reinforce the sandy tracks with the units of GeoGlobe®, filled with local sand.The alternative solutionTo build a conventional road with granular materials or crushed stones, a method which is often rejected because of cost, complicated problems with maintenance and logistics.GeoGlobe® approach and its advantagesTo reinforce the tracks using the natural local resources to build a stable lane, in a safetymanner, in order to meet the economic and human requirements.The technology – simple, effective, economical and durablePlaced on a geotextile above the sandy terrain, the confinement system GeoGlobe® isinstalled and filled with local sand, which is available on site, and then
GeoGlobe Technologies: Все о GeoGlobe (GOLHS)
Geographic globe objects created using the geoglobe function plot data over basemaps and terrain. You can access different basemap and terrain choices in different ways.MathWorks® offers a selection of basemaps, including two-tone, color terrain, and high-zoom-level displays. Six of the basemaps are tiled data sets created using Natural Earth. Five of the basemaps are high-zoom-level maps provided by Esri®. For more information about basemap options, see the geobasemap function.Use Installed BasemapThe "darkwater" basemap is installed with MATLAB®. The other basemaps are not installed with MATLAB, but you can access them over an internet connection.Download BasemapsTo work offline or to improve map responsiveness, you can download the basemaps created using Natural Earth onto your local system. The basemaps provided by Esri are not available for download.Download basemaps using the Add-On Explorer.On the MATLAB Home tab, in the Environment section, click .In the Add-On Explorer, scroll to the MathWorks Optional Features section, and click Show All to find the basemap add-ons. You can also search for the basemap add-ons by name (listed in the following table) or click Optional Features in Filter by Type. Select the basemap add-ons that you want to download.Basemap NameBasemap Data Package Name'bluegreen'MATLAB Basemap Data - bluegreen'grayland'MATLAB Basemap Data - grayland'colorterrain'MATLAB Basemap Data - colorterrain'grayterrain'MATLAB Basemap Data - grayterrain'landcover'MATLAB Basemap Data - landcoverAdd Custom BasemapsAdd a custom basemap from a URL, an MBTiles file, a georeferenced image, or a georeferenced data grid by using the addCustomBasemap function. MATLAB requires an active internet connection to add and use custom basemaps from a URL. MATLAB does not require internet access to add custom basemaps from MBTiles files, images, or data grids.MBTiles files are useful for storing and sharing tiled basemap data. You can write a georeferenced image or data grid to an MBTiles file by using the mbtileswrite function.Access TerrainBy default, the geographic globe uses terrain data hosted by MathWorks and derived from the GMTED2010 model by the USGS and NGA. You need an active internet connection to access this terrain data, and you cannot download it.To work offline or to improve terrain responsiveness, add custom terrain from DTED filesFree geoglobe sdk Download - geoglobe sdk for Windows
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GeoGlobe Apps on the App Store
Registration of a television tower in GeoGlobe.
GeoGlobe Ingenier a (@geoglobe_ingenieria) - Instagram
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GeoGlobe Apps on the App Store
Advantages of the product – GeoGlobe Europe
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Case study – Reinforcement of a sandy road in a desert area General OverviewSoft soils or soils with lowbearing capacityRural roads and access roadsBeing aware of the geological, ecological, economic and human challenges of our century, GeoGlobe® Europe designs and manufactures geosynthetic systems for soil stabilization and erosion control and puts its know-how and its experience in service of the Earth – Stabilization. Being dynamic, GeoGlobe® Europe consists of a team of specialists with a permanent and consistent participation in the world of geosynthetic committees. GeoGlobe® Europe continuously invests in research and development of technologies whose effectiveness is proven in long terms. Based on many years of experience in studying and realization of geosyntheticsolutions applied in the infrastructure projects and terrain stabilization, we focus on the feasibility and durability of the solutions. GeoGlobe® Europe takes care to offer today’s customized solutions harmoniously combining the technical performance at the level of civil engineering with the human pledge including the socioeconomic development and the ecological engineering in respect to the environment for a more stable future.Reinforcement of a sandy road in a desert area and developing of inaccessible agricultural areasThe challengeIt is necessary to cross the desert areas to reach the isolated agricultural lands.Even the 4×4 vehicles get stuck in the sandy areas.Need to create a firm and stable lane on a sandy terrain for the development of the agriculturalareas, ensuring the regular transport of people and equipment.Load SupportSoft soils or soils with low bearing capacity,Rural roads, tracks and access roadsThe SolutionTo reinforce the sandy tracks with the units of GeoGlobe®, filled with local sand.The alternative solutionTo build a conventional road with granular materials or crushed stones, a method which is often rejected because of cost, complicated problems with maintenance and logistics.GeoGlobe® approach and its advantagesTo reinforce the tracks using the natural local resources to build a stable lane, in a safetymanner, in order to meet the economic and human requirements.The technology – simple, effective, economical and durablePlaced on a geotextile above the sandy terrain, the confinement system GeoGlobe® isinstalled and filled with local sand, which is available on site, and then
2025-03-27Geographic globe objects created using the geoglobe function plot data over basemaps and terrain. You can access different basemap and terrain choices in different ways.MathWorks® offers a selection of basemaps, including two-tone, color terrain, and high-zoom-level displays. Six of the basemaps are tiled data sets created using Natural Earth. Five of the basemaps are high-zoom-level maps provided by Esri®. For more information about basemap options, see the geobasemap function.Use Installed BasemapThe "darkwater" basemap is installed with MATLAB®. The other basemaps are not installed with MATLAB, but you can access them over an internet connection.Download BasemapsTo work offline or to improve map responsiveness, you can download the basemaps created using Natural Earth onto your local system. The basemaps provided by Esri are not available for download.Download basemaps using the Add-On Explorer.On the MATLAB Home tab, in the Environment section, click .In the Add-On Explorer, scroll to the MathWorks Optional Features section, and click Show All to find the basemap add-ons. You can also search for the basemap add-ons by name (listed in the following table) or click Optional Features in Filter by Type. Select the basemap add-ons that you want to download.Basemap NameBasemap Data Package Name'bluegreen'MATLAB Basemap Data - bluegreen'grayland'MATLAB Basemap Data - grayland'colorterrain'MATLAB Basemap Data - colorterrain'grayterrain'MATLAB Basemap Data - grayterrain'landcover'MATLAB Basemap Data - landcoverAdd Custom BasemapsAdd a custom basemap from a URL, an MBTiles file, a georeferenced image, or a georeferenced data grid by using the addCustomBasemap function. MATLAB requires an active internet connection to add and use custom basemaps from a URL. MATLAB does not require internet access to add custom basemaps from MBTiles files, images, or data grids.MBTiles files are useful for storing and sharing tiled basemap data. You can write a georeferenced image or data grid to an MBTiles file by using the mbtileswrite function.Access TerrainBy default, the geographic globe uses terrain data hosted by MathWorks and derived from the GMTED2010 model by the USGS and NGA. You need an active internet connection to access this terrain data, and you cannot download it.To work offline or to improve terrain responsiveness, add custom terrain from DTED files
2025-04-20