65 datasets found
  1. a

    Water Utility - All Features (SHP)

    • hub.arcgis.com
    Updated Oct 23, 2020
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    City of Coquitlam (2020). Water Utility - All Features (SHP) [Dataset]. https://hub.arcgis.com/documents/219eaa2029754966a161b33f8b421e50
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    Dataset updated
    Oct 23, 2020
    Dataset authored and provided by
    City of Coquitlam
    Description

    Complete Water Utility Network in file shapefile format. Consume this dataset if you wish to download the entire Water Utility network dataset at once.

  2. a

    Water Utility - All Features (GDB)

    • hub.arcgis.com
    Updated Aug 13, 2020
    + more versions
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    City of Coquitlam (2020). Water Utility - All Features (GDB) [Dataset]. https://hub.arcgis.com/documents/e6d025f534e34ab19743fc7f609b20be
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    Dataset updated
    Aug 13, 2020
    Dataset authored and provided by
    City of Coquitlam
    Description

    Complete Water Utility Network in file geodatabase format. Consume this dataset if you wish to download the entire Water Utility network dataset at once.

  3. GIS In Utility Industry Market Analysis North America, Europe, APAC, Middle...

    • technavio.com
    Updated Dec 31, 2024
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    Technavio (2024). GIS In Utility Industry Market Analysis North America, Europe, APAC, Middle East and Africa, South America - US, China, Canada, Japan, Germany, Russia, India, Brazil, France, UAE - Size and Forecast 2025-2029 [Dataset]. https://www.technavio.com/report/gis-market-in-the-utility-industry-analysis
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    Dataset updated
    Dec 31, 2024
    Dataset provided by
    TechNavio
    Authors
    Technavio
    Time period covered
    2021 - 2025
    Area covered
    Canada, United States, Global
    Description

    Snapshot img

    GIS In Utility Industry Market Size 2025-2029

    The gis in utility industry market size is forecast to increase by USD 3.55 billion, at a CAGR of 19.8% between 2024 and 2029.

    The utility industry's growing adoption of Geographic Information Systems (GIS) is driven by the increasing need for efficient and effective infrastructure management. GIS solutions enable utility companies to visualize, analyze, and manage their assets and networks more effectively, leading to improved operational efficiency and customer service. A notable trend in this market is the expanding application of GIS for water management, as utilities seek to optimize water distribution and reduce non-revenue water losses. However, the utility GIS market faces challenges from open-source GIS software, which can offer cost-effective alternatives to proprietary solutions. These open-source options may limit the functionality and support available to users, necessitating careful consideration when choosing a GIS solution. To capitalize on market opportunities and navigate these challenges, utility companies must assess their specific needs and evaluate the trade-offs between cost, functionality, and support when selecting a GIS provider. Effective strategic planning and operational execution will be crucial for success in this dynamic market.

    What will be the Size of the GIS In Utility Industry Market during the forecast period?

    Explore in-depth regional segment analysis with market size data - historical 2019-2023 and forecasts 2025-2029 - in the full report.
    Request Free SampleThe Global Utilities Industry Market for Geographic Information Systems (GIS) continues to evolve, driven by the increasing demand for advanced data management and analysis solutions. GIS services play a crucial role in utility infrastructure management, enabling asset management, data integration, project management, demand forecasting, data modeling, data analytics, grid modernization, data security, field data capture, outage management, and spatial analysis. These applications are not static but rather continuously unfolding, with new patterns emerging in areas such as energy efficiency, smart grid technologies, renewable energy integration, network optimization, and transmission lines. Spatial statistics, data privacy, geospatial databases, and remote sensing are integral components of this evolving landscape, ensuring the effective management of utility infrastructure. Moreover, the adoption of mobile GIS, infrastructure planning, customer service, asset lifecycle management, metering systems, regulatory compliance, GIS data management, route planning, environmental impact assessment, mapping software, GIS consulting, GIS training, smart metering, workforce management, location intelligence, aerial imagery, construction management, data visualization, operations and maintenance, GIS implementation, and IoT sensors is transforming the industry. The integration of these technologies and services facilitates efficient utility infrastructure management, enhancing network performance, improving customer service, and ensuring regulatory compliance. The ongoing evolution of the utilities industry market for GIS reflects the dynamic nature of the sector, with continuous innovation and adaptation to meet the changing needs of utility providers and consumers.

    How is this GIS In Utility Industry Industry segmented?

    The gis in utility industry industry research report provides comprehensive data (region-wise segment analysis), with forecasts and estimates in 'USD million' for the period 2025-2029, as well as historical data from 2019-2023 for the following segments. ProductSoftwareDataServicesDeploymentOn-premisesCloudGeographyNorth AmericaUSCanadaEuropeFranceGermanyRussiaMiddle East and AfricaUAEAPACChinaIndiaJapanSouth AmericaBrazilRest of World (ROW).

    By Product Insights

    The software segment is estimated to witness significant growth during the forecast period.In the utility industry, Geographic Information Systems (GIS) play a pivotal role in optimizing operations and managing infrastructure. Utilities, including electricity, gas, water, and telecommunications providers, utilize GIS software for asset management, infrastructure planning, network performance monitoring, and informed decision-making. The GIS software segment in the utility industry encompasses various solutions, starting with fundamental GIS software that manages and analyzes geographical data. Additionally, utility companies leverage specialized software for field data collection, energy efficiency, smart grid technologies, distribution grid design, renewable energy integration, network optimization, transmission lines, spatial statistics, data privacy, geospatial databases, GIS services, project management, demand forecasting, data modeling, data analytics, grid modernization, data security, field data capture, outage ma

  4. a

    Meters - Cityworks

    • hub.arcgis.com
    Updated May 14, 2024
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    City of Las Vegas (2024). Meters - Cityworks [Dataset]. https://hub.arcgis.com/maps/lasvegas::meters-cityworks
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    Dataset updated
    May 14, 2024
    Dataset authored and provided by
    City of Las Vegas
    Area covered
    Description

    This service has been designed to support the advance capabilities of the ArcGIS Utility Network.

  5. a

    Backflow - Cityworks

    • hub.arcgis.com
    Updated May 14, 2024
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    City of Las Vegas (2024). Backflow - Cityworks [Dataset]. https://hub.arcgis.com/maps/lasvegas::backflow-cityworks
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    Dataset updated
    May 14, 2024
    Dataset authored and provided by
    City of Las Vegas
    Area covered
    Description

    This service has been designed to support the advance capabilities of the ArcGIS Utility Network.

  6. a

    Collections Fitting

    • hub.arcgis.com
    • data.bendoregon.gov
    Updated Jan 31, 2023
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    City of Bend, Oregon (2023). Collections Fitting [Dataset]. https://hub.arcgis.com/maps/bendoregon::collections-fitting/about
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    Dataset updated
    Jan 31, 2023
    Dataset authored and provided by
    City of Bend, Oregon
    Area covered
    Description

    Fittings are used to attach one pipe to another in order to combine, divert, or reduce the flow of wastewater. Fittings are required to participate in a Utility Network. Attribute Information:Field Name DescriptionOBJECTIDESRI software specific field that serves as an index for the database.AssetGroupDomained values defining participation in a Utility Network.AssociationStatusDomained values defining participation in a Utility Network.IsConnectedDomained values defining participation in a Utility Network.GlobalIDESRI software specific field that is automatically assigned by the geodatabase at row creation.cpSubnetworkNameDomained values defining participation in a Utility Network.SystemSubnetworkNameDomained values defining participation in a Utility Network.SewershedSubnetworkNameDomained values defining participation in a Utility Network.LifecycleStatusThe current status of the asset with respect to its location in the asset management lifecycle. Infor required field.InstallDateThe date when the asset was installed. Typically pulled from as-builts for consistency. Infor required field.AssetIDA unique identifier for the asset class.SymbolRotationValue representing the degrees of rotation appropriate for the asset for symbolization purposes.OwnedByDomained values denoting ownership of the asset.MaintByDomained values denoting the responsibility of asset maintenance.NotesA catch all for asset information that doesn't warrant it's own field.SpatialSourceSource of the spatial location of the asset.SpatialConfidenceConfidence of the spatial location of the asset.cpOverrideDomained values defining participation in a Utility Network.cpTraceabilityDomained values defining participation in a Utility Network.DiameterDiameter of the pipe in inches.BendAngleAngle in degrees that the fitting diverts the flow of wastewater.LocationDescriptionInformation related to the construction location or project name. Infor required field.ShapeESRI software specific field denoting the geometry type of the asset.AssetTypeA field to denote the subtype of fitting. Subtypes include: Unknown, Coupling, Cross, Elbow, End Cap, Expansion Joint, Flange, Plug, Reducer, Reducing Cross, Reducing Tee, Saddle, Screw, Sleeve, Tap, Tapping Saddle, Tee, Transition, Weld, and Wye. created_userName of user whom created the asset.created_dateDate when the asset was created.last_edited_userName of user whom most recently edited asset information.last_edited_dateDate when asset was most recently updated.

  7. a

    Sanitary Utility - All Features (DWG)

    • hub.arcgis.com
    • arc-gis-hub-home-arcgishub.hub.arcgis.com
    Updated Oct 23, 2020
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    City of Coquitlam (2020). Sanitary Utility - All Features (DWG) [Dataset]. https://hub.arcgis.com/documents/964e7695c4354f63880864d6cd9801c9
    Explore at:
    Dataset updated
    Oct 23, 2020
    Dataset authored and provided by
    City of Coquitlam
    Description

    Complete Sanitary Utility Network in file DWG format. Consume this dataset if you wish to download the entire Sanitary Utility network dataset at once.

  8. S

    Saudi Arabia Geospatial Analytics Market Report

    • marketreportanalytics.com
    doc, pdf, ppt
    Updated May 6, 2025
    + more versions
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    Market Report Analytics (2025). Saudi Arabia Geospatial Analytics Market Report [Dataset]. https://www.marketreportanalytics.com/reports/saudi-arabia-geospatial-analytics-market-90314
    Explore at:
    pdf, doc, pptAvailable download formats
    Dataset updated
    May 6, 2025
    Dataset authored and provided by
    Market Report Analytics
    License

    https://www.marketreportanalytics.com/privacy-policyhttps://www.marketreportanalytics.com/privacy-policy

    Time period covered
    2025 - 2033
    Area covered
    Saudi Arabia
    Variables measured
    Market Size
    Description

    The Saudi Arabian geospatial analytics market, valued at $400 million in 2025, is poised for significant growth, exhibiting a Compound Annual Growth Rate (CAGR) of 9.22% from 2025 to 2033. This expansion is driven by several key factors. Firstly, substantial investments in infrastructure development, including smart city initiatives and digital transformation across various sectors, are fueling the demand for sophisticated geospatial analytics solutions. Secondly, the Kingdom's strategic focus on Vision 2030, which emphasizes diversification and technological advancement, is creating a favorable environment for the adoption of geospatial technologies across sectors such as agriculture, utilities, defense, and real estate. The increasing availability of high-resolution satellite imagery, coupled with advancements in data analytics and artificial intelligence (AI), further enhances the market's growth trajectory. Government initiatives promoting data sharing and open data platforms are also playing a crucial role. Segmentation reveals that network analysis and geovisualization are experiencing the fastest growth, driven by their applications in urban planning, resource management, and emergency response. Key players, including established technology giants like Microsoft and Esri, as well as specialized geospatial firms, are actively competing in this dynamic market, contributing to innovation and service diversification. Despite the promising outlook, challenges remain. Data security and privacy concerns related to handling sensitive geospatial data pose a significant restraint. Furthermore, the lack of skilled professionals proficient in geospatial analytics and data interpretation could hinder market growth in the short term. Nevertheless, ongoing investments in education and training programs should mitigate this issue. The overall market landscape indicates substantial potential for growth, particularly in leveraging geospatial analytics for sustainable development and effective resource allocation across Saudi Arabia's diverse sectors. The forecast period, spanning from 2025 to 2033, projects substantial market expansion, driven by consistent technological innovation and governmental support for digital transformation. Recent developments include: May 2023: Microsoft introduced three new functions for geospatial analysis in Azure Data Explorer, geo_point_buffer, geo_line_buffer, and geo_polygon_buffer. These functions allow users to create polygonal buffers around geospatial points, lines, or polygons, respectively, and return the resulting geometry. Users can use these functions to perform spatial operations such as intersection, containment, distance, or proximity on user geospatial data or to visualize data on maps., October 2022: ROSHN, the Kingdom of Saudi Arabia's nationwide real estate developer, backed by the government's Public Investment Fund (PIF), supported government efforts to improve homeownership rates while delivering sophisticated living standards. The Saudi Arabia designer built communities that looked to the nation's heritage and evolving resident aspirations. To support its vision and ongoing regional projects, ROSHN signed a memorandum of understanding (MOU) with Esri, the global player in location intelligence., . Key drivers for this market are: Increasing in Demand for Location Intelligence, Advancements of Big Data Analytics. Potential restraints include: Increasing in Demand for Location Intelligence, Advancements of Big Data Analytics. Notable trends are: Geovisualization is Expected to Hold Significant Share of the Market.

  9. a

    Communications Utility - All Features (DWG)

    • hub.arcgis.com
    Updated Oct 29, 2020
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    City of Coquitlam (2020). Communications Utility - All Features (DWG) [Dataset]. https://hub.arcgis.com/documents/23e7c116497545d2960de8b97a32d662
    Explore at:
    Dataset updated
    Oct 29, 2020
    Dataset authored and provided by
    City of Coquitlam
    Description

    Complete Communications Utility Network in CAD format. Consume this dataset if you wish to download the entire Communications Utility network dataset at once.

  10. a

    Stormwater Manhole

    • geohub-corr.hub.arcgis.com
    • geohub.roundrocktexas.gov
    Updated Nov 19, 2024
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    City of Round Rock (2024). Stormwater Manhole [Dataset]. https://geohub-corr.hub.arcgis.com/datasets/stormwater-manhole
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    Dataset updated
    Nov 19, 2024
    Dataset authored and provided by
    City of Round Rock
    Area covered
    Description

    This layer contains the data for the stormwater manholes in the City of Round Rock, located in Williamson County, Texas. This layer is part of an original dataset provided and maintained by the City of Round Rock GIS/IT and Public Works Departments. The data in this layer are represented as points.A manhole is defined as a small, covered opening in a floor, pavement, or other surface to allow a person to enter, especially an opening in a city street leading to a sewer or stormwater drain. This layer includes data about the city's manholes such as addresses, materials, elevations, types, uses, and conditions.

  11. a

    Stormwater Culvert

    • geohub-corr.hub.arcgis.com
    Updated Nov 19, 2024
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    City of Round Rock (2024). Stormwater Culvert [Dataset]. https://geohub-corr.hub.arcgis.com/items/d038b1b4d74f49e4999d10abf75cff13
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    Dataset updated
    Nov 19, 2024
    Dataset authored and provided by
    City of Round Rock
    Area covered
    Description

    This layer contains the data for the stormwater culverts in the City of Round Rock, located in Williamson County, Texas. This layer is part of an original dataset provided and maintained by the City of Round Rock GIS/IT and Public Works Departments. The data in this layer are represented as polylines. A stormwater culvert is structure that allows water to flow under a road, railroad, trail, or similar obstruction, from one side to the other. Typically embedded so as to be surrounded by soil, a culvert may be made from a pipe, reinforced concrete, or other material. This layer contains data about the culverts such as type, length, height, address, slope, elevation, and other data.

  12. a

    WaterDistributionLineCollection

    • data-sarco.opendata.arcgis.com
    Updated Jun 9, 2024
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    Sarasota County GIS (2024). WaterDistributionLineCollection [Dataset]. https://data-sarco.opendata.arcgis.com/maps/a2bf939eb8064879b98c3859743ce7cc
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    Dataset updated
    Jun 9, 2024
    Dataset authored and provided by
    Sarasota County GIS
    Area covered
    Description

    Water Distribution Line Collection contains Water Main and Service Line asset groups. See the Water Data Dictionary for complete descriptions and definitions of each Layer, Asset Group, and Asset Type. The dictionary also provides details of the Utility Network along with attribute field definitions, relationship definitions, tables and attribute domain values.

  13. a

    Telecommunication – SHP

    • hub.arcgis.com
    • test-hub-site-april-4-2025-kamloops.hub.arcgis.com
    Updated May 17, 2016
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    City of Kamloops (2016). Telecommunication – SHP [Dataset]. https://hub.arcgis.com/documents/6a3f36d974924ef38191584ea77cff4a
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    Dataset updated
    May 17, 2016
    Dataset authored and provided by
    City of Kamloops
    Area covered
    Description

    A collection of SHP files containing all the Telecommunication feature classes available for download.

  14. a

    Reuse Fittings

    • geohub-corr.hub.arcgis.com
    Updated Nov 19, 2024
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    Reuse Fittings [Dataset]. https://geohub-corr.hub.arcgis.com/datasets/reuse-fittings-1
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    Dataset updated
    Nov 19, 2024
    Dataset authored and provided by
    City of Round Rock
    Area covered
    Description

    This layer contains the fittings for the water system in the City of Round Rock, located in Williamson County, Texas. This layer is part of an original dataset provided and maintained by the City of Round Rock Department of Utilities and Environmental Services. The data in this layer are represented as points.A fitting, or adapter, is used in pipe systems to connect straight sections of pipe or tube, adapt to different sizes or shapes, and for other purposes such as regulating (or measuring) fluid flow. These fittings are used in plumping to manipulate the conveyance of water, gas, or liquid waste in domestic or commercial environments, within a system of pipes or tubes.

  15. a

    Water Utility (AutoCAD .dwg)

    • data-langleycity.opendata.arcgis.com
    Updated Mar 5, 2021
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    LangleyCityGIS (2021). Water Utility (AutoCAD .dwg) [Dataset]. https://data-langleycity.opendata.arcgis.com/content/1f4194190c5f435b8162bbf6b97aa341
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    Dataset updated
    Mar 5, 2021
    Dataset authored and provided by
    LangleyCityGIS
    License

    https://langleycity.ca/open-data-licensehttps://langleycity.ca/open-data-license

    Description

    This CAD (.dwg) package, (last updated January 3, 2024), contains all the layers within the Water Utility network. The City of Langley has compiled all the Water Utility network layers in one AutoCAD (.dwg) file. CAD layers:Air ValvesAuto FlushersBlowoffsHydrantsMainsMains AnnotationOffsetOffset TextPressure Reducing ValvesPressure ZoneResevoirService LinesService TextValvesZone Valves

  16. a

    SewerNetworkLineCollection

    • hub.arcgis.com
    • data-sarco.opendata.arcgis.com
    Updated Apr 10, 2023
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    Sarasota County GIS (2023). SewerNetworkLineCollection [Dataset]. https://hub.arcgis.com/maps/f829dba0b05c436c84b020b3aef17b08
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    Dataset updated
    Apr 10, 2023
    Dataset authored and provided by
    Sarasota County GIS
    Area covered
    Description

    The Sewer Network Line Collection contains the lines which deliver your utility resource. Lines can be connected to other lines, junctions, and devices. Lines can be contained within assemblies. See the Sewer Data Dictionary for complete descriptions and definitions of each Layer, Asset Group, and Asset Type. The dictionary also provides details of the Utility Network along with attribute field definitions, relationship definitions, tables and attribute domain values.

  17. a

    Storm Network Structures

    • gisdata-csj.opendata.arcgis.com
    • data.sanjoseca.gov
    Updated Aug 28, 2020
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    City of San José (2020). Storm Network Structures [Dataset]. https://gisdata-csj.opendata.arcgis.com/datasets/storm-network-structures/api
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    Dataset updated
    Aug 28, 2020
    Dataset authored and provided by
    City of San José
    License

    MIT Licensehttps://opensource.org/licenses/MIT
    License information was derived automatically

    Area covered
    Description

    Network structure for stormwater system in the City of San Jose, CA.Data is published on Mondays on a weekly basis.

  18. a

    Stormwater Network Structures

    • city-tampa.opendata.arcgis.com
    • hub.arcgis.com
    • +1more
    Updated Nov 3, 2016
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    City of Tampa (2016). Stormwater Network Structures [Dataset]. https://city-tampa.opendata.arcgis.com/datasets/stormwater-network-structures
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    Dataset updated
    Nov 3, 2016
    Dataset authored and provided by
    City of Tampa
    License

    CC0 1.0 Universal Public Domain Dedicationhttps://creativecommons.org/publicdomain/zero/1.0/
    License information was derived automatically

    Area covered
    Description

    Stormwater network structures such as pump stations.Data updated as needed.Data refreshed every 24 hours.

  19. a

    Electric Transformer

    • hub.arcgis.com
    • open.penticton.ca
    Updated Jun 14, 2019
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    CityOfPenticton (2019). Electric Transformer [Dataset]. https://hub.arcgis.com/datasets/8c444473953d4f58858600042a41cf3c
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    Dataset updated
    Jun 14, 2019
    Dataset authored and provided by
    CityOfPenticton
    License

    https://www.penticton.ca/sites/default/files/docs/our-community/maps-gis/2020-07-02-PDF-Open%20Data%20Government%20Licence.pdfhttps://www.penticton.ca/sites/default/files/docs/our-community/maps-gis/2020-07-02-PDF-Open%20Data%20Government%20Licence.pdf

    Area covered
    Description

    Transformer location data within the Electric Utility Network.

  20. a

    Sanitary Sewer Network

    • hub.arcgis.com
    Updated Apr 11, 2024
    + more versions
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    City of Norman (2024). Sanitary Sewer Network [Dataset]. https://hub.arcgis.com/datasets/217e79f5ca534e6bba4f1d8668b4b676
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    Dataset updated
    Apr 11, 2024
    Dataset authored and provided by
    City of Norman
    License

    MIT Licensehttps://opensource.org/licenses/MIT
    License information was derived automatically

    Area covered
    Description

    This layer tracks sanitary sewer lines in the City of Norman. The layer was developed in 1995, using hard copy maps maintained by the Utilities Department. It has been continually updated since that time using as-built drawings, aerial photography, and GPS data collection. To display data by unique main types, reference the MAIN TYPE field.

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City of Coquitlam (2020). Water Utility - All Features (SHP) [Dataset]. https://hub.arcgis.com/documents/219eaa2029754966a161b33f8b421e50

Water Utility - All Features (SHP)

Explore at:
Dataset updated
Oct 23, 2020
Dataset authored and provided by
City of Coquitlam
Description

Complete Water Utility Network in file shapefile format. Consume this dataset if you wish to download the entire Water Utility network dataset at once.

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