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Statements

Subject Item
dbr:Utility_location
dbo:wikiPageWikiLink
dbr:Subsurface_utility_engineering
Subject Item
dbr:List_of_engineering_branches
dbo:wikiPageWikiLink
dbr:Subsurface_utility_engineering
Subject Item
dbr:Subsurface_utilities
dbo:wikiPageWikiLink
dbr:Subsurface_utility_engineering
Subject Item
dbr:Utility_cut
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dbr:Subsurface_utility_engineering
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Subsurface utility engineering
rdfs:comment
Subsurface utility engineering (SUE) refers to a branch of engineering that involves managing certain risks associated with utility mapping at appropriate quality levels, utility coordination, utility relocation design and coordination, utility condition assessment, communication of utility data to concerned parties, utility relocation cost estimates, implementation of utility accommodation policies, and utility design.
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dbc:Civil_engineering dbc:Subterranea_(geography) dbc:Geotechnical_engineering
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41259155
dbo:wikiPageRevisionID
1008879774
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dbc:Geotechnical_engineering dbr:Geophysical dbc:Civil_engineering dbr:Engineering dbr:American_Society_of_Civil_Engineers dbr:Utility_location dbr:Computer-aided_design dbc:Subterranea_(geography) dbr:GIS dbr:Vacuum_excavation
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dbo:abstract
Subsurface utility engineering (SUE) refers to a branch of engineering that involves managing certain risks associated with utility mapping at appropriate quality levels, utility coordination, utility relocation design and coordination, utility condition assessment, communication of utility data to concerned parties, utility relocation cost estimates, implementation of utility accommodation policies, and utility design. The SUE process begins with a work plan that outlines the scope of work, project schedule, levels of service vs. risk allocation and desired delivery method. Non-destructive surface geophysical methods are then leveraged to determine the presence of subsurface utilities and to mark their horizontal position on the ground surface. Vacuum excavation techniques are employed to expose and record the precise horizontal and vertical position of the assets. This information is then typically presented in CAD format or a GIS-compatible map. A conflict matrix is also created to evaluate and compare collected utility information with project plans, identify conflicts and propose solutions. The concept of SUE is gaining popularity worldwide as a framework to mitigate costs associated with project redesign and construction delays and to avoid risk and liability that can result from damaged underground utilities.
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