This project is located on South Cedar Street between Stadium View Drive and Westmere Avenue. The existing drainage system consists of a culvert under a city-maintained road. The improvements include culvert and pipe system upgrades.
74505 Asphalt, Aggregate
This project is located on South Cedar Street between Stadium View Drive and Westmere Avenue. The existing drainage system consists of a culvert under a city-maintained road. The improvements include culvert and pipe system upgrades.
The Delane Ave 1220 storm drainage improvement project will make drainage improvements along Delane Ave from Wright Ave to approximately 80 ft past Castleton Rd. Drainage and water line improvements will be made along Castleton Rd from Delane Ave to Lomax Ave. Improvements will consist of new drainage structure, new pipe alignments, curb and gutter along Delane Ave, and the extension of a 6” water line down Castleton Rd.
Work performed under this contract will consist of storm water infrastructure repair and improvement projects within the city limits of Charlotte, NC. Work will involve mobilization, earthwork, drainage structures, storm drain pipe systems, channels, working over, under, near, and around existing private utilities, asphalt paving, concrete flatwork, and landscaping and any associated work required by the Engineer. Other work may include structural foundation protection, storm water pipe lining, storm water pipe joint and structure repair, water and sewer (relocations, installations and adjustments). Storm Water maintenance work may be located entirely within or a combination of the street right-of-way, private, residential, and commercial properties.
The Craighead/Tryon Storm Drainage Improvement Project is bordered by Glory Street to the north, Little Sugar Creek to the south, Sugar Creek Road to the east and Craighead Road to the west. The existing drainage system consists of pipe system under city-maintained road, state-maintained road, and private property. The improvements include pipe system upgrades.
This project is located on Gaynelle Drive between Langley Circle and Running Wood Lane. The existing drainage system consists of open channel and a culvert under a city-maintained road. The culvert system is experiencing blockages and is prone to flooding. This project consists of replacing 60 LF of existing 72” X 85” CMP with 60 LF of a 11’X5’ RCBC.
Collective Storm Drainage Improvement Project (SDIP) Series T contains five separate storm water infrastructure repair and improvement projects within the city limits of Charlotte, NC. Work will involve mobilization, earthwork,
drainage structures (standard and non-standard), storm drainpipe systems, working over, under, near, and around existing private utilities, asphalt paving, concrete flatwork, water and sewer (relocations, installations and adjustments), foundation protection and any other associated work required by the Engineer. Storm Water maintenance work may be located entirely within or a combination of the street right-of-way, private, residential and commercial properties.
This project will install a bridge over Hoover Creek connecting two ends of Rivergate Parkway. The project will provide vehicular and pedestrian access between neighborhoods and local retail. The project amenities include: a new bridge, sidewalk, curb and gutter, milling, asphalt pavement, pavement markings and related activities.
This project will complete a new segment of XCLT approximately 2.0 miles in length, extending from Orr Road at Tryon Street to Rocky River Road. It is anticipated that the alignment will generally follow the Master Plan alignment. The trail cross section will be narrower in some sections along Orr Road and will follow Toby Creek on the south side until reaching Rocky River Road where the XCLT connects to existing Toby Creek Greenway.
This project consists of multiple isolated storm drainage improvements projects located throughout the City of Charlotte. Projects include storm drainage replacement and sewer relocations within the street right-of-way and private, residential properties.