TECHNICAL PAPERS
Aug 1, 2008

Integrated Methodology of Design for Construction Site Sedimentation Basins

Publication: Journal of Environmental Engineering
Volume 134, Issue 8

Abstract

The performance of four sedimentation basins (SBs) at a Pennsylvania Department of Transportation I-99 highway construction site was evaluated based on their particle removal ability. Suspended solids data from the basins indicated poor particle removal, peaks in suspended solid concentration that correlated with rainfall peaks and possibility of sediment resuspension. The current Pennsylvania Department of Environmental Protection basis for basin design is the allocation of 28m3 (1,000ft3) of sediment storage zone and 140m3 (5,000ft3) of drainage zone per disturbed acre of the drainage basin. Overflow rate, which is a scientific basis for particle removal, is currently not considered in the design of basins. This paper presents a methodology for developing an integrated design for SBs, applying rainfall probability plots to determine an appropriate basin settling volume. The revised universal soil loss equation is used to identify sediment zone volume, and an overflow rate is determined to design basin surface area. The method presented is a comprehensive procedure for designing SBs with flexibility to choose the extent of particle removal and runoff capture, and to vary construction costs.

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Acknowledgments

This work was sponsored by the Pennsylvania Department of Transportation and the U.S. Department of Transportation, Federal Highway Administration. Site visit, field survey, and collection of water samples from the sedimentation basins were supported by GAI Consultants Inc.

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Published In

Go to Journal of Environmental Engineering
Journal of Environmental Engineering
Volume 134Issue 8August 2008
Pages: 619 - 627

History

Received: Feb 8, 2007
Accepted: Nov 1, 2007
Published online: Aug 1, 2008
Published in print: Aug 2008

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Authors

Affiliations

Sujaya Kalainesan
Design Engineer, California Dept. Transportation, Los Angeles, CA 90012. E-mail: [email protected]
Ronald D. Neufeld, M.ASCE
P.E.
Professor, Dept. of Civil and Environmental Engineering, Univ. of Pittsburgh, Pittsburgh, PA, 15260. E-mail: [email protected]
Rafael Quimpo, M.ASCE
P.E.
Professor, Dept. of Civil and Environmental Engineering, Univ. of Pittsburgh, Pittsburgh, PA, 15260. E-mail: [email protected]
Precha Yodnane, M.ASCE
P.E.
Vice President, GAI Consultants, 385 East Waterfront Dr., Homestead, PA 15120. E-mail: [email protected]

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