Urban Drainage Systems: Design and Operation

Author:

Marsalek J.1,Barnwell T. O.2,Geiger W.3,Grottker M.4,Huber W. C.5,Saul A. J.6,Schilling W.7,Torno H. C.7

Affiliation:

1. National Water Research Institute, 867 Lakeshore Road, Burlington, Ontario, Canada, L7R 4A6

2. U.S. Environmental Protection Agency, 960 College Station Road, Athens, GA 30613-0801, USA

3. University of Essen, FB10, Universitätstrasse 15, 4300 Essen 1, Germany

4. EAWAG, Uberlandstrasse 133, CH 8600 Dubendorf, Switzerland

5. University of Oregon, Corvallis, OR, USA

6. University of Sheffield, Department of Civil and Structural Engineering, Sheffield, S1 3JD, UK

7. Victoria. B.C., Canada

Abstract

Design and operation of urban drainage systems are addressed in the context of the urban water system comprising drainage, sewage treatment plants and receiving waters. The planning and design of storm sewers are reviewed with reference to planning objectives, design objectives, flows and pollutant loads, sewer system structures and urban runoff control and treatment. The discussion of combined sewers focuses on hydraulic design of combined sewer systems, including combined sewer overflow (CSO) structures, and the use of CSO structures and storage in control of CSOs. The section on operation of sewer systems focuses on real time control, its feasibility, planning, design, operation and applications. Sewer system planning and design are generally conducted using computer modelling tools and procedures which are reviewed in the last section. A brief listing of selected models focuses on internationally used models. Finally, it was concluded that further improvements in environmental and ecological protection of urban waters is feasible only by consideration of urban drainage systems in conjunctions with sewage treatment and water quality in the receiving waters.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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