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Urban Stormwater Control Package for Automated Real-Time Systems
A methodology is presented for automatic computer control of in-line sewer storage as a cost-effective means of limiting water pollution for storm and combined sewer overflows. The methodology called a Stormwater Control Package (SWCP) involves the application of realistic computer models for inflow forecasting, sewer routing, and operational storage control for real-time simulated environments. Controllable in-line storage uses adjustable weirs, valves, or gates in interceptors, laterals, or outfalls to create backwater that is stored to prevent an overflow of untreated stormwater. Because rapid response is needed to deal with the complex flow characteristics occurring during a storm, automated computer control is needed. The control package is applied to San Francisco's Marina Branch of the North Shore Outfalls Consolidation Project to demonstrate SWCP's potential usefulness.
Urban Stormwater Control Package for Automated Real-Time Systems
A methodology is presented for automatic computer control of in-line sewer storage as a cost-effective means of limiting water pollution for storm and combined sewer overflows. The methodology called a Stormwater Control Package (SWCP) involves the application of realistic computer models for inflow forecasting, sewer routing, and operational storage control for real-time simulated environments. Controllable in-line storage uses adjustable weirs, valves, or gates in interceptors, laterals, or outfalls to create backwater that is stored to prevent an overflow of untreated stormwater. Because rapid response is needed to deal with the complex flow characteristics occurring during a storm, automated computer control is needed. The control package is applied to San Francisco's Marina Branch of the North Shore Outfalls Consolidation Project to demonstrate SWCP's potential usefulness.
Urban Stormwater Control Package for Automated Real-Time Systems
J. W. Labadie (Autor:in) / D. M. Morrow (Autor:in) / R. C. Lazaro (Autor:in)
1978
232 pages
Report
Keine Angabe
Englisch
Hydrology & Limnology , Water Pollution & Control , Automatic control , Runoff , Urban areas , Water pollution control , Storm sewers , Combined sewers , Water storage , Routing , Mathematical models , Overflows , Design , Unsteady flow , Friction , Slope , Dynamic programming , Optimization , Field tests , Performance evaluation , Storm water runoff , Urban hydrology , FORCST model , RAFORT model
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