Hydraulic optimization of a combined sewer overflow (CSO) storage facility using numerical and physical modelingA paper submitted to the Journal of Environmental Engineering and Science.

2009 ◽  
Vol 36 (2) ◽  
pp. 363-373 ◽  
Author(s):  
Cheng He ◽  
Jiri Marsalek

A commercially available 3-D computational fluid dynamics (CFD) model (STAR-CD) was used to investigate capacity upgrading options for a combined sewer overflow (CSO) facility of inadequate capacity. The numerical model was verified against the data collected in two physical models. The need for verifying the CFD model was given by the complexity of the CSO facility, which comprises several interconnected tanks. The verified numerical model was then applied to analyze hydraulic conditions in the whole facility for major structural modifications with the aim of reducing or eliminating untreated overflows from the facility. Many scenarios were proposed and tested in the study and the two most promising structural modifications, scenarios 1 and 2, are presented in the paper. Both appeared to meet the design condition of increasing the facility capacity to 60 m3/s, but better performing scenario 1 would be significantly more costly to implement than scenario 2. Even though the study focused on a particular CSO facility, hydraulic conditions in the studied facility represent general flow conditions in typical CSO or stormwater settling facilities and, therefore, the numerical modeling methods used are applicable to solving a wide range of hydraulic problems encountered at similar facilities.

2021 ◽  
Vol 1209 (1) ◽  
pp. 012019
Author(s):  
J Hrudka ◽  
M Šutúš ◽  
M Csóka ◽  
A Raczková ◽  
I Škultétyová

Abstract The paper deals with CFD simulation of a real combined sewer overflow chamber using Ansys fluent software. Simulations are created for various structural modifications. Within the results, the hydraulic parameters of the individual are evaluated with a proposal for optimal operation of the given relief chamber.


1993 ◽  
Vol 27 (5-6) ◽  
pp. 93-104 ◽  
Author(s):  
H. Brombach ◽  
C. Xanthopoulos ◽  
H. H. Hahn ◽  
W. C. Pisano

In 1987 the first vortex solids separator facility in Germany was installed for combined sewer overflow (CSO) control. The separation efficiency was optimized in the hydraulic laboratory using scaled down models with artificial tracers to simulate typical sewage particulates. The station has two parallel operating vortex separators and serves a connected and impervious area of about 11 hectares (ha) and 1,500 people. The specific storage volume of the station is 7.2 m3 per ha. Two evaluation programs were conducted. The first evaluation phase noted the operational reliability, hydraulic loads, overflow frequencies and water mass balances. The second phase monitored separation efficiencies. The evaluation showed that vortex solids separators are now ready for use in CSO control.


2010 ◽  
Vol 82 (5) ◽  
pp. 434-439
Author(s):  
Steven J. Wright ◽  
Saad Ghalib ◽  
Aziz Eloubaidy

Author(s):  
Layane Christine Vieira ◽  
Betina Frigotto De Lima ◽  
Jo�ão Vitor Erlacher De Figueiredo ◽  
Sara Coimbra Da Silva ◽  
Manuella Fagundes Bet ◽  
...  

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