Evaluating the Effects of Inlet Geometry on the Limiting Flux of Secondary Settling Tanks with CFD Model and 1D Flux Theory Model

Author:

Gao Haiwen1ORCID,Stenstrom M. K.2

Affiliation:

1. Ph.D. Student, Dept. of Civil and Environmental Engineering, Univ. of California, Los Angeles, 6805 Boelter Hall, Los Angeles, CA 90095. ORCID: .

2. Professor, Dept. of Civil and Environmental Engineering, Univ. of California, Los Angeles, 5714 Boelter Hall, Los Angeles, CA 90095 (corresponding author).

Publisher

American Society of Civil Engineers (ASCE)

Subject

General Environmental Science,Civil and Structural Engineering,Environmental Chemistry,Environmental Engineering

Reference30 articles.

1. Bokil S. D. 1972. “Effect of mechanical blending on the aerobic digestion of the waste activated sludge.” Ph.D. thesis Dept. of Civil and Engineering Univ. of Windsor.

2. Burt D. J. 2010. “Improved design of settling tanks using an extended drift flux model.” Ph.D. thesis Dept. of Mechanical Engineering Univ. of Bristol.

3. De Clercq B. 2003. “Computational fluid dynamics of settling tanks: Development of experiments and rheological settling and scraper submodels.” Ph.D. dissertation Dept. of Applied Mathematics Biometrics and Process Control Univ. of Ghent.

4. Role of activated sludge final settling tanks;Dick R. I.;J. Sanitary Eng. Div.,1970

5. Assessing the applicability of the 1D flux theory to full-scale secondary settling tank design with a 2D hydrodynamic model

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