Critical modeling parameters identified for 3D CFD modeling of rectangular final settling tanks for New York City wastewater treatment plants

Author:

Ramalingam K.1,Xanthos S.1,Gong M.1,Fillos J.1,Beckmann K.2,Deur A.2,McCorquodale J. A.3

Affiliation:

1. Department of Civil Engineering, The City College of NY, 160 Convent Avenue, NY 10031, USA

2. New York City Department of Environmental Protection, 1 Lefrak City Plaza, 59-17 Junction Blvd., Flushing, NY, USA

3. Department of Civil and Environmental Engineering, University of New Orleans, 2000 Lakeshore Drive, NO, LA, USA

Abstract

New York City Environmental Protection is in the process of incorporating biological nitrogen removal (BNR) in its wastewater treatment plants (WWTPs) which entails operating the aeration tanks with higher levels of mixed liquor suspended solids (MLSS) than a conventional activated sludge process. The objective of this paper is to discuss two of the important parameters introduced in the 3D CFD model that has been developed by the City College of New York (CCNY) group: (a) the development of the ‘discrete particle’ measurement technique to carry out the fractionation of the solids in the final settling tank (FST) which has critical implications in the prediction of the effluent quality; and (b) the modification of the floc aggregation (KA) and floc break-up (KB) coefficients that are found in Parker's flocculation equation (Parker et al. 1970, 1971) used in the CFD model. The dependence of these parameters on the predictions of the CFD model will be illustrated with simulation results on one of the FSTs at the 26th Ward WWTP in Brooklyn, NY.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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