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Mathematical model for power consumption at mixing of industrial and domestic wastewater sludge Cover

Mathematical model for power consumption at mixing of industrial and domestic wastewater sludge

Open Access
|Jan 2014

Abstract

Physical investigations have been carried out to characterize the power consumption in a laboratory autoclave vessel equipped with an anchor impeller (diameter d = 0.068 mm), without baffles, at 8 speed ratio, from 100 to 800 rpm. The laminar flow regime was investigated using sludge proceeding from the treatment of mixed industrial and domestic wastewater, with a view to its subsequent processing: mixing, filtration, dewatering. The mathematical modeling focused on finding an accurate equation linking the Power number (Np) and the Reynolds number (Re) at different levels (H) of sludge in the vessel.

The rheological curves indicate that the sludge have non-Newtonian behaviors which are better described by the Herschel-Buckley model. The models resulted from the Np variation versus Re are power function type Np = a ×Reb , where the coefficient a is a linear functions of H/d ratio and b = -1.016 have a constant value.

DOI: https://doi.org/10.2478/auoc-2013-0019 | Journal eISSN: 2286-038X | Journal ISSN: 1583-2430
Language: English
Page range: 115 - 120
Published on: Jan 17, 2014
Published by: Ovidius University of Constanta
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year
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© 2014 Ancaelena Eliza Sterpu, Claudia Irina Koncsag, Anca Iuliana Dumitru, Alina-Daniela Mihalcea, published by Ovidius University of Constanta
This work is licensed under the Creative Commons License.