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PMID: 23032760 Published · ppublish English Journal Article

Analytical and numerical modelling of Newtonian and non-Newtonian liquid in a rotational cross-flow MBR.

Bentzen TR, Ratkovich N, Madsen S, Jensen JC, Bak SN, Rasmussen MR

Abstract

Fouling is the main bottleneck of the widespread use of MBR systems. One way to decrease and/or control fouling is by process hydrodynamics. This can be achieved by the increase of liquid cross-flow velocity. In rotational cross-flow MBR systems, this is attained by the spinning of, for example, impellers. Validation of the CFD (computational fluid dynamics) model was made against laser Doppler anemometry (LDA) tangential velocity measurements (error less than 8%) using water as a fluid. The shear stress over the membrane surface was inferred from the CFD simulations for water. However, activated sludge (AS) is a non-Newtonian liquid, for which the CFD model was modified incorporating the non-Newtonian behaviour of AS. Shear stress and area-weighted average shear stress relationships were made giving error less that 8% compared with the CFD results. An empirical relationship for the area-weighted average shear stress was developed for water and AS as a function of the angular velocity and the total suspended solids concentration. These relationships can be linked to the energy consumption of this type of systems.

MeSH 主题词
Biofouling Bioreactors Hydrodynamics Models, Theoretical Stress, Mechanical
作者与单位
共 6 位作者,点击展开单位 / ORCID
Bentzen T R
Department of Civil Engineering, Aalborg University, Aalborg, Denmark. [email protected]
Ratkovich N
Madsen S
Jensen J C
Bak S N
Rasmussen M R
Article Info
Journal
Water science and technology : a journal of the International Association on Water Pollution Research
Abbr.
Water Sci Technol
ISSN
0273-1223
Corresponding email
Published
2012-00-00
页码
2318-27
Language
English
Country/Region
England
NLM ID
9879497
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