cfd simulation of single- and multi-phase flows through submerged membrane units with irregular fiber arrangement:具有不规则纤维排列的膜单元的单、多相流动的计算流体力学.pdfVIP

cfd simulation of single- and multi-phase flows through submerged membrane units with irregular fiber arrangement:具有不规则纤维排列的膜单元的单、多相流动的计算流体力学.pdf

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cfd simulation of single- and multi-phase flows through submerged membrane units with irregular fiber arrangement:具有不规则纤维排列的膜单元的单、多相流动的计算流体力学

Journal of Membrane Science 384 (2011) 184–197 Contents lists available at SciVerse ScienceDirect Journal of Membrane Science j o u r na l h o me p a g e : w w w. elsev /locate/memsc i CFD simulation of single- and multi-phase flows through submerged membrane units with irregular fiber arrangement Steffen Buetehorn a,∗ , Dirk Volmering b , Klaus Vossenkaul b , Thomas Wintgens a,c , Matthias Wessling a , Thomas Melin a a Chemical Process Engineering – AVT.CVT, RWTH Aachen University, Turmstraße 46, 52056 Aachen, Germany b Koch Membrane Systems GmbH, Kackertstraße 10, 52072 Aachen, Germany c Institute for Ecopreneurship – IEC, University of Applied Sciences Northwestern Switzerland, Gruendenstrasse 40, CH-4132 Muttenz, Switzerland a r t i c l e i n f o a b s t r a c t Article history: The performance of submerged membrane bioreactors (sMBRs) treating municipal or industrial Received 10 July 2011 wastewater is significantly affected by hydrodynamic conditions in the membrane unit. These hydraulics Received in revised form are induced by air bubbles injected into the stagnant suspension to remove the cake layer. The aeration 12 September 2011 sequence consumes the biggest proportion of the overall energy input of sMBRs. Therefore, the objective Accepted 14 September 2011 of this study was to investigate the impact of irregular fiber arrangement on the aeration efficiency. For Available online 17 September 2011

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