Affiliation:
1. e-mail:
2. Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801
Abstract
Fouling mechanisms and models for flux decline are investigated with a three-dimensional simulation of the tortuous, verisimilar geometry of an α-alumina microfilter. Reconstruction of the three-dimensional geometry was accomplished from two-dimensional cross-sectional cuts. A wall collision model and a particle trapping model are developed for the investigation of fouling mechanisms. The reconstructed geometry and the two models were used in computational fluid dynamics to simulate metalworking colloidal particles travelling through and becoming trapped in the tortuous pore paths of a microfilter. Results reveal sharp flux decline initiating from partial pore blocking and subdued flux decline transitioning to cake layer development with steady-state flow. This flow behavior is in agreement with experimental data from earlier studies. The inclusion of the wall collision model and particle trapping model enabled the revelation of cake layer development as a fouling mechanism. Additional simulations of microfilters at different particle size distributions were conducted and discussed.
Subject
Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering
Reference16 articles.
1. Optimization of Metalworking Fluid Microemulsion Surfactant Concentrations for Microfiltration Recycling;Environ. Sci. Technol.,2006
2. Purification of Semi-Synthetic Metalworking Fluids by Microfiltration;Tribol Lubr. Technol.,2004
3. The Impact of Surface Forces on Particle Flow and Membrane Fouling in the Microfiltration of Metalworking Fluids;ASME J. Manuf. Sci. Eng.,2010
4. Experimental Investigation of Membrane Fouling Due to Microfiltration of Semi-Synthetic Metalworking Fluids;Trans. NAMRI/SME,2005
5. The Behavior of Suspensions and Macromolecular Solutions in Crossflow Microfiltration;J. Membr. Sci.,1994
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