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contributor authorK. Fei
contributor authorC. H. Cheng
contributor authorC. W. Hong
date accessioned2017-05-09T00:20:35Z
date available2017-05-09T00:20:35Z
date copyrightMay, 2006
date issued2006
identifier issn2381-6872
identifier otherJFCSAU-28925#180_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/134075
description abstractThis paper presents the bubble transport phenomenon at the anode of a micro-direct methanol fuel cell (μDMFC) from a mesoscopic viewpoint. Carbon dioxide bubbles generated at the anode may block part of the catalyst/diffusion layer and also the flow channels that cause the μDMFC malfunction. Lattice-Boltzmann simulations were performed in this paper to simulate the two-phase flow in a microchannel with an orifice which emulates the bubble dynamics in a simplified porous diffusion layer and in the flow channel. A two-dimensional, nine-velocity model was established. The buoyancy force, the liquid-gas surface tension, and the fluid-solid wall interaction force were considered and they were treated as source terms in the momentum equation. Simulation results and parametric studies show that the pore size, the fluid stream flow rate, the bubble surface tension, and the hydrophilic effect between the fluid and the solid wall play the major roles in the bubble dynamics. Larger pore size, higher methanol stream flow rate, and greater hydrophilicity are preferred for bubble removal at the anode diffusion layer and also the flow channels of the μDMFC.
publisherThe American Society of Mechanical Engineers (ASME)
titleLattice Boltzmann Simulations of CO2 Bubble Dynamics at the Anode of a μDMFC
typeJournal Paper
journal volume3
journal issue2
journal titleJournal of Fuel Cell Science and Technology
identifier doi10.1115/1.2174067
journal fristpage180
journal lastpage187
identifier eissn2381-6910
keywordsFluids
keywordsChannels (Hydraulic engineering)
keywordsAnodes
keywordsBubbles
keywordsEngineering simulation
keywordsDirect methanol fuel cells
keywordsHydrophilicity
keywordsDynamics (Mechanics)
keywordsForce
keywordsSurface tension
keywordsFlow (Dynamics)
keywordsMethanol
keywordsLattice Boltzmann methods
keywordsDiffusion (Physics)
keywordsBuoyancy
keywordsMicrochannels
keywordsSimulation results
keywordsMomentum AND Slug
treeJournal of Fuel Cell Science and Technology:;2006:;volume( 003 ):;issue: 002
contenttypeFulltext


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