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Numerical Investigation of Coupling Effect in Muitipipe Ceramic Filter Vessel 被引量:2

Numerical Investigation of Coupling Effect in Muitipipe Ceramic Filter Vessel
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摘要 The Reynolds stress transport model and the Eulerian two-fluid model provided by the FLUENT code were applied to evaluate the gas-particle two-phase flow in the ceramic filter vessel. The ceramic filter vessel contains six candle filters, which are arranged in the form of equilateral hexagon. The variation of the areal density of the filter cake during the filtration and the back-pulse process were analyzed. The coupling effect between filters, gas and solid, filtration and pulse cleaning process were investigated, respectively. The numerical results show a good approach to predict the particle distribution in the vessel and the particle deposition on the filter element. This study provides the base for the intensive study on the analysis of the gas-particle flow in the filter vessel. The Reynolds stress transport model and the Eulerian two-fluid model provided by the FLUENT code were applied to evaluate the gas-particle two-phase flow in the ceramic filter vessel. The ceramic filter vessel contains six candle filters, which are arranged in the form of equilateral hexagon. The variation of the areal density of the filter cake during the filtration and the back-pulse process were analyzed. The coupling effect between filters, gas and solid, filtration and pulse cleaning process were investigated, respectively. The numerical results show a good approach to predict the particle distribution in the vessel and the particle deposition on the filter element. This study provides the base for the intensive study on the analysis of the gas-particle flow in the filter vessel.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2008年第4期558-563,共6页 中国化学工程学报(英文版)
基金 the National High Technology Research and Development Program of China(2007AA03Z524)
关键词 多管陶瓷过滤器 耦合效应 数值模拟 气固两相流 multipipe ceramic filter vessel, gas/solid two-phase flow, numerical simulation
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