ANALYSIS OF LIQUID FLOW-THROUGH CERAMIC POROUS-MEDIA USED FOR MOLTEN-METAL FILTRATION

被引:36
作者
ACOSTA, FA
CASTILLEJOS, AH
ALMANZA, JM
FLORES, A
机构
[1] Investigation Center and Advanced Studies of the Ipn, Cinvestav-Unidad Saltillo, Saltillo, Coah
来源
METALLURGICAL AND MATERIALS TRANSACTIONS B-PROCESS METALLURGY AND MATERIALS PROCESSING SCIENCE | 1995年 / 26卷 / 01期
关键词
D O I
10.1007/BF02648988
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A two-dimensional mathematical model has been developed to study fluid now inside ceramic foam filters, used for molten metal filtration, as a function of their structural characteristics. The model is based on the selection of a unit cell, geometric model, formed by two interconnected half-pores. The good agreement between experimental and computed permeabilities showed that the unit cell model approximates very well the effect of filter structure on the flow conditions inside the filter. The validity of the model is supported by the fact that permeabilities are calculated from directly measured structural parameters, i.e., without the introduction of any fitting variable, such as tortuosity. The laminar flow solutions for the Navier-Stokes equation, in steady state, were obtained numerically using the control-volume method. The boundary of the unit cell was represented through axisymmetrical, body-fitted coordinates to obtain a better representation of the complex pore shape. The generality of the model, to study fluid flow in reticulated media, was tested by comparing the computed specific permeabilities with values measured for ceramic foam filters and for the new ceramic filter of lost packed bed (CEFILPB). Such a comparison shows good agreement and discloses a fundamental property of the last kind of porous medium: the critical porosity. The model indicates how porosity and pore dimensions of reticulated filters may be tailored to meet specific fluid flow requirements.
引用
收藏
页码:159 / 171
页数:13
相关论文
共 25 条
[1]  
ALMANZA JM, 1990, THESIS I TECNOLOGICO
[2]  
APELIAN D, 1982, 111TH P TMS ANN M LI, P935
[3]  
AUBREY LS, 1988, FOUNDRY TRADE J JUN, P37
[4]  
AUBREY LS, 1993, 122ND P TMS ANN M DE, P1009
[5]  
AUBREY LS, 1986, 5TH P INT IR STEEL C, V69, P977
[6]  
CASTILLEJOS AH, 1992, Patent No. 923671
[7]  
CASTILLEJOS AH, 1992, 121ST P TMS ANN M SA, P1113
[8]  
ENGH TA, 1986, 115TH P TMS ANN M NE, P829
[9]  
FRISVOLD F, 1992, 121ST P TMS ANN M SA, P1125
[10]  
GAIRING RW, 1993, IRON STEEL MAKER, V20, P55