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Hydrodynamics of three-phase fluidization of homogeneous ternary mixture in a conical conduit——Experimental and statistical analysis
作者姓名:R. K. Padhi  D. T. K. Dora  Y. K. Mohanty  G. K. Roy  B. Sarangi
作者单位:1.Department of Chemical Engineering, GIET, Gunupur-765 022, Rayagada, Odisha, India;2.Department of Metallurgical Engineering, IGIT, Saranga, Dhenkanal, Odisha, India
摘    要:Hydrodynamics of conical fluidized bed differ from that of columnar beds by the fact that a velocity gradient exists along the axial direction of the bed.The gas–liquid–solid fluidized bed has emerged in recent years as one of the most promising devices for three-phase operations.Such a device is of considerable industrial importance as evident from its wide applications in chemical,refining,petrochemical,biochemical processing,pharmaceutical and food industries.To explore this,a series of experiments have been carried out for homogeneous well-mixed ternary mixtures of dolomite of varying compositions in a three-phase conical fluidized bed.The hydrodynamic characteristics determined included the bed pressure drop,bed fluctuation and bed expansion ratios.The single and combined effects of operating parameters such as superficial gas velocity,superficial liquid velocity,initial static bed height,average particle size and cone angle on the responses have been analyzed using response surface methodology(RSM).A 25 full factorial central composite experimental design has been employed.Analysis of variance(ANOVA) showed a high coefficient of determination value and satisfactory prediction second-order regression models have been derived.Experimental values of bed pressure drop,bed fluctuation and bed expansion ratios have been found to agree well with the developed correlations.

关 键 词:Gas-liquid-solid  fluidization  Conical  bed  Bed  pressure  drop  Bed  fluctuation  ratio  and  bed  expansion  ratio  ANOVA  
收稿时间:2015-09-10

Hydrodynamics of three-phase fluidization of homogeneous ternary mixture in a conical conduit-Experimental and statistical analysis
R. K. Padhi,D. T. K. Dora,Y. K. Mohanty,G. K. Roy,B. Sarangi.Hydrodynamics of three-phase fluidization of homogeneous ternary mixture in a conical conduit-Experimental and statistical analysis[J].Chinese Journal of Chemical Engineering,2016,24(10):1335-1343.
Authors:RK Padhi  DTK Dora  YK Mohanty  GK Roy  B Sarangi
Affiliation:1.Department of Chemical Engineering, GIET, Gunupur-765 022, Rayagada, Odisha, India;2.Department of Metallurgical Engineering, IGIT, Saranga, Dhenkanal, Odisha, India
Abstract:Hydrodynamics of conical fluidized bed differ from that of columnar beds by the fact that a velocity gradient exists along the axial direction of the bed. The gas–liquid–solid fluidized bed has emerged in recent years as one of the most promising devices for three-phase operations. Such a device is of considerable industrial importance as evident from its wide applications in chemical, refining, petrochemical, biochemical processing, pharmaceutical and food industries. To explore this, a series of experiments have been carried out for homogeneous wel-mixed ternary mixtures of dolomite of varying compositions in a three-phase conical fluidized bed. The hydrodynamic characteristics determined included the bed pressure drop, bed fluctuation and bed expansion ratios. The single and combined effects of operating parameters such as superficial gas velocity, superficial liquid velocity, initial stat-ic bed height, average particle size and cone angle on the responses have been analyzed using response surface methodology (RSM). A 25 ful factorial central composite experimental design has been employed. Analysis of var-iance (ANOVA) showed a high coefficient of determination value and satisfactory prediction second-order regres-sion models have been derived. Experimental values of bed pressure drop, bed fluctuation and bed expansion ratios have been found to agree well with the developed correlations.
Keywords:Gas-liquid-solid fluidization  Conical bed  Bed pressure drop  Bed fluctuation ratio and bed expansion ratio  ANOVA
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