Quantifying lateral solids mixing in a fluidized bed by modeling the thermal tracing method

被引:25
|
作者
Liu, Daoyin [1 ]
Chen, Xiaoping [1 ]
机构
[1] Southeast Univ, Sch Energy & Environm, Nanjing 210096, Jiangsu, Peoples R China
关键词
fluidized bed; solids mixing; dispersion coefficient; thermal tracing method; RESIDENCE TIME DISTRIBUTION; PARTICLE TRACKING; HEAT-TRANSFER; GAS; DISPERSION; SYSTEMS; ZONE; BIOMASS; RISER;
D O I
10.1002/aic.12627
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Thermal tracing is a simple method for studying solids mixing in fluidized beds. However, the measurement of temperatures is influenced by both mixing and heat transfer, which limits its usefulness for inferring mixing quantitatively. In this work, a semiempirical model is developed to quantify lateral solids mixing in fluidized beds. The model couples the tracer mass balance, the enthalpy balance of tracers and bed particles, and the response dynamic of thermometers. A series of tests is pezrformed in a lab-scale fluidized bed, with particle sizes of 0.280.45, 0.450.6, 0.60.8, and 0.81.0 mm, and fluidizing velocity from 0.3 to 2.3 m/s. By evaluating the measured transient temperatures using the model, the lateral dispersion coefficient (Dsr) is determined to be between 0.0002 and 0.0024 m2/s. Its reliability is confirmed by bed collapse experiments. Finally, the values of Dsr is compared with a collection of data in the literature. (c) 2011 American Institute of Chemical Engineers AIChE J, 2012
引用
收藏
页码:745 / 755
页数:11
相关论文
共 50 条
  • [31] Experimental evaluation of lateral mixing of bulk solids in a fluid-dynamically down-scaled bubbling fluidized bed
    Sette, Erik
    Pallares, David
    Johnsson, Filip
    POWDER TECHNOLOGY, 2014, 263 : 74 - 80
  • [32] A Study of the Solids Mixing in a Bubbling Fluidized Bed Using the TFM Method. Part II. Solids Dispersion Coefficient
    X. Xing
    C. Zhang
    B. Jiang
    Y. Sun
    C. Briens
    L. Zhang
    Journal of Engineering Thermophysics, 2022, 31 : 144 - 155
  • [33] A Study of the Solids Mixing in a Bubbling Fluidized Bed Using the TFM Method. Part II. Solids Dispersion Coefficient
    Xing, X.
    Zhang, C.
    Jiang, B.
    Sun, Y.
    Briens, C.
    Zhang, L.
    JOURNAL OF ENGINEERING THERMOPHYSICS, 2022, 31 (01) : 144 - 155
  • [34] CINEMATIC MODELING OF DYNAMICS OF SOLIDS MIXING IN FLUIDIZED-BEDS
    LAKSHMANAN, CC
    POTTER, OE
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1987, 26 (02) : 292 - 296
  • [35] GAS-SOLIDS MIXING AND FLOW STRUCTURE MODELING OF THE UPPER DILUTE ZONE OF A CIRCULATING FLUIDIZED-BED
    KOENIGSDORFF, R
    WERTHER, J
    POWDER TECHNOLOGY, 1995, 82 (03) : 317 - 329
  • [36] MODELING OF CIRCULATING FLUIDIZED-BED SOLIDS FLOW AND DISTRIBUTION
    SENIOR, RC
    BRERETON, C
    CHEMICAL ENGINEERING SCIENCE, 1992, 47 (02) : 281 - 296
  • [37] LATERAL MIXING OF SOLIDS IN GAS SOLID FLUIDIZED-BEDS WITH CONTINUOUS-FLOW OF SOLIDS
    SHI, YF
    FAN, LT
    POWDER TECHNOLOGY, 1985, 41 (01) : 23 - 28
  • [38] A METHOD TO QUANTIFY MIXING IN A TWO COMPONENT FLUIDIZED BED
    Keller, Norman K.
    Heindel, Theodore J.
    PROCEEDINGS OF THE ASME FLUIDS ENGINEERING DIVISION SUMMER CONFERENCE - 2010, VOL 2, 2010, : 275 - 282
  • [39] Residence time distribution and solids mixing of sawdust in a horizontal pulsed fluidized bed
    Wang, Ruixu
    Wang, Ziliang
    Bi, Xiaotao
    Lim, C. Jim
    Sokhansanj, Shahabaddine
    POWDER TECHNOLOGY, 2022, 397
  • [40] MODEL FOR SOLIDS MIXING IN A 2-DIMENSIONAL GAS-FLUIDIZED BED
    SHEN, LH
    ZHANG, MY
    XU, YQ
    CHEMICAL ENGINEERING SCIENCE, 1995, 50 (11) : 1841 - 1844