Measurement of solids holdup in a gas–solid fluidized bed: an experimental, statistical and ANN approach

被引:0
|
作者
Mona Mary Varghese
Aiswaria P.
Teja Reddy Vakamalla
Narasimha Mangadoddy
机构
[1] National Institute of Technology Calicut,Department of Chemical Engineering
[2] Indian Institute of Technology Hyderabad,Department of Chemical Engineering
关键词
Gas–solid fluidized bed; Optical fiber probe; Particle size; Solids holdup; Statistical tools; ANN;
D O I
暂无
中图分类号
学科分类号
摘要
This study quantitatively measures the solid flow properties using an optical fiber probe (OFP) in a 0.105 m diameter cylindrical lab-scale gas–solid fluidized bed. The influence of superficial gas velocities and static bed heights on particles of different size ranges of Geldart B classification (100–200 µm, 200–300 µm, and 400–600 µm) are systematically analyzed. An increment in the local and cross-sectional mean solids holdup is observed with the column static bed height along with the axial and radial directions. A reduction in the cross-sectional mean solids holdup is noted with the superficial gas velocity at different axial positions. It is observed that the local solids holdup is greater near the wall than at the center of the column along the radial direction. With the increase in particle size, a higher value of both local and cross-sectional mean solids holdup is noticed at different axial positions. In addition, various statistical tools such as the intermittency index, radial non-uniformity index, and kurtosis are used to analyze the solids distribution behavior inside the fluidized bed. The results showed an increased value of non-uniformity in voidage with higher gas velocities. Furthermore, the intermittency value indicates higher fluctuations in the bed center than the wall. Finally, the artificial neural network (ANN) model is developed for solids holdup with five input variables. A single hidden layer with nine neurons accurately predicted the solids holdup.
引用
收藏
页码:493 / 510
页数:17
相关论文
共 50 条
  • [31] Particle Holdup in a Liquid-Solid Circulating Fluidized Bed
    Hashizume, Kenichi
    Morita, Shinichi
    HEAT TRANSFER-ASIAN RESEARCH, 2008, 37 (03): : 184 - 196
  • [32] HOLDUP AND FLOW PATTERN OF SOLID PARTICLES IN FREEBOARD OF GAS-SOLID FLUIDIZED-BED WITH FINE PARTICLES
    MOROOKA, S
    KAWAZUISHI, K
    KATO, Y
    POWDER TECHNOLOGY, 1980, 26 (01) : 75 - 82
  • [33] A Model to Predict Radial Solids Holdup and Liquid Velocity Distributions in Liquid-Solid Circulating Fluidized Bed
    Palani, Natarajan
    Velraj, R.
    Seeniraj, R. V.
    CHEMICAL PRODUCT AND PROCESS MODELING, 2007, 2 (03):
  • [34] Probe effects on the local gas holdup conditions in a fluidized bed
    Whitemarsh, Emily A.
    Escudero, David R.
    Heindel, Theodore J.
    POWDER TECHNOLOGY, 2016, 294 : 191 - 201
  • [35] NEAR-WAKE STRUCTURE OF A SINGLE GAS BUBBLE IN A TWO-DIMENSIONAL LIQUID-SOLID FLUIDIZED-BED - SOLIDS HOLDUP
    KITANO, K
    FAN, LS
    CHEMICAL ENGINEERING SCIENCE, 1988, 43 (06) : 1355 - 1361
  • [36] Discrete particle simulation of solids motion in a gas-solid fluidized bed
    Limtrakul, S
    Chalermwattanatai, A
    Unggurawirote, K
    Tsuji, Y
    Kawaguchi, T
    Tanthapanichakoon, W
    CHEMICAL ENGINEERING SCIENCE, 2003, 58 (3-6) : 915 - 921
  • [37] SOLIDS MIXING AND SEGREGATION IN A GAS-LIQUID-SOLID FLUIDIZED-BED
    FAN, LS
    YAMASHITA, T
    JEAN, RH
    CHEMICAL ENGINEERING SCIENCE, 1987, 42 (01) : 17 - 25
  • [38] SOLIDS MIXING IN A TAPERED ANNULAR GAS-SOLID FLUIDIZED-BED
    KRISHNAMURTHY, K
    SUBBARAO, S
    VARMA, YBG
    INDIAN JOURNAL OF TECHNOLOGY, 1991, 29 (04): : 186 - 190
  • [39] Quantitative Measurement of Solids Holdup for Group A and B Particles Using Images and Its Application in Fluidized Bed Reactors
    Wang, Chengxiu
    Li, Zhihui
    Wei, Jianjin
    Lan, Xingying
    Ye, Mao
    Gao, Jinsen
    PROCESSES, 2022, 10 (03)
  • [40] Solid holdup in liquid solid circulating fluidized bed with viscous liquid medium
    Gnanasundaram, Nirmala
    Loganathan, Muruganandam
    Perumal, Kumar
    ALEXANDRIA ENGINEERING JOURNAL, 2014, 53 (04) : 959 - 968