Experimental estimation of the settling velocity and drag coefficient of the hollow cylindrical particles settling in non-Newtonian fluids in an annular channel

被引:6
|
作者
Mohammad, Hussain [1 ]
Munshi, Basudeb [1 ]
机构
[1] NIT Rourkela, Dept Chem Engn, Lab Transport Phenomenon, Rourkela 769008, Orissa, India
来源
关键词
drag coefficient; hollow cylindrical particles; Reynold's number; terminal velocity; wall factor; TERMINAL VELOCITY; ORGANIC-COMPOUNDS; BED; HYDRODYNAMICS; DEGRADATION; CYLINDERS; MOTION;
D O I
10.1002/cjce.24909
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The drag coefficient data of particles settling in an annular channel is very much essential for designing different solid-fluid handling equipment, such as the fluidized bed. Experimental settling velocity, wall factor, and drag coefficient data of the hollow-cylinder particle are presented. Carboxymethyl cellulose solution has been used as the working fluid with a flow index of 0.64 < n < 0.91 and a consistency index of 0.31 < K < 1.81. The experimental results covered a wide diameter ratio range (0.14 < deq/L < 0.46), hollow cylinder inner to outer diameter ratio (0.2 < di/do <0.8), and Reynolds number (0.05 < Re < 51 and 0.09 < Re, < 55). deq, di, and do are the equivalent inner and outer diameters of the particle, L is the annular gap, and Re and Re, are the Reynolds numbers in the presence and absence of the wall effect, respectively. The wall factor decreased, and the drag coefficient increased with deq/L and di/do ratios. The above parameters declined with the Reynolds number. The hollow cylinder experienced a lesser wall effect than the spherical particles settling in a non-annular channel. In some cases, the wall factor of the hollow cylinder is found to be equal to the spherical particles settling in an annular channel. The developed correlations have successfully predicted the drag coefficients of the hollow cylinder.
引用
收藏
页码:6632 / 6640
页数:9
相关论文
共 50 条
  • [31] Measurement and evaluation of drag coefficient for settling of spherical particles in pseudoplastic fluids
    Matijasic, G.
    Glasnovic, A.
    2001, Assoc. of Chemists and Chemical Engineers of Croatia (15)
  • [32] Drag coefficient and settling velocity of fine particles with varying surface wettability
    Wang, Lijun
    Zheng, Kaixin
    Ding, Ziyang
    Yan, Xiaokang
    Zhang, Haijun
    Cao, Yijun
    Guo, Chuwen
    POWDER TECHNOLOGY, 2020, 372 : 8 - 14
  • [33] Effects of salinity on solid particle settling velocity in non-Newtonian Herschel-Bulkley fluids
    Moukhametov, Robert
    Srivastava, Anurag
    Akhter, Syeda
    Bautista, Jerahmeel
    Ferroudji, Hicham
    Hadear, Hassan
    Hassan, Ibrahim
    Rahman, Mohammad Azizur
    JOURNAL OF PETROLEUM EXPLORATION AND PRODUCTION TECHNOLOGY, 2021, 11 (08) : 3333 - 3347
  • [34] Non-Newtonian effects on solid particles settling in sharp stratification
    Amooshahi, Sajad
    Bayareh, Morteza
    FLUID DYNAMICS RESEARCH, 2020, 52 (02)
  • [35] Prediction of drag coefficient and ultimate settling velocity for high-density spherical particles in a cylindrical pipe
    Chen, Jie
    Li, JingYin
    PHYSICS OF FLUIDS, 2020, 32 (05)
  • [36] Development of Elastic Drag Coefficient Model and Explicit Terminal Settling Velocity Equation for Particles in Viscoelastic Fluids
    Xu, Zhengming
    Song, Xianzhi
    Zhu, Zhaopeng
    SPE JOURNAL, 2020, 25 (06): : 2962 - 2983
  • [37] Wall-retardation effects on particles settling through non-Newtonian fluids in parallel plates
    Guo-Dong Zhang
    Ming-Zhong Li
    Jian-Quan Xue
    Lei Wang
    Jin-Lin Tian
    Chemical Papers, 2016, 70 : 1389 - 1398
  • [38] Wall-retardation effects on particles settling through non-Newtonian fluids in parallel plates
    Zhang, Guo-Dong
    Li, Ming-Zhong
    Xue, Jian-Quan
    Wang, Lei
    Tian, Jin-Lin
    CHEMICAL PAPERS, 2016, 70 (10) : 1389 - 1398
  • [39] PRESSURE-DROP INDUCED BY A SPHERE SETTLING IN NON-NEWTONIAN FLUIDS
    RIBEIRO, GS
    VARGAS, AS
    FROTA, MN
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 1994, 20 (02) : 355 - 362
  • [40] Estimation of shear rate change in vertically oscillating non-Newtonian fluids: Predictions on particle settling
    Amaratunga, Maduranga
    Rabenjafimanantsoa, Herimonja A.
    Time, Rune W.
    JOURNAL OF NON-NEWTONIAN FLUID MECHANICS, 2020, 277