An investigation into flow mode transition and pressure fluctuations for fluidized dense-phase pneumatic conveying of fine powders

被引:15
作者
Mittal, A. [1 ]
Mallick, S. S. [1 ]
Wypych, P. W. [2 ]
机构
[1] Thapar Univ, Dept Mech Engn, Patiala 147004, Punjab, India
[2] Univ Wollongong, Fac Engn & Informat Sci, Wollongong, NSW 2500, Australia
来源
PARTICUOLOGY | 2014年 / 16卷
关键词
Fluidized dense-phase; Pneumatic conveying; Fine powders; Shannon entropy; Flow transition; Particle turbulence; SHANNON ENTROPY ANALYSIS; DYNAMIC-BEHAVIOR; SYSTEMS; BED; PELLETS;
D O I
10.1016/j.partic.2014.03.006
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
This paper presents the results of an ongoing investigation into the fluctuations of pressure signals due to solids-gas flows for dense-phase pneumatic conveying of fine powders. Pressure signals were obtained from pressure transducers installed along different locations of a pipeline for the fluidized dense-phase pneumatic conveying of fly ash (median particle diameter 30 mu m; particle density 2300 kg/m(3); loose-poured bulk density 700 kg/m(3)) and white powder (median particle diameter 55 mu m; particle density 1600 kg/m(3); loose-poured bulk density 620 kg/m3) from dilute to fluidized dense-phase. Standard deviation and Shannon entropy were employed to investigate the pressure signal fluctuations. It was found that there is an increase in the values of Shannon entropy and standard deviation for both of the products along the flow direction through the straight pipe sections. However, both the Shannon entropy and standard deviation values tend to decrease after the flow through bend(s). This result could be attributed to the deceleration of particles while flowing through the bends, resulting in dampened particle fluctuation and turbulence. Lower values of Shannon entropy in the early parts of the pipeline could be due to the non-suspension nature of flow (dense-phase), i.e., there is a higher probability that the particles are concentrated toward the bottom of pipe, compared with dilute-phase or suspension flow (high velocity), where the particles could be expected to be distributed homogenously throughout the pipe bore (as the flow is in suspension). Changes in straight-pipe pneumatic conveying characteristics along the flow direction also indicate a change in the flow regime along the flow. (C) 2014 Published by Elsevier B.V. on behalf of Chinese Society of Particuology and Institute of Process Engineering, Chinese Academy of Sciences.
引用
收藏
页码:187 / 195
页数:9
相关论文
共 19 条
[1]   PRESSURE-FLUCTUATIONS IN PNEUMATIC CONVEYING SYSTEMS [J].
DHODAPKAR, SV ;
KLINZING, GE .
POWDER TECHNOLOGY, 1993, 74 (02) :179-195
[2]   SHANNON ENTROPY ANALYSIS OF DYNAMIC BEHAVIOR OF GELDART GROUP B AND GELDART GROUP D PARTICLES IN A FLUIDIZED BED [J].
Duan, Feng ;
Cong, Shengquan .
CHEMICAL ENGINEERING COMMUNICATIONS, 2013, 200 (04) :575-586
[3]   Signal modelling and algorithms for parameter estimation in pneumatic conveying [J].
Fuchs, Anton ;
Zangl, Hubert ;
Wypych, Peter .
POWDER TECHNOLOGY, 2007, 173 (02) :126-139
[4]   Dynamics of pressure fluctuation in a bubbling fluidized bed at high temperature [J].
Guo, QJ ;
Yue, GX ;
Werther, J .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2002, 41 (14) :3482-3488
[5]   An investigation of the prevailing flow patterns and pressure fluctuation near the pressure minimum and unstable conveying zone of pneumatic transport systems [J].
Jama, GA ;
Klinzing, GE ;
Rizk, F .
POWDER TECHNOLOGY, 2000, 112 (1-2) :87-93
[6]   Analysis of unstable behavior of pneumatic conveying systems [J].
Jama, GA ;
Klinzing, GE ;
Rizk, F .
PARTICULATE SCIENCE AND TECHNOLOGY, 1999, 17 (1-2) :43-68
[7]   Investigations of flow instabilities within the dense pneumatic conveying system [J].
Jaworski, AJ ;
Dyakowski, T .
POWDER TECHNOLOGY, 2002, 125 (2-3) :279-291
[8]   Solids friction factors for fluidized dense-phase conveying [J].
Jones, MG ;
Williams, KC .
PARTICULATE SCIENCE AND TECHNOLOGY, 2003, 21 (01) :45-56
[9]   Application of wavelet multi-resolution analysis to pressure fluctuations of gas-solid two-phase flow in a horizontal pipe [J].
Li, H .
POWDER TECHNOLOGY, 2002, 125 (01) :61-73
[10]  
Marcus R.D., 1990, PNEUMATIC CONVEYING