Numerical and experimental study of an innovative design of elbow in the pipe line of a pneumatic conveying system

被引:23
作者
Ghafori, Hasan [1 ]
Sharifi, Mohammad [1 ]
机构
[1] Islamic Azad Univ, Majlesi Branch, Dept Mech Engn, Esfahan, Iran
关键词
CFD; Pressure drop; Elbow; Pneumatic conveying; PHYSICAL-PROPERTIES; SOLID FLOW; BEND; DISPERSION; ROPES;
D O I
10.1016/j.powtec.2018.03.022
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Direction of material flow changes during conveying materials through elbows. In pneumatic conveying systems, direction changes (elbows) cause energy loss and product damage. Various types of elbows are used in the pneumatic conveying systems to solve these problems. This paper introduces a novel solution, named "elbow with auxiliary air". Conventional and three novel elbows (introducing auxiliary air at 45, 60 and 90 to initial flow) were compared numerically and experimentally while conveying corn and barley at 15, 25, 35 and 45 m s(-1). Euler-Lagrangian computational fluid dynamics models were used to solve for pressure distribution and particle trajectories. Numerical model results agreed with empirical experiments results. While conveying corn and barley the average pressure drop for novel elbow with auxiliary air at 45 was 21% less than for the standard elbow. In conventional elbows seeds contacted duct walls multiple times, but rarely contacted them in the 45 elbow with auxiliary air. The novel elbow can reduce pneumatic conveying energy requirements and lessen seed damage and dust generation. (C) 2018 Published by Elsevier B.V.
引用
收藏
页码:171 / 178
页数:8
相关论文
共 50 条
  • [41] CFD MODELLING OF SWIRLING MECHANISM TO REDUCE EROSION OF PIPE BEND IN PNEUMATIC CONVEYING SYSTEM
    Yadav, Bharat Singh
    Chaudhary, Rajiv
    Singh, R. C.
    INTERNATIONAL JOURNAL OF MARITIME ENGINEERING, 2024, 1 (01):
  • [42] An experimental study of energy-saving pneumatic conveying system in a horizontal pipeline with dune model
    Rinoshika, Akira
    Suzuki, Masahito
    POWDER TECHNOLOGY, 2010, 198 (01) : 49 - 55
  • [43] Experimental Research of Granular Silica Pneumatic Conveying System in Tyre Factory
    Li, Yong
    Li, Hongjiang
    Li, Guang
    ADVANCED POLYMER PROCESSING III, 2013, 561 : 244 - +
  • [44] Experimental study on particle fluctuation velocity of a horizontal pneumatic conveying near the minimum conveying velocity
    Rinoshika, Akira
    Yan, Fei
    Kikuchi, Masanori
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2012, 40 : 126 - 135
  • [45] The design of the control system of pneumatic conveying for coal ash based on PLC
    Bian, Mingming
    Zhang, Lijian
    Sun, Xiaona
    Yang, Xiaojun
    PROCEEDINGS OF THE 2018 8TH INTERNATIONAL CONFERENCE ON APPLIED SCIENCE, ENGINEERING AND TECHNOLOGY (ICASET 2018), 2018, 159 : 169 - 173
  • [46] Experimental and numerical studies on dense-phase pneumatic conveying of spraying material in venturi
    Ji, Yun
    Liu, Songyong
    Li, Jianping
    POWDER TECHNOLOGY, 2018, 339 : 419 - 433
  • [47] The Effect of Permeability on Lignite Fly Ash Pneumatic Conveying System Design
    Karlicic, Nikola
    Jovovic, Aleksandar
    Radic, Dejan
    Obradovic, Marko
    Todorovic, Dusan
    Stanojevic, Miroslav
    REVISTA DE CHIMIE, 2018, 69 (02): : 341 - 345
  • [48] Experimental study on the flow characteristics of horizontal pneumatic conveying of stiff shotcrete
    Chen, Lianjun
    Ma, Hui
    Gao, Kang
    Sun, Zhenjiao
    JOURNAL OF BUILDING ENGINEERING, 2023, 73
  • [49] Experimental Research on the Local Resistance Characteristics of Branch Pipe in Dense Phase Pneumatic Conveying Desulfurized Gypsum
    Liu, Zong Ming
    Pan, Hong Li
    Duan, Guang Bin
    Wang, Yong
    8TH INTERNATIONAL SYMPOSIUM ON MEASUREMENT TECHNIQUES FOR MULTIPHASE FLOWS, 2014, 1592 : 173 - 176
  • [50] Visualization experimental study on starting process of the absorber sphere pneumatic conveying
    Li, T. J.
    Chen, F.
    He, X. D.
    Chen, W. S.
    Huang, Z. Y.
    2012 ASIA-PACIFIC POWER AND ENERGY ENGINEERING CONFERENCE (APPEEC), 2012,