Fluid flow and mixing in a channel with dual bluff bodies

被引:3
|
作者
Xiao, Jian [1 ]
Jing, Dalei [1 ]
机构
[1] Univ Shanghai Sci & Technol, Sch Mech Engn, Shanghai 200093, Peoples R China
基金
中国国家自然科学基金; 上海市自然科学基金;
关键词
RECTANGULAR CYLINDERS; MICROMIXER; OSCILLATION; DYNAMICS;
D O I
10.1063/5.0187211
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Placing bluff bodies in a mixing channel is an important technique to enhance mixing. This paper numerically investigates the effects of transversal spacing and axial spacing of two bluff bodies on the outlet mixing efficiency (M-out), the pressure loss (Delta P), and the combined performance parameter eta (the ratio of M-out to dimensionless Delta P) of fluid flow within mixing channels with dual bluff bodies having three cross-sectional shapes of circle, square, and sector with Reynolds numbers based on bluff body dimension Re-d = 20, 60, and 100. The study reveals that, at Re-d = 20, altering the spacing between the two bluff bodies in the mixing channel does not improve mixing but instead increases Delta P, leading to a decrease in eta. At Re-d = 60 and 100, changing the transversal spacing and axial spacing in a certain range can effectively enhance mixing and improve the combined performance. There exists an optimal transversal spacing to maximize M-out and eta. Furthermore, the mixing channel with sector-shaped dual bluff bodies exhibits the highest M-out and eta among the three kinds of cross-sectional shapes. When Re-d = 60 and 100, eta of the mixing channel with sector-shaped dual bluff bodies increases by 212% and 270% by the transversal offsetting compared to the case with zero transversal spacing and increases by 489% and 331% by the axial offsetting compared to the case with an axial spacing of 2 times the bluff body dimension. The present findings hold significant implications for the design optimization and performance improvement of mixers.
引用
收藏
页数:18
相关论文
共 50 条
  • [21] Effect of micro-channel geometry on fluid flow and mixing
    Naher, S.
    Orpen, D.
    Brabazon, D.
    Poulsen, C. R.
    Morshed, M. M.
    SIMULATION MODELLING PRACTICE AND THEORY, 2011, 19 (04) : 1088 - 1095
  • [22] Study of flow past bluff bodies in isolation and in tandem
    Mitra, D
    Mazumdar, A
    Bhattacharya, SR
    ADVANCES IN FLUID MECHANICS III, 2000, 26 : 245 - 254
  • [24] Fluctuating forces on bluff bodies and their relationships with flow structures
    Alam, Md. Mahbub
    OCEAN ENGINEERING, 2023, 273
  • [25] EDGE LENGTH EFFECT OF BLUFF BODIES ON FLOW STRUCTURE
    Manay, E.
    Ozceyhan, V.
    Sahin, B.
    Gunes, S.
    INTERNATIONAL JOURNAL OF AUTOMOTIVE AND MECHANICAL ENGINEERING, 2014, 9 : 1793 - 1801
  • [26] Special issue - Fluid-structure and flow-acoustic interactions involving bluff bodies - Preface
    de Langre, E
    Axisa, F
    JOURNAL OF FLUIDS AND STRUCTURES, 2005, 21 (01) : 1 - 1
  • [27] Quantitative comparison of vortex identification methods in three-dimensional fluid flow around bluff bodies
    Kovacs, Kinga Andrea
    Balla, Esztella
    INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2025, 113
  • [28] CHANNEL FLOW OF A DENSITY-STRATIFIED FLUID ABOUT IMMERSED BODIES
    DROUGHTO.JV
    CHEN, CF
    JOURNAL OF BASIC ENGINEERING, 1972, 94 (01): : 122 - &
  • [29] On the recirculating flow of three-dimensional asymmetric bluff bodies
    Antoine Legeai
    Olivier Cadot
    Experiments in Fluids, 2020, 61
  • [30] A new scaling for the flow instability past symmetric bluff bodies
    Chiarini, A.
    Quadrio, M.
    Auteri, F.
    JOURNAL OF FLUID MECHANICS, 2022, 936