Characterization of dissimilar liquids mixing in T-junction and offset T-junction microchannels

被引:4
|
作者
Ringkai, H. [1 ]
Tamrin, K. F. [1 ]
Sheikh, N. A. [2 ]
Barra, P. [3 ]
机构
[1] Univ Malaysia Sarawak, Fac Engn, Dept Mech & Mfg Engn, Sarawak 94300, Malaysia
[2] Int Islamic Univ, Dept Mech Engn, Fac Engn & Technol, Islamabad, Pakistan
[3] Univ Picardie Jules Verne, Lab Phys Matiere Condensee, Amiens, France
关键词
Micromixing; microfluidic; immiscible; T-junction; mixing index; PERFORMANCE; WATER; MICROFLUIDICS; MICROMIXERS; DESIGN;
D O I
10.1177/09544089211015476
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Micromixing process in microfluidic devices has been broadly employed in bio-, nano-, and environmental technologies using either miscible or immiscible liquids. However, there are limited experimental studies investigating the mixing process of different densities and viscosities liquids in relation to microfluidics. Therefore, the mixing process of propan-2-ol and water, water and sodium chloride solution, propan-2-ol and sodium chloride solution were experimented and reported at 5 <= Re <= 50 in T-junction and offset T-junction microchannels. For miscible mixing experiments, i.e. propan-2-ol and water, water and sodium chloride solution, both microchannels show mixing index for each Reynolds number is directly proportional to the mixing time. At low Reynolds number, higher molecular diffusion takes place while at low flow rate, the residence time of fluid is high. The mixing performance is relatively good at high Reynolds number of 40 and 50 due to the significant convection which is caused by the effect of stretching and thinning of liquid lamellae. For immiscible propan-2-ol and sodium chloride solution mixing, offset T-junction microchannel offers better mixing performance than T-junction microchannel at both low and high Reynolds number. The chaotic mixing happened at the intersection of the T-junction microchannel due to the direct interaction of two liquids entering the junction at high momentum.
引用
收藏
页码:1797 / 1806
页数:10
相关论文
共 50 条
  • [41] Bubble breakup in a microfluidic T-junction
    Liu, Xiangdong
    Zhang, Chengbin
    Yu, Wei
    Deng, Zilong
    Chen, Yongping
    SCIENCE BULLETIN, 2016, 61 (10) : 811 - 824
  • [42] Hysteresis in Multiphase Microfluidics at a T-Junction
    Zagnoni, Michele
    Anderson, Jamie
    Cooper, Jonathan M.
    LANGMUIR, 2010, 26 (12) : 9416 - 9422
  • [43] Optimization of Parameters of Microstrip T-junction
    Andriychuk, Mykhaylo
    Senyk, Volodymyr
    2019 IEEE XVTH INTERNATIONAL CONFERENCE ON THE PERSPECTIVE TECHNOLOGIES AND METHODS IN MEMS DESIGN (MEMSTECH), 2019, : 123 - 126
  • [44] Dynamics of droplet breakup in a t-junction
    Hoang, D.A.
    Portela, L.M.
    Kleijn, C.R.
    Kreutzer, M.T.
    Steijn, V. Van
    Journal of Fluid Mechanics, 2013, 717
  • [45] Prediction of phase separation in a T-Junction
    Saieed, Ahmed
    Pao, William
    Ali, Hafiz Muhammad
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2018, 97 : 160 - 179
  • [46] A metamaterial T-junction power divider
    Saenz, E.
    Cantora, A.
    Ederra, I.
    Gonzalo, R.
    de Maagt, P.
    IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2007, 17 (03) : 172 - 174
  • [47] IDENTIFICATION OF AEROACOUSTIC SOURCES IN A T-JUNCTION
    Salt, Eric
    Mohamed, Saber
    Arthurs, David
    Ziada, Samir
    ASME PRESSURE VESSELS AND PIPING CONFERENCE - 2014, VOL 4, 2014,
  • [48] Entrainment at T-junction: A review work
    Meng, Zhaoming
    Wang, Laishun
    Tian, Wenxi
    Qiu, Suizheng
    Su, Guanghui
    PROGRESS IN NUCLEAR ENERGY, 2014, 70 : 221 - 241
  • [49] Deformation and sorting of capsules in a T-junction
    Haner, Edgar
    Heil, Matthias
    Juel, Anne
    JOURNAL OF FLUID MECHANICS, 2020, 885
  • [50] Experimentally investigating the thermal mixing and thermal stripping characteristics in a T-junction
    Chuang, G. Y.
    Ferng, Y. M.
    APPLIED THERMAL ENGINEERING, 2017, 113 : 1585 - 1595