Mass transfer characteristics of ferrofluids flowing through a microchannel under AC magnetic field

被引:3
|
作者
Akbari, Pariya [1 ]
Haghshenasfard, Masoud [1 ]
Esfahany, Mohsen Nasr [1 ]
Ehsani, Mohammadreza [1 ]
机构
[1] Isfahan Univ Technol, Dept Chem Engn, Esfahan 8415683111, Iran
基金
美国国家科学基金会;
关键词
Gas absorption; Microchannel; Ferrofluid; Magnetic field; LIQUID SEGMENTED FLOW; TAYLOR FLOW; CO2; ABSORPTION; HEAT-TRANSFER; GAS; NANOPARTICLES; ENHANCEMENT; NANOFLUIDS; BUBBLE; SOLUBILITY;
D O I
10.1016/j.icheatmasstransfer.2022.106436
中图分类号
O414.1 [热力学];
学科分类号
摘要
The gas absorption process in a Y-shaped microchannel utilizing magnetic nanofluids stimulated within an alternating current magnetic field (AC mf) was studied. Absorption of CO2 under different operation conditions, ferrofluid concentration, and magnetic field strengths were investigated to analyze the liquid-side overall mass transfer coefficient (KLa), CO2 absorption efficiency (E), nanoparticle enhancement factor (alpha), magnetic field enhancement factor (gamma), and pressure drop (Delta p). The magnetic field strengths were 7, 12.6, and 21 mT accompanied by various ferrofluid concentrations within 0.001-0.004 (v/v). The ferrofluids were water-based colloids of Fe3O4 magnetic nanoparticles. The gas-liquid flow patterns were Taylor flow regime in all experi-ments. Furthermore, the position of the microchannel in the magnetic field was studied as an effective factor in CO2 absorption enhancement. The position in which the microchannel was held on the top inside the magnetic field reflected more gas absorption compared to the other positions. While exerting magnetic field strength of 21 mT, a maximum enhancement of 72.2% was observed for KLa compared to the case in which the magnetic field was absent.
引用
收藏
页数:11
相关论文
共 50 条
  • [41] Effect of the magnetic field direction on forced convection heat transfer enhancements in ferrofluids
    Cherief, Wahid
    Avenas, Yvan
    Ferrouillat, Sebastien
    Kedous-Lebouc, Afef
    Jossic, Laurent
    Berard, Jean
    Petit, Mickael
    EUROPEAN PHYSICAL JOURNAL-APPLIED PHYSICS, 2015, 71 (01):
  • [42] Magnetic Field Effect and Heat Transfer of Nanofluids withinWaveform Microchannel
    Moslemi, Mehdi
    Mahmoodnezhad, Motahare
    Edalatpanah, S. A.
    Zubair, Sulima Ahmed Mohammed
    Khalifa, Hamiden Abd El-Wahed
    CMES-COMPUTER MODELING IN ENGINEERING & SCIENCES, 2023, 134 (03): : 1957 - 1973
  • [43] Heat transfer characteristics of magnetic fluid flow under the influence of an external magnetic field
    Li, Qiang
    Xuan, Yi-Min
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2008, 29 (07): : 1177 - 1180
  • [44] HEAT-TRANSFER CHARACTERISTICS OF WATER FLOWING THROUGH MICROCHANNELS
    PENG, XF
    PETERSON, GP
    WANG, BX
    EXPERIMENTAL HEAT TRANSFER, 1994, 7 (04) : 265 - 283
  • [45] Numerical investigation of conjugate heat transfer in a microchannel with a hydrophobic surface utilizing nanofluids under a magnetic field
    Mehrizi, Abbasali Abouei
    Besharati, Fatemeh
    Jahanian, Omid
    Afrouzi, Hamid Hassanzadeh
    PHYSICS OF FLUIDS, 2021, 33 (05)
  • [46] Characteristics of the magnetic field under hybrid ac/dc high voltage transmission lines
    Ismail, Hanafy M.
    ELECTRIC POWER SYSTEMS RESEARCH, 2009, 79 (01) : 1 - 7
  • [47] HEAT-TRANSFER AND TEMPERATURE-FLUCTUATION OF LITHIUM FLOWING UNDER TRANSVERSE MAGNETIC-FIELD
    MIYAZAKI, K
    INOUE, H
    KIMOTO, T
    YAMASHITA, S
    INOUE, S
    YAMAOKA, N
    JOURNAL OF NUCLEAR SCIENCE AND TECHNOLOGY, 1986, 23 (07) : 582 - 593
  • [48] Dynamics of a viscoelastic droplet migrating in a ratchet microchannel under AC electric field
    Nema, Anant Kumar
    Tripathi, Manoj Kumar
    JOURNAL OF NON-NEWTONIAN FLUID MECHANICS, 2024, 328
  • [49] Mass transfer characteristics of a microchannel device of split-flow type
    Hotta, Takaya
    Nii, Susumu
    Yajima, Tomoyuki
    Kawaizumi, Fumio
    CHEMICAL ENGINEERING & TECHNOLOGY, 2007, 30 (02) : 208 - 213
  • [50] Thermodiffusion anisotropy under a magnetic field in ionic liquid-based ferrofluids
    Fiuza, T.
    Sarkar, M.
    Riedl, J. C.
    Cebers, A.
    Cousin, F.
    Demouchy, G.
    Depeyrot, J.
    Dubois, E.
    Gelebart, F.
    Meriguet, G.
    Perzynski, R.
    Peyre, V
    SOFT MATTER, 2021, 17 (17) : 4566 - 4577