A novel Electrokinetic Micromixing System with Conductive Mixing-Enclosure-A Geometrical Study

Publish Year: 1401
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_JHMTR-9-1_006

تاریخ نمایه سازی: 24 شهریور 1403

Abstract:

In this paper, an electrokinetic micromixing system with conductive mixing-enclosure is proposed. The simulated micromixer can be fabricated easily and accordingly, it can be used in the microfluidic systems effectively. The mixing process is intensified by controlling the geometry of the mixing-enclosure and electric field strength. The effects of different parameters including existence of mixing-enclosure, horizontal and vertical sizes of mixing-enclosure, orientation angle of mixing-enclosure, and electric field strength on the mixing index are studied. The mixing efficiencies and mixing lengths of current electrokinetic micromixer and those previously proposed by other researchers are compared. The results showed that the mixing efficiency can be enhanced significantly as a micromixer with conductive mixing-enclosure is employed. As an advantage of the proposed micromixer, the maximum mixing efficiency does not change by boosting the electric field strength in the range of ۱۰۰ V.cm-۱ to ۲۰۰ V.cm-۱, while the mixing time diminishes as the electric field strength increases in this range. For the conductive mixing-enclosure with the orientation angle of ۴۵°, maximum mixing efficiency of ۹۶.۶% is achieved by exerting electric field with strength of ۷۵ V.cm-۱. The current electrokinetic micromixer has superior mixing efficiency and mixing length as compared with other electrokinetic micromixers.

Authors

Morteza Nazari

Department of Mechanical Engineering, Ferdowsi University of Mashhad, Mashhad ۹۱۷۷۵-۱۱۱۱, Iran

Saman Rashidi

Department of Energy, Faculty of New Science and Technologies, Semnan University, Semnan, Iran

Javad Abolfazli Esfahani

Department of Mechanical Engineering, Ferdowsi University of Mashhad, Mashhad ۹۱۷۷۵-۱۱۱۱, Iran

Souad Harmand

Université Polytechnique Hauts-de-France, Laboratoire d’Automatique, de Mécanique et d’Informatique Industrielles et Humaines (LAMIH-UMR CNRS ۸۲۰۱), Valenciennes, F۵۹۳۱۳, France

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  • Demello, A.J., ۲۰۰۶. Control and detection of chemical reactions in ...
  • Meagher, R.J., Hatch, A.V., Renzi, R.F. and Singh, A.K., ۲۰۰۸. ...
  • Khetani, S.R. and Bhatia, S.N., ۲۰۰۸. Microscale culture of human ...
  • Dittrich, P.S. and Manz, A., ۲۰۰۶. Lab-on-a-chip: microfluidics in drug ...
  • Anderson, R.C., Su, X., Bogdan, G.J. and Fenton, J., ۲۰۰۰. ...
  • Bayareh, M., Ashani, M.N. and Usefian, A., ۲۰۲۰. Active and ...
  • Bayareh, M., Usefian, A. and Ahmadi Nadooshan, A., ۲۰۱۹. Rapid ...
  • Usefian, A. and Bayareh, M., ۲۰۲۰. Numerical and experimental investigation ...
  • Kang, D. K., et al., ۲۰۱۴. Rapid detection of single ...
  • Nguyen, D.P., Kloosterman, F., Barbieri, R., Brown, E.N., Wilson, M.A. ...
  • Jahn, A., Stavis, S.M., Hong, J.S., Vreeland, W.N., DeVoe, D.L. ...
  • Baheri Islami, S., Khezerloo, M. and Gharraei, R., ۲۰۱۷. The ...
  • Zhang, S. and Chen, X., ۲۰۱۸. A novel passive micromixer ...
  • Stroock, A.D., Dertinger, S.K., Ajdari, A., Mezic, I., Stone, H.A. ...
  • Gray, B.L., Jaeggi, D., Mourlas, N.J., Van Drieenhuizen, B.P., Williams, ...
  • Yi, M. and Bau, H.H., ۲۰۰۳. The kinematics of bend-induced ...
  • Ismagilov, R.F., Stroock, A.D., Kenis, P.J., Whitesides, G. and Stone, ...
  • Chen, X., Li, T., Zeng, H., Hu, Z. and Fu, ...
  • Lee, C.Y., Wang, W.T., Liu, C.C. and Fu, L.M., ۲۰۱۶. ...
  • Aoki, N. and Mae, K., ۲۰۰۶. Effects of channel geometry ...
  • Yaralioglu, G.G., Wygant, I.O., Marentis, T.C. and Khuri-Yakub, B.T., ۲۰۰۴. ...
  • Mao, H., Yang, T. and Cremer, P.S., ۲۰۰۲. A microfluidic ...
  • Ma, Y., Sun, C.P., Fields, M., Li, Y., Haake, D.A., ...
  • Lu, L.H., Ryu, K.S. and Liu, C., ۲۰۰۲. A magnetic ...
  • Suzuki, H. and Ho, C.M., ۲۰۰۲, January. A magnetic force ...
  • Nazari, M., Rashidi, S. and Esfahani, J.A., ۲۰۲۰. Effects of ...
  • Nazari, M., Chuang, P.Y.A., Esfahani, J.A. and Rashidi, S., ۲۰۲۰. ...
  • Azimi, S., Nazari, M. and Daghighi, Y., ۲۰۱۶. Fluid physics ...
  • Azimi, S., Nazari, M. and Daghighi, Y., ۲۰۱۷. Developing a ...
  • Daghighi, Y., Gao, Y. and Li, D., ۲۰۱۱. ۳D numerical ...
  • Daghighi, Y. and Li, D., ۲۰۱۳. Numerical study of a ...
  • Usefian, A., Bayareh, M., Shateri, A. and Taheri, N., ۲۰۱۹. ...
  • Usefian, A. and Bayareh, M., ۲۰۱۹. Numerical and experimental study ...
  • Saha, S., Gopmandal, P.P. and Ohshima, H., ۲۰۱۹. Electroosmotic flow ...
  • Qi, C. and Ng, C.O., ۲۰۱۸. Rotating electroosmotic flow in ...
  • Tsai, J.H. and Lin, L., ۲۰۰۲. Active microfluidic mixer and ...
  • Zhao, H. and Bau, H.H., ۲۰۰۷. Microfluidic chaotic stirrer utilizing ...
  • Wu, Z. and Li, D., ۲۰۰۸. Micromixing using induced-charge electrokinetic ...
  • Helmholtz, H., Der phystk und chemie. ۱. no. ۲, ۱۸۵۳ ...
  • Dukhin, A.S. and Goetz, P.J., ۲۰۱۰. Fundamentals of interface and ...
  • Wu, Z. and Li, D., ۲۰۰۸. Mixing and flow regulating ...
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