Three-dimensional simulation of flows in microchannels with deterministic lateral displacement system using the boundary element method
Bulatova A. Z. 1, Tuigunova D. M.1, Solnyshkina O.A. 1
1Ufa University of Science and Technology, Ufa, Russia
Email: bulatova29@yandex.ru, dianatgnv@gmail.com, olgasolnyshkina@gmail.com

PDF
Microfluidic systems with deterministic lateral displacement (DLD) are one of the most effective technologies for particle control in the flow. In this paper, the influence of the geometry features of microchannels with DLD on the hydrodynamic features of fluid flows is investigated. Numerical modelling was performed for the three-dimensional case using the Boundary Element Method, accelerated by the Fast Multipole Method on heterogeneous computing architectures. The effect of the DLD structures shape and row displacement on the velocity distribution in the channel has been studied. Additionally, the variation of the velocity gradient between rows of structures and in the gaps between two neighbouring columns has also been examined. Keywords: deterministic lateral displacement, hydrodynamics, Stokes flows, boundary element method, microfluidic systems.
  1. A.P. Iakovlev, A.S. Erofeev, P.V. Gorelkin, Biosensors, 12 (11), 956 (2022). DOI: 10.3390/bios12110956
  2. O.G. Chavez-Pineda, R. Rodriguez-Moncayo, D.F. Cedillo-Alcantar, P.E. Guevara-Pantoja, J.U. Amador-Hernandez, J.L. Garcia-Cordero, Electrophoresis, 43 (16-17), 1667 (2022). DOI: 10.1002/elps.202200067
  3. A. Wang, A. Abdulla, X. Ding, Proc. Instit. Mech. Eng. H, 233 (7), 683 (2019). DOI: 10.1177/095441191985
  4. M. Sivaramakrishnan, R. Kothandan, D.K. Govindarajan, Y. Meganathan, K. Kandaswamy, Curr. Opin. Biomed. Eng., 13, 60 (2020). DOI: 10.1016/j.cobme.2019.09.014
  5. J. Zhou, P. Mukherjee, H. Gao, Q. Luan, I. Papautsky, APL Bioeng., 3 (4), 041504 (2019). DOI: 10.1063/1.5120501
  6. A. Hochstetter, R. Vernekar, R.H. Austin, H. Becker, J.P. Beech, D.A. Fedosov, D.W. Inglis, ACS Nano, 14 (9), 10784 (2020). DOI: 10.1021/acsnano.0c05186
  7. A. Zhbanov, Y.S. Lee, S. Yang, Micro and Nano Syst. Lett., 11 (1), 11 (2023). DOI: 10.1186/s40486-023-00175-w
  8. Y.A. Pityuk, O.A. Abramova, N.B. Fatkullina, A.Z. Bulatova, in Recent research in control engineering and decision making, ed. by O. Dolinina, A. Brovko, V. Pechenkin, A. Lvov, V. Zhmud, V. Kreinovich. Ser. Studies in Systems Decision and Control (Springer, Cham, 2019), vol. 199, p. 338--352. DOI: 10.1007/978-3-030-12072-6_28
  9. O.A. Abramova, Y.A. Pityuk, N.A. Gumerov, I.S. Akhatov, in Supercomputing: 4th Russian supercomputing days, ed. by V. Voevodin, S. Sobolev (Springer, Cham, 2018), vol. 965, p. 427--438. DOI: 10.1007/978-3-030-05807-4_36
  10. O.A. Solnyshkina, N.B. Fatkullina, A.Z. Bulatova, J. Appl. Ind. Math., 17 (2), 396 (2023). DOI: 10.1134/S1990478923020175

Подсчитывается количество просмотров абстрактов ("html" на диаграммах) и полных версий статей ("pdf"). Просмотры с одинаковых IP-адресов засчитываются, если происходят с интервалом не менее 2-х часов.

Дата начала обработки статистических данных - 27 января 2016 г.

Publisher:

Ioffe Institute

Institute Officers:

Director: Sergei V. Ivanov

Contact us:

26 Polytekhnicheskaya, Saint Petersburg 194021, Russian Federation
Fax: +7 (812) 297 1017
Phone: +7 (812) 297 2245
E-mail: post@mail.ioffe.ru