Impact of Magnetohydrodynamics on Thermal Mixing Efficiency and Entropy Generation Analysis Passing Through a Micromixer Using Non-Newtonian Nanofluid

  • Tayeb, Naas Toufik
  • Laouid, Youcef Abdellah Ayoub
  • Lakhdar, Ayache
  • Mostefa, Telha
  • Kim, Sun Min
  • 외 1명
Citations

WEB OF SCIENCE

0
Citations

SCOPUS

0

초록

The present paper investigates the steady laminar flow and thermal mixing performance of non-Newtonian Al2O3 nanofluids within a two-layer cross-channel micromixer, employing three-dimensional numerical simulations to solve the governing equations across a low Reynolds number range (0.1 to 50). It also addresses secondary flows and thermal mixing performance with two distinct inlet temperatures for thin nanofluids. Additionally, it explores how fluid properties and varying concentrations of Al2O3 nanoparticles impact thermal mixing efficiency and entropy generation. Simulations were conducted to optimize performance by adjusting the power law index (n) across different nanoparticle concentrations (1-5%). The findings show that magnetohydrodynamics can enhance mixing efficiency by generating vortices and altering flow behavior, providing important guidance for improving microfluidic system designs in practical applications.

키워드

chaotic advectionmicromixermixing indexenergy cost of mixingentropy generationmagnetohydrodynamicsHEAT-TRANSFERFLUID-FLOWPERFORMANCELAMINAR
제목
Impact of Magnetohydrodynamics on Thermal Mixing Efficiency and Entropy Generation Analysis Passing Through a Micromixer Using Non-Newtonian Nanofluid
저자
Tayeb, Naas ToufikLaouid, Youcef Abdellah AyoubLakhdar, AyacheMostefa, TelhaKim, Sun MinHossain, Shakhawat
DOI
10.3390/mi17010066
발행일
2025-12-31
유형
Article
저널명
Micromachines
17
1