Abstract
Fluidity and thermal transport across the triangular aperture with lower lateral inlet and apply placed at the vertical outlet of the chamber which filled with efficient TiO
2
–SiO
2
/water hybrid nanofluid under the parametrical influence. Several parameters are tested like the numbers of Hartmann (
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\begin{document}$$0 \le Ha \le 100$$\end{document}
0
≤
H
a
≤
100
), Richardson (
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\begin{document}$$0 \le Ri \le 5$$\end{document}
0
≤
R
i
≤
5
), and Reynolds (
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\begin{document}$$10 \le Re \le 1000$$\end{document}
10
≤
R
e
≤
1000
) were critiqued through streamlines, isotherms, and Nusselt number (
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\begin{document}$$Nu$$\end{document}
Nu
). Numerical model has to be developed and solved through the Galerkin finite element method (GFEM) by discretized with 13,569 triangular elements optimized through grid-independent analysis. The Hartmann number (
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\begin{document}$$Ha$$\end{document}
Ha
), exerts minimal impact over the flow and thermal aspects while the other parameters significantly manipulate the physical nature of the flowing and thermal aspects behaviors.