BAREKENG: Jurnal Ilmu Matematika dan Terapan
Vol 20 No 4 (2026): BAREKENG: Journal of Mathematics and Its Application

BASIC-STATE ANALYSIS OF NANOFLUID BIOCONVECTION WITH GYROTACTIC MICROORGANISMS UNDER ZERO-NANOPARTICLE FLUX BOUNDARY CONDITION

Ming Hui Lim (Mathematics Section, School of Distance Education, Universiti Sains Malaysia, Malaysia)
Yian Yian Lok (Mathematics Section, School of Distance Education, Universiti Sains Malaysia, Malaysia)
Syakila Ahmad (School of Mathematical Sciences, Universiti Sains Malaysia, Malaysia)
Norshafira Ramli (School of Mathematical Sciences, Universiti Sains Malaysia, Malaysia)
Anuar Ishak (Department of Mathematical Sciences, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Malaysia)



Article Info

Publish Date
24 Aug 2026

Abstract

This study presents an analysis of the basic state of nanofluid bioconvection in a horizontal finite-depth layer containing gyrotactic microorganisms. To enhance the physical realism of the system, zero-nanoparticle flux boundary conditions are incorporated for the nanoparticle fraction. The basic-state solution refers to a simplified, time-independent configuration that serves as the reference or background state for analysing perturbations in stability analysis. In this case, the quiescent flow has zero velocity, while other state variables - such as temperature, nanoparticle concentration, and microorganism density - vary only in the vertical direction. The resulting system of ordinary differential equations is solved to obtain analytical solutions while the effects of key parameters on the steady-state profiles are investigated. The results show that the swimming strength parameter mainly influences microorganism accumulation near the upper boundary. Both the swimming strength parameter and the bioconvection Rayleigh number have only a limited effect on the pressure profile. In contrast, the thermal Rayleigh number and modified diffusivity ratio produce the most noticeable pressure variations, indicating that thermal and thermophoretic effects play the dominant role in shaping the basic-state pressure distribution. Overall, the pressure profile remains nearly linear. The findings provide insight into the role of zero-nanoparticle flux boundary conditions in finite-depth nanofluid bioconvection systems.

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Journal Info

Abbrev

barekeng

Publisher

Subject

Computer Science & IT Control & Systems Engineering Economics, Econometrics & Finance Energy Engineering Mathematics Mechanical Engineering Physics Transportation

Description

BAREKENG: Jurnal ilmu Matematika dan Terapan is one of the scientific publication media, which publish the article related to the result of research or study in the field of Pure Mathematics and Applied Mathematics. Focus and scope of BAREKENG: Jurnal ilmu Matematika dan Terapan, as follows: - Pure ...