Numerical solution of chemically reactive and thermally radiative MHD Prandtl nanofluid over a curved surface with convective boundary conditions
Rasheed H.U. Islam S. Zeeshan Khan J. Abbas T. Mohmand M.I.
March 2026John Wiley and Sons Inc
ZAMM Zeitschrift fur Angewandte Mathematik und Mechanik
2026#106Issue 3
This study intends to elaborate the heat and mass transfer analysis of Prandtl nanofluid flow over a vertically heated curved surface together with MHD, thermal radiation, and chemical reaction effects. The boundary layer approximations developed the governing flow equations such as momentum, energy, and diffusion balance equations. The nonlinear system of PDEs is changed into nonlinear ordinary differential equations via proper transformations. By taking the assistance of the bvp4c algorithm, the numerical technique is imposed explicitly for attaining the dimensionless form of the fundamental equations. The nondimensional outcomes are apprehended here which rely on numerous physical constraints. The impression of these physical parameters on momentum and thermal boundary layers along with concentration outlines are discussed and demonstrated graphically. The impact of drag force, heat transfer coefficient, and mass flow rate are computed and presented through tables.
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Department of Mathematics, Abdul Wali Khan University, Khyber Pakhtunkhwa, Mardan, Pakistan
Department of Mathematics and Statistics, Bacha Khan University Charsadda, Khyber Pakhtunkhwa, Charsadda, Pakistan
Sarhad University of Science and Information Technology, Khyber Pakhtunkhwa, Peshawar, Pakistan
Department of Computer Science and Physics, Nazarbayev Intellectual Schools, Nur-Sultan, Kazakhstan
Department of Mathematics
Department of Mathematics and Statistics
Sarhad University of Science and Information Technology
Department of Computer Science and Physics
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Книга Публикация научной статьи Волощук 2026 Book Publication of a scientific article 2026