Magnetohydrodynamic Jeffrey nanoliquid flow with thermally radiative Newtonian heat and mass species



Título del documento: Magnetohydrodynamic Jeffrey nanoliquid flow with thermally radiative Newtonian heat and mass species
Revue: Revista mexicana de física
Base de datos: PERIÓDICA
Número de sistema: 000460986
ISSN: 0035-001X
Autores: 1
Instituciones: 1COMSATS University Islamabad, Department of Mathematics, Sahiwal. Pakistán
Año:
Periodo: Nov-Dic
Volumen: 64
Número: 6
Paginación: 628-633
País: México
Idioma: Inglés
Tipo de documento: Artículo
Enfoque: Analítico, teórico
Resumen en inglés Abastract This study characterizes the properties of Newtonian heat and mass species conditions in three-dimensional Jeffrey nanoliquid flow generated by the movement of thermally radiative surface. The liquid flow is electrically conducting through the consideration of magnetic field. The aspects of heat absorption, generation, and thermal radiation are considered in the equation of energy conservation. The boundary layer phenomenon is employed to obtain the mathematical expressions of considered physical model. These equations are solved via homotopic scheme. The convergence of homotopic solutions is validated by the numerical data. The importance of physical constraints on temperature, and nanoparticle concentration of liquid is visualized by the graphical results
Disciplinas: Física y astronomía,
Física
Palabras clave: Líquido de Jeffrey,
Nanopartículas,
Superficie bidireccional
Keyword: Physics,
Three-dimensional flow,
Jeffrey liquid,
Nanoparticles,
Newtonian conditions,
Bidirectional surface
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