dor_id: 4107317

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856.4.0.u: https://rmf.smf.mx/ojs/rmf/article/view/324/169

100.1.#.a: Mahmood, Khalid; Sajid, Muhammad; Ali, Nasir; Tariq, Javed

524.#.#.a: Mahmood, Khalid, et al. (2017). Effects of lubrication in mhd mixed convection stagnation point flow of a second grade fluid adjacent to a vertical plate. Revista Mexicana de Física; Vol 63, No 2 Mar-Apr: 134-0. Recuperado de https://repositorio.unam.mx/contenidos/4107317

245.1.0.a: Effects of lubrication in mhd mixed convection stagnation point flow of a second grade fluid adjacent to a vertical plate

502.#.#.c: Universidad Nacional Autónoma de México

561.1.#.a: Facultad de Ciencias, UNAM

264.#.0.c: 2017

264.#.1.c: 2017-01-01

653.#.#.a: Power-law lubricant; interfacial condition; second grade fluid; Keller-box method

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041.#.7.h: eng

520.3.#.a: The present manuscript describes effects of mixed convection on MHD flow of a second grade fluid above a vertical plate. The fluid impinges orthogonally on the plate which is lubricated by a slim coating of power-law fluid. A system of ordinary differential equations is obtained by employing the similarity transformations to the original partial differential equations. To handle the present flow situation, it is assumed that velocity and shear stress of the second grade fluid and the lubricant are continuous at the interface. A well reputed numerical technique called Keller-box method is utilized to solve coupled non-linear equations. Influence of slip, magnetic and mixed convection parameters, Weissenberg and Prandtl numbers on the velocity, skin friction coefficient, temperature and heat transfer rate at the surface is presented in the form of graphs and tabular data for both assisting and opposing flows. The results in the case of no-slip condition are compared with the available numerical data. A good agreement of these results certifies our effort.

773.1.#.t: Revista Mexicana de Física; Vol 63, No 2 Mar-Apr (2017): 134-0

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046.#.#.j: 2020-11-25 00:00:00.000000

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handle: 00b51dd215d48135

harvesting_date: 2020-09-23 00:00:00.0

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Artículo

Effects of lubrication in mhd mixed convection stagnation point flow of a second grade fluid adjacent to a vertical plate

Mahmood, Khalid; Sajid, Muhammad; Ali, Nasir; Tariq, Javed

Facultad de Ciencias, UNAM, publicado en Revista Mexicana de Física, y cosechado de Revistas UNAM

Licencia de uso

Procedencia del contenido

Entidad o dependencia
Facultad de Ciencias, UNAM
Revista
Repositorio
Contacto
Revistas UNAM. Dirección General de Publicaciones y Fomento Editorial, UNAM en revistas@unam.mx

Cita

Mahmood, Khalid, et al. (2017). Effects of lubrication in mhd mixed convection stagnation point flow of a second grade fluid adjacent to a vertical plate. Revista Mexicana de Física; Vol 63, No 2 Mar-Apr: 134-0. Recuperado de https://repositorio.unam.mx/contenidos/4107317

Descripción del recurso

Autor(es)
Mahmood, Khalid; Sajid, Muhammad; Ali, Nasir; Tariq, Javed
Tipo
Artículo de Investigación
Área del conocimiento
Físico Matemáticas y Ciencias de la Tierra
Título
Effects of lubrication in mhd mixed convection stagnation point flow of a second grade fluid adjacent to a vertical plate
Fecha
2017-01-01
Resumen
The present manuscript describes effects of mixed convection on MHD flow of a second grade fluid above a vertical plate. The fluid impinges orthogonally on the plate which is lubricated by a slim coating of power-law fluid. A system of ordinary differential equations is obtained by employing the similarity transformations to the original partial differential equations. To handle the present flow situation, it is assumed that velocity and shear stress of the second grade fluid and the lubricant are continuous at the interface. A well reputed numerical technique called Keller-box method is utilized to solve coupled non-linear equations. Influence of slip, magnetic and mixed convection parameters, Weissenberg and Prandtl numbers on the velocity, skin friction coefficient, temperature and heat transfer rate at the surface is presented in the form of graphs and tabular data for both assisting and opposing flows. The results in the case of no-slip condition are compared with the available numerical data. A good agreement of these results certifies our effort.
Tema
Power-law lubricant; interfacial condition; second grade fluid; Keller-box method
Idioma
eng
ISSN
2683-2224 (digital); 0035-001X (impresa)

Enlaces