
@Article{hmt.13.6,
AUTHOR = {G. Nagaraju
, Mahesh Garvandha, J.V. Ramana Murthy},
TITLE = {MHD FLOW IN A CIRCULAR HORIZONTAL PIPE UNDER HEAT SOURCE/SINK WITH SUCTION/INJECTION ON WALL},
JOURNAL = {Frontiers in Heat and Mass Transfer},
VOLUME = {13},
YEAR = {2019},
NUMBER = {1},
PAGES = {1--8},
URL = {http://www.techscience.com/fhmt/v13n1/53140},
ISSN = {2151-8629},
ABSTRACT = {This paper analyzes a hypothesis of the 2−dimensional thermal transport behavior of Newtonian axisymmetric, viscous heating flow in a horizontal
pipe. The flow is subjected to an externally applied uniform suction across the pipe wall in the polar direction, a constant magnetic field perpendicular
to the wall and a uniform heat source/sink on the surface of the cylinder. The thermal boundary condition is imposed as a uniform heat flux.
The Velocity fields are expressed in terms of stream function and the solution is obtained using the homotopy analysis method (HAM). Graphs are
designed to analyze the significant effect on temperature and velocity fields of different flow and geometric parameters. Streamline, isotherm and
pressure contours are also presented. It is observed that the temperature distribution increases with an increase in Prandtl number, whereas it decreases
with an increase in Eckert number (viscous dissipation effect).},
DOI = {10.5098/hmt.13.6}
}



