Analytical Solution for Three-Dimensional Steady Flow of Condensation Film on Inclined Rotating Disk by Optimal Homotopy Analysis Method

Authors

  • Hany Nasr HASSAN Department of Basic Science, Faculty of Engineering, Benha University, Benha
  • Mohammad Mehdi RASHIDI Faculty of Engineering, Bu-Ali Sina University, Hamedan

Keywords:

Homotopy analysis method, optimal convergence-control parameter, series solution, rotating disk, film thickness

Abstract

In this paper, the Optimal Homotopy Analysis Method (OHAM) has been used to derive a highly accurate analytic solution for the steady three-dimensional problem of a condensation film on an inclined rotating disk. With a similarity solution method, the governing equations can be reduced to a system of nonlinear ordinary differential equations (ODEs). The control parameter (ħ) in the HAM is derived by using the averaged residual error method. Using the optimal control parameter provides a superior control on the convergence and accuracy of the analytical solution. The velocity and temperature profiles are shown and the influence of Prandtl number on the temperature profiles is discussed in detail. The validity of the obtained solutions is verified by the numerical results.

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Author Biography

Hany Nasr HASSAN, Department of Basic Science, Faculty of Engineering, Benha University, Benha

Ph.D.

Basic Science Department
Benha Faculty of Engineering
Benha University
Zip Code: 13512-Benha, Qalubia
Egypt

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Published

2013-07-01

How to Cite

HASSAN, H. N., & RASHIDI, M. M. (2013). Analytical Solution for Three-Dimensional Steady Flow of Condensation Film on Inclined Rotating Disk by Optimal Homotopy Analysis Method. Walailak Journal of Science and Technology (WJST), 10(5), 479–498. Retrieved from https://wjst.wu.ac.th/index.php/wjst/article/view/255