Liquid film flow over an unsteady moving surface with a new stretching velocity

被引:4
作者
Fang, Tiegang [1 ]
Wang, Fujun [1 ]
Gao, Bo [2 ]
机构
[1] North Carolina State Univ, Mech & Aerosp Engn Dept, Raleigh, NC 27695 USA
[2] Jiangsu Univ, Sch Energy & Power Engn, Zhenjiang, Jiangsu, Peoples R China
关键词
STAGNATION-POINT FLOW; LAW FLUID FILM; HEAT-TRANSFER; MAGNETIC-FIELD; THIN-FILM; VISCOUS DISSIPATION; SHRINKING SHEET; THERMOCAPILLARITY; EQUATIONS; NANOFLUID;
D O I
10.1063/1.5046479
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In this paper, the liquid film flow over an unsteady moving surface is investigated by considering a new surface moving velocity U-w = Ax/t. With this prescribed surface velocity, the governing Navier-Stokes (NS) equations are transformed into a similarity ordinary differential equation, which is solved numerically for both two-dimensional and axisymmetric flow configurations. The results are an exact solution to the full NS equations. The flow characteristics are controlled by a wall moving parameter, namely, A. It is found that solutions only exist for a certain range of the wall moving parameter, i.e., A >= -1/2 for the two dimensional case and A >= -1/4 for the axisymmetric case. The dimensionless liquid film thickness (beta) first increases with the increase in A in the solution domain, and then, it reaches a peak of beta(m) = 1.3864 at A = 0.90 for the two-dimensional case and beta(m) = 1.5836 at A = 0.53 for the axisymmetric case. For both flow configurations, the liquid film thickness increases with time and there exists flow reversal for a positive value of A. These new solutions can not only provide an exact solution to the NS equations but also be used to explain the liquid film flow occurring in practical applications. Published by AIP Publishing.
引用
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页数:12
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