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Thermocapillarity in a liquid film on an unsteady stretching surface

机译:不稳定表面上液膜中的热毛细作用

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The influence of thermocapillarity on the flow and heat transfer in a thin liquid film on a horizontal stretching sheet is analysed. The time-dependent governing boundary layer equations for momentum and thermal energy are reduced to a set of coupled ordinary differential equations by means of an exact similarity transformation. The resulting three-parameter problem is solved numerically for some representative values of an unsteadiness parameter S and a thermocapillarity number M for Prandtl numbers from 0.001 to 100. The thermocapillary surface forces drag the liquid film in the same direction as the stretching sheet and a local velocity minimum occurs inside the film. The surface velocity, the film thickness, and the Nusselt number at the sheet increase with M for Pr approx< 10. For higher Prandtl numbers, the thermal boundary layer is confined to the lower part of the liquid film and the temperature at the free surface remains equal to the slit temperature and the thermocapillary forces vanish.
机译:分析了热毛细作用对水平拉伸片上液体薄膜中流动和传热的影响。动量和热能的时间相关控制边界层方程式通过精确的相似性变换简化为一组耦合的常微分方程式。对于不稳定参数S和0.001至100的Prandtl数的热毛细管数M的一些代表性值,通过数值方法解决了由此产生的三参数问题。热毛细管表面力沿与拉伸片相同的方向牵引液体膜,最小速度发生在薄膜内部。当Pr大约为10时,表面速度,膜厚度和片材上的Nusselt值随M增大。对于较高的Prandtl数,热边界层限于液膜的下部,而自由表面的温度保持等于缝隙温度,并且热毛细管力消失。

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