首页> 外文期刊>International Journal of Applied Mechanics and Engineering >DUAL SOLUTIONS FOR BOUNDARY LAYER FLOW OF MOVING FLUID OVER A MOVING SURFACE WITH POWER-LAW SURFACE TEMPERATURE
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DUAL SOLUTIONS FOR BOUNDARY LAYER FLOW OF MOVING FLUID OVER A MOVING SURFACE WITH POWER-LAW SURFACE TEMPERATURE

机译:动力-律表面温度在运动面上流动流体边界层对流的对偶解

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摘要

An analysis of heat transfer for boundary layer forced convective flow past a moving flat surface parallel to a moving stream is presented. The power-law surface temperature at the boundary is prescribed. The surface temperature varying directly (or inversely) with power-law exponent is considered. The similarity solutions for the problem are obtained and the reduced ordinary differential equations are solved numerically. To support the validity of the numerical results, a comparison is made with known results from the open literature for some particular cases of the present study. When the surface and the fluid move in the opposite directions, dual solutions exist.
机译:对边界层强迫对流流过平行于运动流的运动平坦表面的传热进行了分析。规定边界处的幂律表面温度。考虑表面温度随幂律指数而直接(或反向)变化。得到了该问题的相似解,并对简化的常微分方程进行了数值求解。为了支持数值结果的有效性,对本研究的某些特定情况与公开文献中的已知结果进行了比较。当表面和流体沿相反方向移动时,存在双重解。

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