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Exact Multiple Solutions for the Slip Flow and Heat Transfer in a Converging Channel

机译:汇流通道中滑流和传热的精确多种解决方案

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A special case of Falkner-Skan flows past stretching boundaries is considered when the momentum and thermal slip boundary conditions are allowed at the boundary. Exact analytical solutions are found for the converging channel (wedge nozzle). The solutions are shown to be unique, double, or triple depending on the slip parameter and wall moving parameter. The provided closed-form analytical solutions are rare class of exact solutions for the Falkner-Skan flow equations. Thresholds of existence of multiple solutions are determined. For each flow solutions, the corresponding energy equation is also exactly solved when the internal heat generated by viscous dissipation can be neglected or numerically integrated when the viscous dissipation is significant. Analytic and numeric values of the rate of heat transfer affected by the presence of a surface temperature jump are also worked out. The possibility of realistic physical solution out of multiple solutions is finally discussed.
机译:当在边界处允许动量和热滑移边界条件时,将考虑Falkner-Skan流过拉伸边界的特殊情况。找到了收敛通道(楔形喷嘴)的精确分析解决方案。根据滑移参数和墙面移动参数,解决方案显示为唯一,两倍或三倍。对于Falkner-Skan流动方程,提供的封闭形式分析解决方案是一类罕见的精确解。确定多个解决方案的存在阈值。对于每种流动解,当粘性耗散很大时,可以忽略或通过数值积分积分由粘性耗散产生的内部热量时,相应的能量方程也将得到精确求解。还计算了受表面温度跳跃影响的传热速率的解析和数值。最后讨论了多种解决方案中现实的物理解决方案的可能性。

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