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Laminar Flow and Heat Transfer in the Entrance Region of Trapezoidal Channels With Constant Wall Temperature

机译:壁温恒定的梯形通道入口区域的层流和传热

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Simultaneously developing three-dimensional laminar flow and heat transfer in the entrance region of trapezoidal channels have been investigated using numerical methods in the Reynolds number range from 10 to 1000. The principal and secondary velocity fields, the temperature field, and all associated heat and momentum exchange parameters have been examined. The present results for the fully developed flow region of the channels compare well with the available literature. In the entrance region, it is observed that the axial velocity profiles develop overshoots near the walls and particularly at the channel corners. It is shown that boundary-layer type of approximations, which lead to Reynolds-number-independent Poiseuille and Nusselt numbers, can be used for Reynolds numbers over 50 and after a few hydraulic diameters from the channel inlet. It is also shown that hydrodynamic entrance lengths calculated with methods based on fully developed flow data are grossly in error. New correlations are proposed for the entrance length, and for the friction and heat transfer coefficients.
机译:在数值范围为10到1000的雷诺数下,研究了梯形通道入口区域同时发展的三维层流和热传递。主,次速度场,温度场以及所有相关的热和动量交换参数已经过检查。通道完全发展的流动区域的当前结果与现有文献进行了很好的比较。在入口区域,观察到轴向速度分布在壁附近,特别是在通道拐角处出现过冲。结果表明,边界层类型的近似值会导致不依赖雷诺数的泊松数和Nusselt数,可用于超过50的雷诺数,并且在通道入口有几个水力直径之后。还表明,使用基于充分发展的流量数据的方法计算出的流体动力入口长度存在严重误差。对于入口长度,摩擦系数和传热系数,提出了新的相关性。

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