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Three-dimensional numerical simulation of nonisotropic thermal density flow in a strongly curved open channel

机译:强弯曲明渠中各向同性热密度流的三维数值模拟

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摘要

The results from a 3D nonisotropic algebraic stress/flux turbulence model are presented to investigate the structure of thermal density flow and the temperature distribution in a strongly curved open channel (180° bend). The numerically simulated results show that (ⅰ) several secondary flows take place at the bend cross-section 90° of the curved open channel, the feature which is not found for the isothermal flows and thermal density flow in a straight channel, and (ⅱ) the thermocline in a curved channel is thicker than that in a straight channel due to the secondary flows-induced strong mixing process taking place in the former. Such features may be ascribed to the complex interaction of the buoyant force, the centrifugal force and the Reynolds stresses taking place only in curved channels. The simulated results are in good agreement with available experimental data, which indicates that the developed model can be applied for predicting the motion of the nonisotropic thermal density flow in the curved open channel.
机译:提出了来自3D非等向代数应力/通量湍流模型的结果,以研究强弯曲明渠(180°弯曲)中的热密度流和温度分布。数值模拟结果表明:(ⅰ)在弯曲明渠的弯曲横截面90°处发生了一些次要流动,对于直通道中的等温流动和热密度流动没有发现该特征,并且(ⅱ )由于二次流动引起的强混合过程在前者中发生,因此弯曲通道中的跃线比直通道中的跃线要厚。这样的特征可以归因于浮力,离心力和雷诺应力的复杂相互作用仅在弯曲通道中发生。仿真结果与现有实验数据吻合良好,表明所开发的模型可用于预测弯曲明渠中非各向同性热密度流的运动。

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