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DNS of turbulent channel flow subject to oscillatory heat flux

机译:受振荡热流影响的湍流通道DNS

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In this paper we study the heat transfer in a turbulent channel flow, which is periodically heated through its walls. We consider the flow of air and water vapor using direct numerical simulation. We consider the fluid as a compressible Newtonian gas. We focus on the heat transfer properties of the system, e.g., the temperature difference between the walls and the Nusselt number. We consider the dependence of these quantities on the frequency of the applied heat flux. We observe that the mean temperature difference is quite insensitive to the frequency and that the amplitude of its oscillations is such that its value multiplied by the square root of frequency is approximately constant. Next we add droplets to the channel, which can undergo phase transitions. The heat transfer properties of the channel in the case with droplets are found to increase by more than a factor of two, compared to the situation without droplets.
机译:在本文中,我们研究了湍流通道中的热传递,该湍流通过其壁周期性地被加热。我们使用直接数值模拟来考虑空气和水蒸气的流动。我们认为流体是可压缩的牛顿气体。我们专注于系统的传热特性,例如壁和Nusselt数之间的温差。我们考虑这些量对所施加的热通量的频率的依赖性。我们观察到平均温度差对频率非常不敏感,并且其振荡幅度使得其值乘以频率的平方根几乎是恒定的。接下来,我们将液滴添加到通道中,该液滴可能会经历相变。与没有液滴的情况相比,发现在具有液滴的情况下通道的传热特性增加了两倍以上。

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