首页> 外文会议>ERCOFTAC International Symposium on Engineering Turbulence Modelling and Measurements(ETMM6) >EFFECTS OF ADVERSE PRESSURE GRADIENT ON HEAT TRANSFER MECHANISM IN THERMAL BOUNDARY LAYER
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EFFECTS OF ADVERSE PRESSURE GRADIENT ON HEAT TRANSFER MECHANISM IN THERMAL BOUNDARY LAYER

机译:不利压力梯度对热边界层传热机制的影响

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Characteristics of turbulent boundary layer flows with adverse pressure gradients (APG) differ significantly from those of canonical boundary layers. We have experimentally investigated the effects of APG on the heat transfer mechanism in a turbulent boundary layer developing on the uniformly heated plate. It is found that in the APG boundary layer the Stanton number follows the correlation curve for a flat plate, although the skin friction coefficient decreases drastically in comparison with zero-pressure-gradient flow. The mean temperature profiles in APG flows lie below the conventional thermal law of the wall in the fully turbulent region. Moreover, the quadrant splitting and trajectory analyses reveal that the effects of APG on the thermal field are not similar to those on the velocity field. The structural change in APG flow causes the non-local interactions between the temperature fluctuations and the wall-normal motions. However, the situation is fairly complex because the heat transport is mainly determined by the ejection motions, which are not significant contributors to the momentum transport in the APG flow.
机译:紊流边界层的特性不良的压力梯度(APG)从那些规范边界层显著不同流动。我们已经实验研究APG的影响传热机构在紊流附面层上均匀地加热板显影。据发现,在APG边界层的斯坦顿数遵循用于平板的相关曲线,虽然皮肤的摩擦系数具有零压力梯度流动比较急剧下降。在APG的平均温度分布流谎言壁的常规热法下面在完全湍流区域。此外,象限分裂和轨迹的分析表明,APG对热场的影响不是类似那些在速度场。在APG流的结构变化引起的温度波动和壁正常动作之间的非局部相互作用。然而,由于热输送主要由弹射动作,这是不显著贡献者在APG流的动量传递确定的情况是相当复杂的。

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