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Local Convective Heat Transfer From a Constant Heat Flux Flat Plate Cooled by Synthetic Air Jets

机译:由合成空气喷嘴冷却的恒定热通量平板的局部对流传热

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摘要

The effects of a small-scale, rectangular synthetic air jet on the local convective heat transfer from a flat, heated surface were measured experimentally. The synthetic jet impinges normal to the surface and induces small-scale motions by zero-net mass flux, time-periodic entrainment, and ejection of ambient air at frequencies whose periods are far higher than the characteristic thermal time scale. The velocity field between the jet orifice and the target plate is measured in planar cross sections using particle image velocimetry and is related to the local heat transfer from the plate. The present work suggests that synthetic jets can lead to substantial enhancement of the local heat transfer from heated surfaces by strong mixing that disrupts the surface thermal boundary layer. The dependence of the local heat transfer coefficient on the primary parameters of jet motion is characterized over a range of operating conditions.
机译:实验测量了小型矩形合成空气喷射对从平坦加热表面产生的局部对流传热的影响。合成射流垂直于表面撞击,并通过零净质量通量,时间周期夹带和以远高于特征热时标的频率喷射环境空气而引起小规模运动。使用颗粒图像测速仪在平面横截面中测量射流孔和目标板之间的速度场,该速度场与板的局部传热有关。目前的工作表明,合成射流可以通过破坏表面热边界层的强力混合,大大增强从受热表面传出的局部热量。局部传热系数对射流运动的主要参数的依赖性在一定的操作条件范围内得到了表征。

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