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首页> 外文期刊>International Journal of Thermal Sciences >Experimental investigation on thermal and flow characteristics of synthetic jet with multiple-orifice of different shapes
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Experimental investigation on thermal and flow characteristics of synthetic jet with multiple-orifice of different shapes

机译:不同形状多孔的合成射流热流动特性的实验研究

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The impingement heat transfer characteristics of a multiple-orifice synthetic jet of circular, oval and diamond orifice shapes are investigated experimentally at different Stokes number, normalized axial distance and pitch ratio. In this study, particle image velocimetry (PIV) based measurements are also undertaken to better understand the underlying flow characteristics of multiple-orifice synthetic jet and to support the associated heat transfer data. The average Nusselt number (Nu(avg)) obtained with multiple-orifice synthetic jet is up to 75% higher than a single orifice synthetic jet using the same input power to synthetic jet actuator. For larger pitch ratio (R > 1.25), the maximum value of Nu(avg) is observed to be reduced and obtained closer to heated surface. Multiple-orifice configurations with diamond shape exhibited better thermal performance as compared to other shapes examined in the study. The multiple-orifice configurations with one and two satellite orifices demonstrated two local peaks in Nu(avg) and are observed only with smaller values of pitch ratio. The location of these local peaks illustrated very little or no dependence on Stokes number (S). Configurations with no center orifice exhibited significantly lower heat transfer as compared to the configurations with center orifice as well as the case with single center orifice. The secondary maxima in Nu(avg) are entirely missing in the configurations with no center orifice. The PIV data reveals interactions between the adjacent synthetic jets in multiple-orifice case to form a combined synthetic jet with better mixing characteristics as compared to a single orifice synthetic jet and therefore the former exhibits higher heat transfer rate. The PIV data further illustrated the individual behavior of synthetic jets resulting from satellite orifices in multiple-orifice configurations with no center orifice. In addition to heat and flow characteristics of multiple-orifice synthetic jet, the heat transfer correlations are also developed from the experimental data for different orifice shapes. The study of multiple-orifice synthetic jet presented here is expected to be useful in designing the cooling modules for electronic devices.
机译:在不同的斯托克斯数,归一化轴向距离和桨距比下实验研究了圆形,椭圆形和金刚石形状形状的多孔合成射流的冲击传热特性。在该研究中,还进行了基于粒子图像速度(PIV)的测量,以更好地理解多孔合成射流的底层流动特性并支持相关的传热数据。使用与合成射流致动器相同的输入电源相同的输入功率,用多孔合成射流获得的平均露珠数(NU(AVG))高于单孔合成射流的75%高达75%。对于较大的俯仰比(R> 1.25),观察到NU(AVG)的最大值减少并更接近加热表面。与研究中检查的其他形状相比,具有金刚石形状的多孔配置表现出更好的热性能。具有一个和两个卫星孔的多孔配置在NU(AVG)中显示了两个局部峰值,并且仅观察到较小的音调比值。这些本地峰的位置很少或没有依赖Stokes数量。与带有中心孔的配置相比,没有中心孔的配置显着降低了传热显着较低的传热以及单中心孔的情况。 nu(avg)中的辅助Maxima在没有中心孔的配置中完全缺少。 PIV数据揭示了多孔箱中相邻合成射流之间的相互作用,以形成与单个孔合成射流相比更好的混合特性的组合合成射流,因此前者表现出更高的传热速率。 PIV数据进一步示出了由没有中心孔的多孔构造中由卫星孔产生的合成射流的单独行为。除了多孔合成射流的热量和流动特性之外,还从不同孔口形状的实验数据开发传热相关性。这里呈现的多孔合成射流的研究预计可用于设计用于电子设备的冷却模块。

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