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Droplet impact dynamics and transient heat transfer of a micro spray system for power electronics devices

机译:电力电子设备微喷涂系统的液滴冲击动力学和瞬态传热

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摘要

We present a study on the instantaneous heat transfer and droplet impact dynamics caused by multiple streams of water impinging on a polished surface with a constant heat flux (0.1-0.9 W/cm~2) heating applicable to power electronics' thermal configuration design. A multiple spray was produced by a commercial piezoelectric atomization plate (power = 1.5 W and frequency 104 kHz) with three different nozzle arrays of d_j=7μm, 10 μm and 35 μm and a corresponding mass flow rate of 4.42 × 10~(-5)kg/s, 1.11 × 10~(-4)kg/s and 1.15 × 10~(-4)kg/s, respectively. A heater consisting of an ultra-thin layer (~200 nm) of Indium Tin Oxide (ITO) combined with quartz glass (0.3 mm thickness) substrate was used to characterize the cooling history and droplet impact hydrodynamics. Through optical visualization from a bottom view, the transient impact droplets' morphology and the, surface temperature distribution, were measured and extracted to obtain the evolved film thickness. The effects of nozzle diameter, in addition to the spray height and the initial surface temperature on heat transfer for very short periods of time (<1 s), were studied. Furthermore, the resultant transient (~1 s) cooling performance and heat transfer coefficient were secured and discussed.
机译:我们对由恒定的热通量(0.1-0.9 W / cm〜2)加热下的多束水撞击抛光表面而引起的瞬时传热和液滴冲击动力学进行了研究,适用于电力电子设备的热配置设计。商用压电雾化板(功率= 1.5 W,频率104 kHz)产生了多重喷雾,具有三个不同的d_j =7μm,10μm和35μm喷嘴阵列,相应的质量流率为4.42×10〜(-5公斤/秒,1.11×10〜(-4)kg / s和1.15×10〜(-4)kg / s。使用由氧化铟锡(ITO)的超薄层(〜200 nm)和石英玻璃(0.3 mm厚度)基板组成的加热器来表征冷却历史和液滴冲击流体动力学。通过从底视图的光学可视化,测量并提取了瞬态冲击液滴的形态和表面温度分布,从而得出了演变后的膜厚。研究了喷嘴直径,以及喷雾高度和初始表面温度对短时间内(<1 s)传热的影响。此外,还确定并讨论了由此产生的瞬时(〜1 s)冷却性能和热传递系数。

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