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Experimental study of bubble behaviors and CHF on printed circuit board (PCB) in saturated pool water at various inclination angles

机译:不同倾角下饱和池水中印刷电路板(PCB)气泡行为和CHF的实验研究

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Experiments were performed to investigate bubble behaviors and pool boiling Critical Heat Flux (CHF) on a thin flat rectangular copper heater fabricated on Printed Circuit Board (PCB), at various inclination angles. The surface inclination angles were 0°, 45°, 90°, 135°, and 180°. Results showed the Onset of Nucleate Boiling (ONB) heat flux increased with increasing heater orientation from 0° to 90°, while early ONB occurred when the heater faced downwards (135° and 180°). The nucleate boiling was observed to be unstable at low heat flux (1–21% of CHF) and changed into typical boiling when the heat flux was above 21% of CHF. The result shows the CHF decreased with increasing heater orientation from 0° to 180°. In addition, the bubble departure diameter at the heater facing upwards (0°, 45°, and 90°) was more prominent compared to that of the heater facing downward (135°). The nucleation site density also observed increased with increasing heat flux. Moreover, the departed bubbles with larger size were observed to require a longer time to re-heat and activate new nucleation sites. These results proved that the ONB, CHF, and bubble dynamics were strongly dependent on the heater surface orientation.
机译:进行了实验,以研究在印刷电路板(PCB)上制成的扁平扁平矩形铜加热器上,在各种倾斜角度下的气泡行为和熔池沸腾临界热通量(CHF)。表面倾斜角为0°,45°,90°,135°和180°。结果表明,随着加热器方向从0°到90°的增加,核沸腾(ONB)的热通量增加,而加热器朝下(135°和180°)则发生早期的ONB。在低热通量(CHF的1–21%)下观察到核沸腾是不稳定的,当热通量超过CHF的21%时,成核沸腾变成典型的沸腾。结果表明,随着加热器方向从0°增大到180°,CHF减小。另外,与朝下的加热器(135°)相比,朝上(0°,45°和90°)的加热器处的气泡离开直径更显着。还观察到成核位点密度随热通量的增加而增加。此外,观察到较大尺寸的离去的气泡需要更长的时间来重新加热并激活新的成核位置。这些结果证明,ONB,CHF和气泡动力学强烈依赖于加热器表面的方向。

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