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An experimental investigation on the effect of gravitational orientation on flow boiling performance in different channel sizes ranges from minichannels to microchannels

机译:一种实验研究对不同通道尺寸流动性能的重力取向对微型通道的范围

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摘要

Flow boiling experiments were conducted in this work to investigate the effect of gravitational orientation on flow boiling performance in channels with different hydraulic diameters (D_h) ranging from minichannels to microchannels. Four different channel sizes (D_h ~ 100 μm, 300 μm, 500 μm and 1000 μm) were experimented through four different orientations such as horizontal upward facing (HU), horizontal downward facing (HD), vertical up flow (VUF) and vertical down flow (VDF) with mass flux ranging from 100 to 900 kg/m~2 s. Critical heat flux (CHF), heat transfer coefficient, pressure drop and flow patterns data were determined for different channel sizes with different orientations and mass fluxes. The experimental results were also compared with the different criteria reported in the literature regarding the existence of gravity force in minichannels and microchannels. From the experimental analysis it was clear that for channel sizes (D_h) of 100 and 300 μm, the gravity force was not so dominant, but in the case of 300 urn channel, VDF reported degraded heat transfer performance. For channel sizes (D_h) of 500 and 1000 μm, the gravity force was dominant. Reversed bubble flow was observed for these channel sizes in VDF orientation trial. The HD orientation also shows a reduction in critical heat flux and heat transfer coefficient for these channel sizes. VUF orientation was found to be the best for all channel specimens irrespective of channel size. The buoyancy assisted bubble movement along the length of the channel will help in easy bubble removal and flushing. The comparison with different criteria shows that only Bond number (Bo) can able to predict the existence of gravity force in different channel size ranges.
机译:在这项工作中进行了流沸实验,以研究重力取向对具有不同液压直径(D_H)的流沸性能的影响,该液压直径(D_H)范围为微型通道。通过四种不同的方向进行四种不同的通道尺寸(D_H〜100μm,300μm,500μm和1000μm),例如水平向上面向(HU),水平向下面向(HD),垂直向上流(VUF)和垂直向下流量(VDF)具有100至900 kg / m〜2 s的质量磁通量。针对具有不同取向和质量通量的不同通道尺寸确定临界热通量(CHF),传热系数,压降和流动模式数据。还将实验结果与文献中报告的不同标准进行了比较,关于迷你沟道和微通道中的重力力的存在。从实验分析中显然,对于100和300μm的通道尺寸(D_h),重力力不是如此优势,但在300瓮通道的情况下,VDF报告的传热性能降低。对于500和1000μm的通道尺寸(D_H),重力力是显性的。在VDF定向试验中,观察到这些通道尺寸的反向气泡流。 HD取向还显示了这些通道尺寸的临界热通量和传热系数的降低。无论通道尺寸如何,都发现VUF定位是最适合所有渠道标本。沿着通道长度的浮力辅助气泡运动将有助于易于泡沫去除和冲洗。与不同标准的比较表明,只有粘合号(博)可以能够预测不同通道大小范围内的重力力的存在。

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