首页> 外文会议>International Conference on Nanochannels, Microchannels and Minichannels; 20070618-20; Puebla(MX) >The Effects of Cross Links on Adiabatic Two-Phase Flow Characteristics in Scaled MicroChannel Heat Sinks
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The Effects of Cross Links on Adiabatic Two-Phase Flow Characteristics in Scaled MicroChannel Heat Sinks

机译:交联对比例微通道散热器绝热两相流动特性的影响

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The effects of cross-links, introduced in the channel core of an array of parallel scaled microchannels, were investigated by comparison of the flow distribution in six different multichannel configurations. A standard straight channel test section and five other test sections, which incorporated cross-links were used. One case includes two cross-links located at 1/3 and 2/3's of the channel length, with their width varied by one, two, and three times the channel width. Whereas, four and six crosslinks were used for the other case. All test sections had 45 parallel rectangular channels, with a hydraulic diameter of 1.59 mm, and were fabricated from clear acrylic to enhance flow visualization. The flow distribution was monitored at four select channels. The working mixture was air and water with superficial velocities ranging from 0.03 to 9.93 m/s, and 0.04 to 0.83 m/s, respectively. This corresponds to an observed range of flow quality between 0 and 0.25, whereby the mass flux range is from 42 kg/m~2s to 834 kg/m~2s. The cross-linked designs permit fluid communication between channels, and the results showed that there is a significant impact on flow distribution when compared to the straight channel design. This is due to flow sharing between neighboring channels. Flow patterns were presented in terms of fractional time function, and provided further insight to flow characteristics. Comparing with a single channel flow regime map, the expected intermittent flow regime was observed 84% to 90 % of the time for the cross-linked designs, whereas 65% to 80% of that for the straight channel design.
机译:通过比较六个不同的多通道配置中的流量分布,研究了在平行缩放微通道阵列的通道核心中引入的交叉链接的影响。使用标准的直通道测试部分和其他五个包含交叉链接的测试部分。一种情况是包括两个位于通道长度的1/3和2/3处的交叉链接,它们的宽度变化为通道宽度的一,二和三倍。而在另一种情况下使用四个和六个交联键。所有测试部分均具有45个平行矩形通道,水力直径为1.59 mm,并由透明丙烯酸制成,以增强流动可视性。在四个选择通道上监测流量分布。工作混合物是空气和水,其表面速度分别为0.03至9.93 m / s和0.04至0.83 m / s。这对应于观察到的流量质量范围在0到0.25之间,其中质量通量范围为42 kg / m〜2s至834 kg / m〜2s。交联设计允许通道之间进行流体连通,结果表明,与直通道设计相比,它对流量分布产生了重大影响。这是由于相邻信道之间的流量共享。用分数时间函数表示了流动模式,并提供了对流动特性的进一步了解。与单通道流态图相比,对于交联设计,预期的间歇流态的观察时间为84%至90%,而对于直通道设计,为65%至80%。

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