首页> 外文会议>American Society of Mechanical Engineers(ASME) Summer Heat Transfer Conference(HT2005) vol.3; 20050717-22; San Francisco,CA(UA) >Heat Transfer and Bubble Movement of Double- and Single-side Heating Subcooled Flow Boiling in Narrow Channels
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Heat Transfer and Bubble Movement of Double- and Single-side Heating Subcooled Flow Boiling in Narrow Channels

机译:窄通道内双侧和单侧加热过冷流动沸腾的传热和气泡运动

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摘要

Compared with conventional channels, narrow and micro channels have significant heat transfer enhancement characteristic. With smooth internal surface, such channels can efficiently avoid encrustation at the washing of the high-speed liquid. Moreover, heat transfer elements can be easily assembled. These types of channels have been adopted extensively in many engineering applications, e.g. microelectronic cooling, advanced nuclear reactor, cryogenic, aviation and space technology and thermal engineering. Geometrical size of flow passage-away affects heat exchange of flow boiling, with the result that the bubble in narrow channel acts very different from those in non-narrow channel. This paper experimentally compared the bubble behavior with different heating methods of narrow rectangular channels, and the bubble behavior of subcooled flow boiling of R-12 in the narrow channels both with double side and single heating. Experimental settings are: the heating length of test-section is 400 mm, the cross-section is 35 mm in width and 2mm in gap size, mass flux is 700~1500 kg.m~(-2).s~(-1), the heat flux is 25~70kW.m~(-2) and the pressure is 1.3~2.0 MPa. Comparisons were made on Onset of Nucleate Boiling (ONB) point and bubble characters with various flow patterns. Results revealed that the characteristics of double and single side heating shown good agreement with proper modifications.
机译:与常规通道相比,窄通道和微通道具有显着的传热增强特性。具有光滑的内表面,这样的通道可以有效地避免在高速液体洗涤时结垢。而且,传热元件可以容易地组装。这些类型的通道已在许多工程应用中得到广泛采用,例如微电子冷却,先进核反应堆,低温,航空航天技术和热工程。流动通道的几何尺寸影响流动沸腾的热交换,其结果是窄通道中的气泡与非窄通道中的气泡有很大不同。本文通过实验比较了矩形加热通道在不同矩形加热方式下的气泡行为,以及R-12的过冷流动沸腾在双通道和单加热下的气泡行为。实验设置为:试验段加热长度为400 mm,横截面宽度为35 mm,间隙尺寸为2 mm,质量通量为700〜1500 kg.m〜(-2).s〜(-1 )的热通量为25〜70kW.m〜(-2),压力为1.3〜2.0 MPa。比较了具有不同流动模式的核沸腾(ONB)点和气泡特征的发生。结果表明,双面加热和单面加热的特性与适当的修改显示出良好的一致性。

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