首页> 外文会议>International Conference on Microchannels and Minichannels >TWO LARGE-AMPLITUDE/LONG-PERIOD OSCILLATING BOILING MODES IN SILICON MICROCHANNELS
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TWO LARGE-AMPLITUDE/LONG-PERIOD OSCILLATING BOILING MODES IN SILICON MICROCHANNELS

机译:硅片微型通道中的两个大幅度/长周期振荡沸点模式

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A simultaneous visualization and measurement study has been carried out to investigate flow boiling of water in the 8 parallel silicon microchannels heated from below. It is found that there are two large-amplitude/long-period oscillating boiling modes exist in microchannels depending on the amounts of heat flux and mass flux. When the outlet water temperature is at saturation temperature and the wall temperatures are superheated, while the inlet water temperature is still subcooled, a Liquid/Two-phase Alternating Flow (LTAF) mode appears in the microchannels. This LTAF mode disappears when the inlet temperatures reaches the saturation temperature. As the heat flux is further increased such that the outlet water is superheated while the inlet water temperature is oscillating between subcooled and saturation temperature, a Liquid/Two-phase/Vapor Alternating Flow (LTVAF) mode begins. During these two unstable boiling modes, there are large-amplitude and long-period oscillations of water and wall temperatures with respect to time. Bubbly flow as well as some peculiar two-phase flow pattern are observed during the two-phase flow periods of the two unstable modes in the microchannels.
机译:已经进行了同时可视化和测量研究,以研究从下面加热的8个平行的硅微通道中的水流沸腾。发现微通道存在两个大幅度/长周期振荡沸点模式,这取决于热通量和质量磁通量的量。当出口水温处于饱和温度并且壁温度过热时,在进样口水温仍然脱气时,微通道中出现液体/两相交流流(LTAF)模式。当入口温度达到饱和温度时,这种LTAF模式消失。随着热通量进一步增加,使得出口水被过热,同时入口水温度在过冷和饱和温度之间振荡,液体/两相/蒸气交流(LTVAF)模式开始。在这两个不稳定的沸腾模式期间,随着时间的推移,存在大幅度和长周期的水和壁温度的振荡。在微通道中的两个不稳定模式的两相流时段期间观察到气泡流以及一些特殊的两相流动模式。

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