首页> 外文期刊>Journal of Micromechanics and Microengineering >Flow map and measurement of void fraction and heat transfer coefficient using an image analysis technique for flow boiling of water in a silicon microchannel
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Flow map and measurement of void fraction and heat transfer coefficient using an image analysis technique for flow boiling of water in a silicon microchannel

机译:硅微通道中水流沸腾的图像分析技术的流图和孔隙率和传热系数的测量

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摘要

The present work focuses on the generation of the flow regime map for two-phase water flow in microchannels of a hydraulic diameter of 140μm. An image analysis algorithm has been developed and utilized to obtain the local void fraction. The image processing technique is also employed to identify and estimate the percentage of different flow regimes and heat transfer coefficient, as a function of position, heat flux and mass flow rate. Both void fraction and heat transfer coefficient are found to increase monotonically along the length of the microchannel. At low heat flux and low flow rates, bubbly, slug and annular flow regimes are apparent. However, the flow is predominately annular at high heat flux and high flow rate. A breakup of the flow frequency suggests that the flow is bistable in the annular regime, in that at a fixed location, the flow periodically switches from single-phase liquid to annular and vice versa. Otherwise, the occurrence of three regimes-single-phase liquid, bubbly and slug are observed. These results provide several useful insights about two-phase flow in microchannels besides being of fundamental interest.
机译:本工作着重于水力直径为140μm的微通道中两相水流的流态图的生成。图像分析算法已被开发并用于获得局部空隙率。图像处理技术还被用来根据位置,热通量和质量流率来识别和估计不同流态和热传递系数的百分比。发现空隙率和传热系数都沿着微通道的长度单调增加。在低热通量和低流速下,会出现气泡,团状和环形流态。然而,在高热通量和高流速下,流动主要是环形的。流动频率的破坏表明,流动在环形状态下是双稳态的,因为在固定位置,流动会定期从单相液体切换到环形,反之亦然。否则,观察到三种状态的发生:单相液体,气泡和弹丸。这些结果除了具有基本意义外,还提供了有关微通道中两相流的一些有用见解。

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