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首页> 外文期刊>International Journal of Multiphase Flow >Single bubble growth in saturated pool boiling on a constant wall temperature surface
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Single bubble growth in saturated pool boiling on a constant wall temperature surface

机译:在恒定壁温表面上的饱和池沸腾中单气泡生长

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摘要

Nucleate pool boiling experiments with constant wall temperatures were performed using R11 and R113 for saturated pool boiling conditions. A microscale heater array and Wheatstone bridge circuits were used to maintain a constant wall temperature condition and to obtain measurements with high temporal and spatial resolution. Accurate heat flow rate data were obtained from microscale heater array by controlling the surface conditions at a high temporal resolution. Images of the bubble growth were captured using a high-speed CCD camera synchronized with the heat flow rate measurements. The geometry of the bubble was obtained from the images. In the asymptotic growth region, the bubble showed a growth rate that was proportional to t~(1/5), which was slower than the growth rate proposed in previous analytical analyses. The bubble growth behavior was analyzed using a new dimensionless parameter to permit comparisons with previous results at the same scale. The comparisons showed good agreement in the asymptotic growth region. A non-dimensional correlation for the bubble radius that can predict the bubble growth and the heat flow rate simultaneously, was suggested. The required heat flow rate for the volume change of the observed bubble was estimated to be larger than the instantaneous heat flow rate measured from the wall. Heat, other than the instantaneous heat supplied from the wall, is estimated to be transferred through the interface between bubble and liquid, even with saturated pool conditions. This phenomenon under a saturated pool condition needs to be analyzed and the data from this study can supply the good experimental data with the precise boundary condition (constant wall temperature).
机译:在饱和池沸腾条件下,使用R11和R113进行了壁温恒定的核池沸腾实验。微型加热器阵列和惠斯通电桥电路用于维持恒定的壁温条件并获得具有高时间和空间分辨率的测量值。通过以高时间分辨率控制表面条件,可以从微型加热器阵列获得准确的热流量数据。使用与热流率测量同步的高速CCD摄像机捕获气泡生长的图像。从图像中获得气泡的几何形状。在渐近生长区域中,气泡显示出与t〜(1/5)成正比的增长率,比以前的分析分析中提出的增长率要慢。使用新的无量纲参数分析气泡的生长行为,以便与相同规模的先前结果进行比较。比较表明在渐近生长区域中一致性良好。提出了气泡半径的无量纲相关性,它可以同时预测气泡的增长和热流率。估计所观察到的气泡的体积变化所需的热流量大于从壁测得的瞬时热流量。甚至在饱和池条件下,除从壁提供的瞬时热量外,热量也估计会通过气泡和液体之间的界面传递。需要对饱和池条件下的这种现象进行分析,并且本研究的数据可以提供具有精确边界条件(恒定壁温)的良好实验数据。

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