하방비등 조건에서 슬러그 기포의 정량적 가시화 기법에 대한 불확정성 해석 연구

김지민
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Abstract

This paper reports an uncertainty analysis of quantitative visualization methodology for slug bubble dynamics in downward-facing nucleate boiling condition. Measurement of dynamics of slug bubble, i.e. departing speed, frequency, and diameter, is very important to predict safety margin of thermal systems in moving vehicle. By employing high speed visualization and post-processing, we quantitatively measured the volume and location of slug bubble, so that vapor generation rate and departing speed data were derived from their time differentiation. As a visualization methodology, its reliability was evaluated via uncertainty analysis. For 95% confidence interval, uncertainty of vapor generation rate and departing speed were 3% and 2%, respectively, and which were one order lower than standard deviation of those data.
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研究在下防费等条件下强击气泡定量可视化技术的不确定性解释
本文报道了下向核沸腾条件下段塞流泡动力学定量可视化方法的不确定性分析。段塞气泡的动力学测量,即离体速度、频率和直径,对于预测运动车辆热系统的安全裕度是非常重要的。采用高速可视化和后处理技术,定量测量了段塞流气泡的体积和位置,并根据其时间差得到了蒸汽生成速率和离开速度数据。作为一种可视化方法,通过不确定度分析对其可靠性进行了评价。在95%置信区间内,蒸汽产生率和离开速度的不确定度分别为3%和2%,比这些数据的标准差低一个阶。
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