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Air–water flow characteristics in high-velocity free-surface flows with 50 void fraction

机译:孔隙率为50%的高速自由表面流中的空气-水流特征

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摘要

High-velocity free-surface flows are complex two-phase flows and limited information is available about the interactions between air and water for void fractions of about 50%. Herein a detailed experimental study was conducted in the intermediate flow region (C ∼ 50%) on a stepped spillway and the microscopic air–water flow characteristics were investigated. The results showed differences in water and droplet chord times with comparatively larger number of air chord times (0–2 ms), and larger number of water chord times (2–6 ms). A monotonic decrease of particle chord modes was observed with increasing bubble count rates. Several characteristic time scales were identified based upon inter-particle arrival time analyses of characteristic chord time classes as well as spectral analyses of the instantaneous void fraction signal. Chord times of 3–5 ms appeared to be characteristic time scales of the intermediate flow region having similar time scales compared to the local correlation and integral turbulent time scales and to time scales associated with bubble break-up and turbulent velocity fluctuations. A further characteristic time scale of 100 ms was identified in a frequency analysis of instantaneous void fraction. This time scale was of the same order of magnitude as free-surface auto-correlation time scales suggesting that the air–water flow structure was affected by the free-surface fluctuations.
机译:高速自由表面流是复杂的两相流,关于约50%的空隙率,关于空气和水之间相互作用的信息有限。本文在阶梯溢流道的中间流动区域(C〜50%)中进行了详细的实验研究,并研究了微观的气水流动特性。结果表明,水弦和水滴弦的时间差异较大,而空气弦的次数(0–2 ms)和水弦的次数(2–6 ms)相对较多。随着气泡计数率的增加,观察到颗粒弦模式的单调减少。基于特征弦时间类别的粒子间到达时间分析以及瞬时空隙分数信号的频谱分析,确定了几个特征时间标度。 3-5 ms的弦时间似乎是中间流区域的特征性时标,与本地相关性和整体湍流时标以及与气泡破裂和湍流速度波动相关的时标相比具有相似的时标。在瞬时空隙率的频率分析中确定了另一个100ms的特征时间标度。该时间尺度与自由表面自相关时间尺度的数量级相同,表明空气-水流结构受自由表面波动的影响。

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