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Experimental study on gas-liquid flow characteristics of submerged air jets

机译:浸没式空气喷射气液流动特性的实验研究

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The gas-liquid flow structure and interfacial behavior of submerged air jets were investigated experimentally using high speed digital video camera and image processing techniques. The jet pressure ratio varied from 1.8 to 4.8 in the experiment. And results from different jet nozzles were processed and compared. Statistical characteristics of the jet diameters along the axial distance were obtained and analyzed. Time series analysis was implemented to study the interface unsteadiness by calculating the gas-liquid interface deviation. The results showed that the jet diameters increase first linearly then nonlinearly and its growth rate decreases along the axial distance. The reason for the divergence between the result of this experiment and those done by other researchers was analyzed. Comparing the results of different pressure ratios and nozzle diameters, we found that larger jet pressure ratios have larger jet diameters and nozzle diameters nearly have no bearing on the distribution of dimensionless jet diameters. The interface unsteadiness in low and high pressure ratios exhibited totally distinct properties. And a minimum unsteady value was found along the axis of the air jets.
机译:通过高速数字摄像机和图像处理技术实验研究了浸没式空气喷射的气体流动结构和界面行为。喷射压力比在实验中的1.8至4.8变化。并加工不同喷射喷嘴的结果并进行比较。获得并分析沿轴向距离的射流直径的统计特性。实施时间序列分析以通过计算气液界面偏差来研究界面不稳定。结果表明,射流直径首先线性地增加,然后非线性地增加,并且其生长速率沿轴向距离降低。分析了该实验结果与其他研究人员完成的结果之间的原因。比较不同压力比和喷嘴直径的结果,我们发现较大的喷射压力比具有较大的射流直径,喷嘴直径几乎没有轴承对无量纲射流直径的分布。低压和高压比中的界面不稳定表现出完全不同的特性。沿着空气喷气机的轴找到最小不稳定值。

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