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TIME AND SPATIAL PRESSURE AND VELOCITY CORRELATION IN A MICROBUBBLE LADEN BOUNDARY LAYER

机译:微泡升边界层中的时间和空间压力和速度相关性

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Measurements of the velocity fields and wall pressure have been performed in a microbubble laden boundary layer in order to have a better understanding of the degree of correlation between these two parameters. Cross-correlation coefficients have been obtained from synchronized measurements of pressure and velocity at different distances from the wall in a channel flow. The results show a high correlation between pressure and both the streamwise and normal components of the velocity vector for the two-phase flow case. In contrast, the correlation coefficient between pressure and velocity is high only for the streamwise component of the velocity vector for single phase flow (no microbubbles in the flow). A practical application of these measurements is obtaining data and information to better describe the mechanism responsible for the microbubble drag reduction phenomenon, which has great potential for energy savings on different transport means.
机译:在微泡升放边界层中进行了速度场和壁压的测量,以便更好地理解这两个参数之间的相关程度。已经从沟道流中的壁的不同距离处的压力和速度的同步测量获得了互相关系数。结果显示了两相流动壳的压力和速度向量的流动和正常部件之间的高相关。相反,压力和速度之间的相关系数仅用于单相流的速度载体的流动分量(流动中没有微泡)。这些测量的实际应用是获取数据和信息,以更好地描述负责微泡阻抗减少现象的机制,这具有很大的能量节约在不同的运输方式上的潜力。

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