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Simultaneous measurements of velocity and temperature fluctuations in thermal boundary layer in a drag-reducing surfactant solution flow

机译:同时测量减阻表面活性剂溶液流中热边界层的速度和温度波动

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The mechanism of turbulent heat transfer in the thermal boundary layer developing in the channel flow of a drag-reducing surfactant solution was studied experimentally. A two-component laser Doppler velocimetry and a fine-wire thermocouple probe were used to measure the velocity and temperature fluctuations simultaneously. Two layers of thermal field were found: a high heat resistance layer with a high temperature gradient, and a layer with a small or even zero temperature gradient. The peak value of u(+)theta(+) was larger for the flow with the drag-reducing additives than for the Newtonian flow, and the peak location was away from the wall. The profile of -v(+)theta(+) was depressed in a similar manner to the depression of the profile of (-u+v+) over bar in the flow of the surfactant solution, i.e., decorrelation between v and theta compared with decorrelation between u and v. The depression of the Reynolds shear stress resulted in drag reduction; similarly, it was conjectured that the heat transfer reduction is due to the decrease in the turbulent heat flux in the wall-normal direction for a flow with drag-reducing surfactant additives. [References: 21]
机译:实验研究了减阻表面活性剂溶液在通道流动中在热边界层中湍流传热的机理。使用两分量激光多普勒测速仪和细线热电偶探头同时测量速度和温度波动。发现了两层热场:具有较高温度梯度的高耐热层和具有较小甚至零温度梯度的层。带有减阻添加剂的流体的u(+)θ(+)峰值大于牛顿流体的峰值,并且峰值位置远离壁。 -v(+)theta(+)的分布图以与表面活性剂溶液流动中bar之上(-u + v +)的分布图相似的方式被压下,即,v和theta之间的去相关与u和v之间的去相关。雷诺剪应力的降低导致阻力减小;类似地,推测传热减少是由于具有减阻表面活性剂添加剂的流动沿壁法线方向的湍流热通量减少。 [参考:21]

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