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Development Characteristics of Velocity Transports in An Isothermal Heated Drag-Reducing Surfactant Solution Flow

机译:等温加热减压表面活性剂溶液流动速度传输的发展特征

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The development characteristics, turbulence transports for stresses and kinetic energy of a cetyltrimethyl ammonium chloride (CTAC) surfactant solution for a two-dimensional channel flow have been experimentally investigated. Time mean velocity and fluctuating velocity are measured using a Phase Doppler Anemometry (PDA) at the Reynolds number 1.78X104 and isothermal heated temperature 31 deg C. Although mean velocity profiles at three cross sections show that the fluid is almost fully developed, the peak location of fluctuating intensity for the CTAC solution is slightly away from the wall downstream from the fluid and the peak location of fluctuating intensity is observed at far away from the wall than that of water. The location where the velocity gradient has its maximum, the fluctuating intensity does not get the high value. The elastic shear stress contribution to the total shear stress is 15 percents to 36 percents and it gets to the maximum near to the wall. The surfactant elastic shear stress is almost a liner function of the height of the channel, which means that the elastic stress contribution of the different cross locations is approximately the same. The fluctuating surfactant stress work is negative and the fluctuating elastic shear stresses produce rather than dissipate kinetic energy.
机译:实验研究了二维通道流动的氯酰氯(CTAC)表面活性剂溶液的应力和动能的显影特征,湍流传输。使用在雷诺数1.78x104和等温加热温度31℃下使用相位多普勒式气旋(PDA)测量时间平均速度和波动速度。虽然三个横截面的平均速度分布表明,流体几乎完全开发,峰值位置CTAC溶液的波动强度略微远离流体下游的壁,并且在远离壁的远离壁的比较远离壁的波动强度的峰值位置。速度梯度最大的位置,波动强度不会得到高值。弹性剪切应力对总剪切应力的贡献为15%至36个百分比,它达到墙壁附近的最大值。表面活性剂弹性剪切应力几乎是通道高度的衬垫函数,这意味着不同交叉位置的弹性应力贡献大致相同。波动表面活性剂应力工作是负的,并且波动弹性剪切应力产生而不是散发动能。

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