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Drag reduction and heat transfer of surfactants flowing in a capillary tube

机译:在毛细管中流动的表面活性剂的减阻和传热

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Pressure drop and heat transfer were measured in fully developed laminar flow in a pipe of inner diameter 1.07 mm in the range of Reynolds numbers 10 ≤ Re ≤450. The study was performed for water and water-surfactant solution of 530 and 1060 ppm. It was shown that these surfactant solutions increase the pressure drop in adiabatic and diabatic flows. The dependence of friction coefficients as a function of solvent Reynolds number was used to predict the ability of certain surfactant solutions to increase drag in laminar flows. The experimental values of the Nusselt number depend significantly on the thermal conduction through the tube wall. They become lower than theoretically predicted for tubes heated with constant heat flux on the wall. The heat transfer coefficients with surfactant solutions were higher than that in water flow at the same bulk velocity. The results showed that the Peclet number is an additional parameter needed for a description of the averaged Nusselt number in laminar pipe flow of water and surfactant solution.
机译:在内径1.07 mm,雷诺数10≤Re≤450的范围内的完全展开的层流中测量压降和传热。对530和1060 ppm的水和水表面活性剂溶液进行了研究。结果表明,这些表面活性剂溶液增加了绝热和绝热流的压降。摩擦系数与溶剂雷诺数的函数关系用于预测某些表面活性剂溶液增加层流阻力的能力。努塞尔数的实验值在很大程度上取决于通过管壁的热传导。对于在壁上以恒定热通量加热的管子,它们变得比理论上要低。在相同体积速度下,表面活性剂溶液的传热系数高于水流中的传热系数。结果表明,Peclet数是描述水和表面活性剂溶液层流中平均Nusselt数所需的附加参数。

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