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Heat transfer and friction factor of water based TiO_2 and SiO_2 nanofluids under turbulent flow in a tube

机译:管中湍流作用下水基TiO_2和SiO_2纳米流体的传热和摩擦系数

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摘要

The heat transfer coefficient and friction factor of TiO_2 and SiO_2 water based nanofluids flowing in a circular tube under turbulent flow are investigated experimentally under constant heat flux boundary condition. TiO_2 and SiO_2 nanofluids with an average particle size of 50 nm and 22 nm respectively are used in the working fluid for volume concentrations up to 3.0%. Experiments are conducted at a bulk temperature of 30 ℃ in the turbulent Reynolds number range of 5000 to 25,000. The enhancements in viscosity and thermal conductivity of TiO_2 are greater than SiO_2 nanofluid. However, a maximum enhancement of 26% in heat transfer coefficients is obtained with TiO_2 nanofluid at 1.0% concentration, while SiO_2 nanofluid gave 33% enhancement at 3.0% concentration. The heat transfer coefficients are lower at all other concentrations. The particle concentration at which the nanofluids give maximum heat transfer has been determined and validated with property enhancement ratio. It is observed that the pressure drop is directly proportional to the density of the nanoparticle.
机译:在恒定的热通量边界条件下,实验研究了在湍流下在圆管中流动的TiO_2和SiO_2水基纳米流体的传热系数和摩擦系数。 TiO_2和SiO_2纳米流体的平均粒径分别为50 nm和22 nm,用于工作流体中的体积浓度最高为3.0%。实验是在30℃的体温下,在雷诺数为5000至25,000的湍流范围内进行的。 TiO_2的粘度和导热系数的增强大于SiO_2纳米流体。然而,在浓度为1.0%的TiO_2纳米流体中,传热系数最大提高了26%,而浓度为3.0%的SiO_2纳米流体的传热系数提高了33%。在所有其他浓度下,传热系数都较低。已经确定了纳米流体提供最大热传递的颗粒浓度,并通过性能增强比进行了验证。观察到压降与纳米颗粒的密度成正比。

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