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首页> 外文期刊>Heat Transfer Research >INCREASE IN CONVECTIVE HEAT TRANSFER OVER A BACKWARD-FACING STEP IMMERSED IN A WATER-BASED TiO2 NANOFLUID
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INCREASE IN CONVECTIVE HEAT TRANSFER OVER A BACKWARD-FACING STEP IMMERSED IN A WATER-BASED TiO2 NANOFLUID

机译:在浸入水基TiO2纳米流体中的反向侧面上增加对流传热的增加

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摘要

Investigation of flow separation and reattachment of 0.2% water-based TiO2 nanofluid in an annular suddenly expanding pipe is presented in this paper. Such flows occur in various engineering and heat transfer applications. A computational fluid dynamics package (FLUENT) is used to study turbulent nanofluid flow in this research. Only a quarter of an annular pipe was investigated and simulated because of its symmetrical geometry. Standard k-c second-order implicit, pressure based-solver equations are applied. Reynolds numbers between 17,050 and 44,545, step height ratio of 1.82, and a constant heat flux of 49,050 W/m(2) were utilized in simulation. The numerical simulation results show that increase in the Reynolds number leads to an increase of the heat transfer coefficient and of the Nusselt number. Moreover, the surface temperature dropped to its lowest value after the expansion and then gradually increased along the pipe. Finally, the chaotic movement and high thermal conductivity of the TiO2 nanoparticles have contributed to the overall heat transfer enhancement of the nanofluid.
机译:本文介绍了环形突然膨胀管中0.2%水基TiO2纳米流体的流动分离和重新附着的研究。这种流量发生在各种工程和传热应用中。计算流体动力学封装(流利)用于研究该研究中的湍流纳米流体流动。由于其对称的几何形状,仅研究了一个环形管道的四分之一。施加标准K-C二阶隐式,压力基于压力型件方程。雷诺数在17050和44,545之间,步进高度比为1.82,模拟中使用49,050w / m(2)的恒定热通量。数值模拟结果表明,雷诺数的增加导致传热系数和营养数的增加。此外,表面温度在膨胀后逐渐降至其最低值,然后沿管道逐渐增加。最后,TiO2纳米粒子的混沌运动和高导热率有助于纳米流体的总热传递增强。

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