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首页> 外文期刊>Chemical Engineering Communications >Effects of Inclination Angle on Laminar Mixed Convection of a Nanofluid Flowing through an Annulus
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Effects of Inclination Angle on Laminar Mixed Convection of a Nanofluid Flowing through an Annulus

机译:倾斜角度对流经环空的纳米流体层流混合对流的影响

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Numerical study was done to investigate the effect of inclination angle on the hydrodynamics and thermal parameters of a nanofluid laminar flow throughout an annulus. For Al2O3/water nanofluid, profiles of axial velocity, contours of temperature, and secondary flows at the annulus cross sections are presented and discussed at different inclination angles. The results confirm that the axial component of buoyancy forces and secondary flows influences the flow regime. While the axial variation of friction coefficient was affected by the secondary flows for Ri = 0.1, it continuously changes with axial component of buoyancy forces as a function of inclination angle for Ri = 3. The results indicate that the maximum value of heat transfer coefficient obtained at the horizontal condition where the buoyancy forces result the strongest secondary flow.
机译:进行了数值研究,以研究倾斜角对整个环流中纳米流体层流的流体动力学和热学参数的影响。对于Al2O3 /水纳米流体,以不同的倾斜角度显示并讨论了环空截面处的轴向速度,温度等高线和二次流剖面。结果证实,浮力和二次流的轴向分量会影响流态。当Ri = 0.1时,摩擦系数的轴向变化受二次流的影响,但对于Ri = 3,它随浮力的轴向分量而随倾角的变化而连续变化。结果表明,传热系数的最大值在浮力产生最强次流的水平条件下。

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