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首页> 外文期刊>Archives of Thermodynamics >Unconfined laminar nanofluid flow and heat transfer around a rotating circular cylinder in the steady regime
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Unconfined laminar nanofluid flow and heat transfer around a rotating circular cylinder in the steady regime

机译:稳态下无限制层状纳米流体在旋转圆柱体周围的流动和传热

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摘要

In this work, steady flow-field and heat transfer through a copper- water nanofluid around a rotating circular cylinder with a constant nondimensional rotation rate α varying from 0 to 5 was investigated for Reynolds numbers of 5–40. Furthermore, the range of nanoparticle volume fractions considered is 0–5%. The effect of volume fraction of nanoparticles on the fluid flow and heat transfer characteristics are carried out by using a finite-volume method based commercial computational fluid dynamics solver. The variation of the local and the average Nusselt numbers with Reynolds number, volume fractions, and rotation rate are presented for the range of conditions. The average Nusselt number is found to decrease with increasing value of the rotation rate for the fixed value of the Reynolds number and volume fraction of nanoparticles. In addition, rotation can be used as a drag reduction technique.
机译:在这项工作中,对于雷诺数为5-40的情况,研究了绕着旋转圆柱体的铜水纳米流体的稳定流场和热传递,其中恒定的无量纲旋转率α从0到5变化。此外,考虑的纳米颗粒体积分数范围为0–5%。纳米颗粒的体积分数对流体流动和传热特性的影响通过使用基于有限体积方法的商业计算流体动力学求解器来进行。对于条件范围,显示了局部和平均努塞尔数随雷诺数,体积分数和旋转速率的变化。对于纳米颗粒的雷诺数和体积分数的固定值,发现平均努塞尔数随旋转速率的值增加而降低。另外,旋转可以用作减阻技术。

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