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Nanofluid turbulent forced convection through a solar flat plate collector with Al2O3 nanoparticles

机译:纳米流体湍流强制对流通过太阳能平板电池与Al2O3纳米颗粒

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摘要

A numerical approach has been offered in this investigation regarding the turbulent three-dimensional flow due to utilizing twisted tape insets. Solar heat flux was employed to augment the temperature of nanomaterial. Streamline and velocity as well as turbulent intensity are shown in contours. In addition, the simulations with FVM accomplish to capture the behavior of thermal performance with variation of Reynolds number, diameter ratio and number of revolution. Selecting lower diameter ratio results in the thicker thermal boundary layer. Thermal performance is directly proportional to both geometric variables.
机译:在该调查中提供了一种关于湍流三维流量的数值方法,其由于利用扭曲的胶带插入而引起的湍流三维流动。 使用太阳能热通量来增加纳米材料的温度。 流线和速度以及湍流强度以轮廓显示。 此外,具有FVM的模拟实现了雷诺数,直径比和旋转次数的变化来捕获热性能的行为。 选择较低的直径比率导致较厚的热边界层。 热性能与几何变量成正比。

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