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首页> 外文期刊>Journal of Zhejiang University. Science, A >Laminar mixed convection heat transfer of SiC-EG nanofluids in a triangular enclosure with a rotating inner cylinder: simulations based on the measured thermal conductivity and viscosity
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Laminar mixed convection heat transfer of SiC-EG nanofluids in a triangular enclosure with a rotating inner cylinder: simulations based on the measured thermal conductivity and viscosity

机译:层状混合对流传热SiC - 例如纳米流体中的三角形外壳中的旋转内筒:基于测量的导热率和粘度模拟

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A numerical study has been carried out for a laminar steady mixed convection flow in a 2D triangular enclosure with an inner rotating coaxial cylinder, with the enclosure filled with ethylene glycol-silicon carbide (SiC-EG). The thermal conductivity and viscosity of the SiC-EG nanofluids were experimentally determined by using a Decagon Devices KD2 Pro thermal property meter and a rotational Brookfield viscometer, respectively. Various pertinent parameters, such as the dimensionless rotation velocity, solid volume fraction, dimensionless radius of the inner cylinder, and rayleigh numbers, were analyzed to determine their influences on heat transfer and fluid flow. Results clearly show how the direction of rotation of the cylinder affects the thermal performance in a triangular enclosure. It is found that the average Nusselt number increases with rise in the rayleigh number or as more nanoparticles are added to the base liquid. It was also observed that at constant rayleigh number, different rotational conditions have remarkable effects on the flow and heat transfer characteristics.
机译:已经对具有内旋转同轴圆筒的2D三角形外壳中的层状稳态混合对流流来进行数值研究,内部旋转同轴圆筒填充有乙二醇 - 碳化硅(SiC-EG)。通过使用Decagon器件KD2 Pro热性能计和旋转Brookfield粘度计来实验确定SiC-例如纳米流体的导热率和粘度。分析了各种相关参数,例如无量纲旋转速度,固体体积分数,内圆筒的无量纲半径和瑞利数,以确定它们对传热和流体流动的影响。结果清楚地展示了气缸的旋转方向如何影响三角形外壳中的热性能。发现,在瑞利数中的升高或更多的纳米颗粒加入到基础液体中,平均露珠数增加。还观察到,在恒定的瑞利数,不同的旋转条件对流动和传热特性具有显着影响。

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