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Sensitivity analysis for MHD effects and inclination angles on natural convection heat transfer and entropy generation of Al_2O_3-water nanofluid in square cavity by Response Surface Methodology

机译:响应面法对MHD和倾斜角对方腔中Al_2O_3-水纳米流体自然对流换热和熵产生的敏感性分析

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The natural convection heat transfer and entropy generation of Al_2O_3-water nanofluid, in a square cavity with inclination angle θ and the presence of a constant axial magnetic field B_0 are examined in this paper. The governing equations are solved numerically by finite volume method. Also an effective parameters analysis was performed by using of the Response Surface Methodology (RSM). The effects of the Rayleigh number (10~3, 10~4, 10~5 and 10~6), Hartmann number (0, 10, 30 and 50) and also inclination angles (0°, 30°, 60° and 90°) are investigated. It is observed that the mean Nusselt number and the total entropy generation increase when the Rayleigh number increases. It is also found that, regardless of the Ha parameter, by increasing of the inclination angles, the mean Nusselt number and entropy generation rate increase until inclination angle 30° and then they decrease. Also, for low Ra numbers, by increasing the Ha parameter, the mean Nusselt number increases until Ha = 10 and then decreases. The analysis showed that the sensitivity of the Nusselt number and the entropy generation to Ha parameter was too small, and as a result it was negligible. Also, the sensitivity of the mean Nusselt number and the entropy generation to inclination angle, θ, increases by increasing of this angle. It is also observed that the mean Nusselt number and the entropy generation were more sensitive to the inclination angle θ than the Ha parameter.
机译:本文研究了在具有倾角θ和恒定轴向磁场B_0存在的方腔中,Al_2O_3-水纳米流体的自然对流传热和熵产生。用有限体积法对控制方程进行数值求解。还通过使用响应表面方法(RSM)进行了有效的参数分析。瑞利数(10〜3、10〜4、10〜5和10〜6),哈特曼数(0、10、30和50)以及倾斜角度(0°,30°,60°和90)的影响°)进行了调查。观察到,当瑞利数增加时,平均努塞尔数和总熵产生增加。还发现,不管Ha参数如何,通过增加倾斜角,平均努塞尔特数和熵产生率增加,直到倾斜角为30°,然后它们减小。同样,对于低Ra数,通过增加Ha参数,平均Nusselt数会增大,直到Ha = 10,然后减小。分析表明,Nusselt数和熵生成对Ha参数的敏感度太小,因此可以忽略不计。而且,平均努塞尔数和熵产生对倾斜角θ的敏感性通过增加该角度而增加。还观察到,平均努塞尔数和熵产生比Ha参数对倾斜角θ更敏感。

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