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Numerical study of MHD mixed convection in a nanofluid filled lid driven square enclosure with a rotating cylinder

机译:纳米流体填充旋转盖圆柱驱动方形罩中MHD混合对流的数值研究

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In this study, a numerical study of MHD mixed convection nanofluid filled lid driven square enclosure was performed. The bottom wall of the cavity is heated and the top wall is kept at constant temperature lower than that of the heater. Other walls of the square enclosure and cylinder surface are assumed to be adiabatic. The governing equations are solved with finite element method. The influence of the Richardson number (0.001 ≤ Ri ≤ 10), Hartmann number (0 ≤ Ha ≤ 50), angular rotational speed of the cylinder (-10 ≤ Ω ≤ 10) and solid volume fraction of the nanoparticle (0 ≤φ < 0.05) on fluid flow and heat transfer are numerically investigated. It is observed that 17% of heat transfer enhancement is obtained for Ri = 10 when compared to flow at Ri = 1. Averaged heat heat transfer decreases with increasing Hartmann number and 14.2% of heat transfer enhancement is obtained for Ω= -10 compared to motionless cylinder case at Ω = 0. When the solid volume fraction of nanoparticle is increased, heat transfer increases.
机译:在这项研究中,对MHD混合对流纳米流体填充盖驱动的方形外壳进行了数值研究。空腔的底壁被加热并且顶壁被保持在恒定温度下,该温度低于加热器的温度。假定方形外壳的其他壁和圆柱面是绝热的。控制方程采用有限元法求解。理查森数(0.001≤Ri≤10),哈特曼数(0≤Ha≤50),圆柱体的角旋转速度(-10≤Ω≤10)和纳米粒子的固体体积分数(0≤φ< (0.05)对流体流动和传热进行了数值研究。可以观察到,与Ri = 1时的流量相比,Ri = 10时可获得17%的传热增强。与Hartmann数增加相比,平均传热减少,而Ω= -10时,平均传热则得到14.2%。 Ω= 0时的不动圆柱体情况。当纳米粒子的固体体积分数增加时,热传递也会增加。

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