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Effects of inclined magnetic field on mixed convection in a nanofluid filled double lid-driven cavity with volumetric heat generation or absorption using finite element method

机译:倾斜磁场对纳米流体填充双盖驱动腔混合对流的影响,使用有限元法容量发热或吸收

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A computational analysis has been performed on mixed convection in a double sided lid-driven cavity in the presence of volumetric heat generation or absorption. Effects of inclined magnetic field are also studied. The governing parameters are solved via Galerkin weighted residual finite element method in space and the Crank-Nicolson in time. Governing parameters are nanoparticle volume fraction (0.0 = phi = 0.04), Richardson number (0.01 = Ri = 10), internal heat generation or absorption parameter (-10 = q = 10), inclination angle of magnetic field (0 degrees = gamma = 90 degrees) and Hartmann number (0 = Ha = 100). It is observed that the highest heat transfer is obtained in case of the maximum value of heat absorption. As a further finding, heat transfer decreases with increasing of Hartmann number and increases with increasing of nanoparticle volume fraction.
机译:在体积发热或吸收的存在下,对双面盖驱动腔中的混合对流进行了计算分析。 还研究了倾斜磁场的影响。 控制参数通过在空间和曲柄尼科尔森的Galerkin加权残留有限元方法中解决。 控制参数是纳米粒子体积分数(0.0& = 0.04),Richardson数(0.01 = 0.01 = 10),内部发热或吸收参数(-10& = q& = 10) ,磁场的倾斜角度(0度&γ= 90度)和hartmann编号(0& = ha& = 100)。 观察到,在最大值的热吸收值的情况下获得最高的传热。 作为进一步的发现,随着Hartmann数的增加而降低,随着纳米颗粒体积分数的增加而增加。

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