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Mixed convection of copper-water nanofluid in a shallow inclined lid driven cavity using the lattice Boltzmann method

机译:格子Boltzmann方法在斜盖驱动浅腔中铜-水纳米流体的混合对流

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The goal of this work is to study the laminar mixed convection of water-Cu nanofluid in an inclined shallow driven cavity using the lattice Boltzmann method. The upper lid of the cavity moves with constant velocity, U_0, and its temperature is higher than that of the lower wall. The side walls are assumed to be adiabatic. The effects of different values of the cavity inclination angle and nanoparticles volume fraction at three states of free, force and mixed convection domination are investigated while the Reynolds number is kept fixed as Re = 100 and Re = 10. Validation of present results with those of other available ones shows a suitable agreement. Streamlines, isotherms, Nusselt numbers, and velocity and temperature profiles are presented. More Nusselt numbers can be achieved at larger values of the inclination angle and nanoparticles volume fraction at free convection domination. Results imply the appropriate ability of LBM to simulate the mixed convection of nanofluid in a shallow inclined cavity.
机译:这项工作的目的是使用晶格玻尔兹曼方法研究倾斜的浅驱动腔中水-铜纳米流体的层流混合对流。空腔的上盖以恒定速度U_0移动,并且其温度高于下壁的温度。假定侧壁是绝热的。研究了在自由,力和混合对流占主导地位的三种状态下,空腔倾斜角和纳米颗粒体积分数的不同值的影响,同时雷诺数保持固定为Re = 100和Re = 10。其他可用的协议显示了合适的协议。给出了流线,等温线,努塞尔数以及速度和温度曲线。在自由对流支配下,在较大的倾角和纳米颗粒体积分数时,可以获得更多的努塞尔数。结果表明,LBM具有适当的能力来模拟纳米流体在浅倾斜腔中的混合对流。

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