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Mixed convection from a discrete heat source in enclosures with two adjacent moving walls and filled with micropolar nanofluids

机译:来自离散热源的密闭对流,该密闭对流中有两个相邻的移动壁并填充有微极性纳米流体

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摘要

This paper examines numerically the thermal and flow field characteristics of the laminar steady mixed convection flow in a square lid-driven enclosure filled with water-based micropolar nanofluids by using the finite volume method. While a uniform heat source is located on a part of the bottom of the enclosure, both the right and left sidewalls are considered adiabatic together with the remaining parts of the bottom wall. The upper wall is maintained at a relatively low temperature. Both the upper and left sidewalls move at a uniform lid-driven velocity and four different cases of the moving lid ordinations are considered. The fluid inside the enclosure is a water based micropolar nanofluid containing different types of solid spherical nanoparticles: Cu, Ag, Al2O3, and TiO2. Based on the numerical results, the effects of the dominant parameters such as Richardson number, nanofluid type, length and location of the heat source, solid volume fractions, moving lid orientations and dimensionless viscosity are examined. Comparisons with previously numerical works are performed and good agreements between the results are observed. It is found that the average Nusselt number along the heat source decreases as the heat source length increases while it increases when the solid volume fraction increases. Also, the results of the present study indicate that both the local and the average Nusselt numbers along the heat source have the highest value for the fourth case (C4). Moreover, it is observed that both the Richardson number and moving lid ordinations have a significant effect on the flow and thermal fields in the enclosure.
机译:本文使用有限体积方法,对填充有水基微极性纳米流体的方形盖驱动的壳体中层流稳定混合对流的热场和流场特性进行了数值研究。当均匀的热源位于外壳底部的一部分上时,左右侧壁和底壁的其余部分都被认为是绝热的。上壁保持在较低的温度。上侧壁和左侧壁均以一致的盖驱动速度移动,并考虑了四种不同的移动盖顺序情况。外壳内部的流体是水基微极性纳米流体,其中包含不同类型的固体球形纳米颗粒:Cu,Ag,Al2O3和TiO2。基于数值结果,检查了诸如Richardson数,纳米流体类型,热源的长度和位置,固体体积分数,移动的盖子方向和无量纲粘度等主要参数的影响。与以前的数字工作进行了比较,并观察到结果之间的良好一致性。发现沿着热源的平均努塞尔数随着热源长度的增加而减小,而随着固体体积分数的增加而增加。另外,本研究的结果表明,沿着第四种情况(C4),沿热源的局部和平均努塞尔数均具有最高值。此外,可以观察到,理查森数和运动盖准则均对外壳中的流场和热场产生重大影响。

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