首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >NATURAL CONVECTION HEAT TRANSFER IN 2D AND 3D TRAPEZOIDAL ENCLOSURES FILLED WITH NANOFLUID
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NATURAL CONVECTION HEAT TRANSFER IN 2D AND 3D TRAPEZOIDAL ENCLOSURES FILLED WITH NANOFLUID

机译:纳米流体填充的2D和3D梯形外壳中的自然对流传热

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The purpose of the present study is to investigate the heat transfer performance due to free convection of nanofluids with variable properties inside 2D and 3D channels with trapezoidal cross sections. The governing equations are solved numerically using the finite volume method and the SIMPLER algorithm. In this study, the effect of the nanoparticle volume fraction, Rayleigh number, side wall angles of the trapezoidal section, and axial slope of the 3D channel are examined. The presented results include the average Nusselt number, flow circulation streamlines, and isothermal contours. The heat transfer rate (i.e., Nusselt number) is seen to increase in both 2D and 3D channels with an increase in the Rayleigh number. In 2D trapezoidal enclosures, the Nusselt number decreases with an increase in the nanoparticle volume fraction from zero to 2% and increases if the nanoparticle volume fraction is greater than 2%. In 3D channels, an increase in the axial slope of the channel leads to an increase in the Nusselt number.
机译:本研究的目的是研究由于具有梯形横截面的2D和3D通道内部具有可变特性的纳米流体的自由对流而引起的传热性能。控制方程使用有限体积法和SIMPLER算法进行数值求解。在这项研究中,检查了纳米颗粒体积分数,瑞利数,梯形截面的侧壁角度和3D通道的轴向斜率的影响。呈现的结果包括平均Nusselt数,流循环流线和等温线。可以看出,随着瑞利数的增加,在2D和3D通道中传热速率(即Nusselt数)都会增加。在2D梯形外壳中,随着纳米粒子体积分数从零增加到2%,Nusselt数减少,而如果纳米粒子体积分数大于2%,则Nusselt数增加。在3D通道中,通道轴向斜率的增加导致Nusselt数的增加。

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