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Natural convective flow in circular and arc cavities filled with water-cu nanofluid: a comparative study

机译:填充水-铜纳米流体的圆形和弧形腔中的自然对流流动:比较研究

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The fluid flow and heat transfer mechanism on steady state solutions obtained in circular and arc-square enclosures filled with water/Cu nanofluid as well as base fluid has been investigated numerically by Galerkin's weighted residual finite element procedure. The left and right boundaries of the cavities are, respectively, heated and cooled at constant temperatures, while their horizontal walls are adiabatic. Effects of buoyancy force (Rayleigh number) and viscous force (Prandtl number) with a wide range of Ra (103 - 106) and Pr (4.2 - 6.2) on heat transfer phenomenon inside cavities are observed. The fluid flow and temperature gradient are shown by streamlines and isotherms patterns. From the investigation, it is reported that the Rayleigh and Prandtl numbers are playing significant role in heat transfer rate. The variation in heat transfer is calculated in terms of average Nusselt number. Heat transfer rate is found to be higher for water/Cu nanofluid with 2% solid volume fraction than pure water. About 2.7% higher heat transfer rate is obtained for circular cavity than that of arc cavity using water/Cu nanofluid at Ra = 104 and Pr = 5.8.
机译:通过Galerkin加权残差有限元程序,对在充满水/ Cu纳米流体以及基础流体的圆形和圆弧形外壳中获得的稳态溶液中的流体流动和传热机理进行了数值研究。空腔的左边界和右边界分别在恒定温度下加热和冷却,而它们的水平壁是绝热的。 Ra(10 3 -10 6 )和Pr(4.2-6.2)的变化范围对浮力(瑞利数)和粘性力(普朗特数)的影响观察到腔体内的热传递现象。流线和等温线模式显示了流体的流量和温度梯度。通过调查,据报道瑞利和普朗特数在传热速率中起着重要作用。传热的变化是根据平均努塞尔数计算的。发现固体体积分数为2%的水/铜纳米流体的传热速率高于纯水。使用水/铜纳米流体在Ra = 10 4 和Pr = 5.8时,圆腔的传热速率比弧腔的传热速率高约2.7%。

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