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首页> 外文期刊>Case Studies in Thermal Engineering >Effect of fin thickness on mixed convection of hybrid nanofluid exposed to magnetic field-Enhancement of heat sink efficiency
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Effect of fin thickness on mixed convection of hybrid nanofluid exposed to magnetic field-Enhancement of heat sink efficiency

机译:翅片厚度对散热器效率暴露于磁场杂交纳米流体混合对流的影响 - 增强散热器效率

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The present study numerically simulates the mixed convection of the hybrid nanofluid (HNFs) of Al2O3/CuO–H2O on a simple heat sink (HS). The (HNFs) flow passes on an isothermal HS. The NF flow was treated as a slip flow on the upper wall. A uniform magnetic field influences the NF flow. The control volume method was employed with SIMPLE algorithm to solve the algebraic equations. For this purpose, the thickness of fins was changed between 0.1 and 0.3, studying four layouts for fins with different thicknesses. The results indicated that dispersing 3% volume fraction of hybrid nanoparticles (NPs) at a 1:1 ratio to the water enhanced heat transfer and entropy generation (Sgen) by 2.78% and 6.59%, respectively. Compared to Al2O3 NPs, dispersing CuO NPs was approved that has a larger effect on heat transfer improvement. A change in the fin thickness or layout at different Richardson numbers (Ri) triggered different behavior in isotherms and Sgen.
机译:本研究数值上模拟了在简单的散热器(HS)上的Al 2 O 3 / CuO-H2O的杂交纳米流体(HNFS)的混合对流。 (HNFS)流量在等温HS上通过。 将NF流量被视为上壁上的滑动流。 均匀的磁场影响NF流量。 采用简单算法采用控制体积方法来解决代数方程。 为此目的,翅片的厚度在0.1和0.3之间变化,研究具有不同厚度的翅片的四个布局。 结果表明,将3重量的杂化纳米颗粒(NPS)分散在1:1的比例下分别与水增强的传热和熵产生(SGEN)分别为2.78%和6.59%。 与Al2O3 NPS相比,批准了分散CuO NPS,对热传递改善具有更大的影响。 不同的Richardson号码(RI)的翅片厚度或布局的变化触发了等温线和Sgen中的不同行为。

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