首页> 外文期刊>International Communications in Heat and Mass Transfer >Natural convection and entropy generation of Ag-water nanofluid in a finned horizontal annulus: A particular focus on the impact of fin numbers
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Natural convection and entropy generation of Ag-water nanofluid in a finned horizontal annulus: A particular focus on the impact of fin numbers

机译:翅片水平环空中Ag水纳米流体的自然对流和熵生成:特别关注鳍数的影响

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摘要

In this work, numerical investigation of the natural convection and entropy generation characteristics of biological Ag-water nanofluid in a horizontal annulus having fins attached to the inner cylinder is aimed. The impacts of nanoparticle volume concentration (Φ = 0, 0.1, 0.5 and 1%), Rayleigh number (Rα = 10~3, 10~4 and 10~5), and number of fins (n = 0, 2, 4 and 8) on the flow structure, temperature distribution, average Nusselt number (Nu) as well as on the thermal, frictional and total entropy generation rates are examined comprehensively. The computational outcomes indicate that the fin attachment and the increment of its number significantly improve Nu up to 35.50%, while the entropy generation rate sourced by heat transfer significantly increases up to 39.07% accordingly, compared to the finless annulus. The frictional entropy generation is remarkably decreased at low Rα by the increment of the number of fins, nevertheless, it is notably increased at high Rα. Besides, the inclusion of nanoparticles significantly contributes to the augmentation of Nu, being attained up to around 30% with a volume fraction of Φ = 1%, whereas it significantly increases both thermal and frictional entropy generation rates, which can respectively reach up to 30.25 and 77.60% at the same volume fraction in the finless annulus.
机译:在这项工作中,针对具有附着在内圆柱的翅片的水平环空体中的生物效应纳米流体的自然对流和熵产生特性的数值研究。纳米颗粒体积浓度(φ= 0,0.1,0.5和1%)的影响,瑞利数(Rα= 10〜3,10〜4和10〜5),以及翅片的数量(n = 0,2,4和8)全面地检查温度分布,温度分布,平均露天数(NU)以及热,摩擦和总熵生成率。计算结果表明鳍附着和其数量的增量显着提高了高达35.50%,而通过热传递的熵产生速率与氟环相比相应地增加了39.07%。通过翅片的数量的增加,摩擦熵产生在低Rα中显着降低,因此在高Rα中显着增加。此外,包含纳米颗粒显着促进NU的增强,其φ= 1%的体积分数达到约30%,而它显着增加了热和摩擦熵产生速率,可分别达到30.25在氟环中相同的体积分数下77.60%。

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