首页> 外文期刊>Thermal science >EFFECTS OF CIRCULAR CORNERS AND ASPECT-RATIO ON ENTROPY GENERATION DUE TO NATURAL CONVECTION OF NANOFLUID FLOWS IN RECTANGULAR CAVITIES
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EFFECTS OF CIRCULAR CORNERS AND ASPECT-RATIO ON ENTROPY GENERATION DUE TO NATURAL CONVECTION OF NANOFLUID FLOWS IN RECTANGULAR CAVITIES

机译:矩形腔中纳米流体自然对流的影响,圆角和纵横比对熵产生的影响

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In this paper, entropy generation induced by natural convection of cu-water nanofluid in rectangular cavities with different circular corners and different aspect-ratios were numerically investigated. The governing equations were solved using a finite volume approach and the SIMPLE algorithm was used to couple the pressure and velocity fields. The results showed that the total entropy generation increased with the increase of Rayleigh number, irreversibility coefficient, aspect ratio or solid volume fraction while it decreased with the increase of the corner radius. It should be noted that the best way for minimizing entropy generation is decreasing Rayleigh number. This is the first priority for minimizing entropy generation. The other parameters such as radius, volume fraction, etc are placed on the second priority. However, Bejan number had an inverse trend compared with total entropy generation. As an exception, Bejan number and total entropy number had the same trend whenever solid volume fraction increased. Moreover, Nusselt number increased as Rayleigh number, solid volume fraction or aspect ratio increased whereas it decreases with the increase of corner radius.
机译:本文研究了Cu-水纳米流体在不同圆角和不同长宽比的矩形腔中自然对流引起的熵产生。使用有限体积方法求解控制方程,并使用SIMPLE算法耦合压力场和速度场。结果表明,总熵产生随着瑞利数,不可逆系数,长宽比或固体体积分数的增加而增加,而随角半径的增加而减少。应该注意的是,最小化熵产生的最佳方法是降低瑞利数。这是最小化熵产生的首要任务。其他参数(例如半径,体积分数等)置于第二优先级。然而,与总熵产生相比,贝扬数具有相反的趋势。作为例外,每当固体体积分数增加时,Bejan数和总熵数就具有相同的趋势。此外,随着瑞利数,固相体积分数或纵横比的增加,Nusselt数增加,而随着拐角半径的增加,Nusselt数减少。

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