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DOUBLE-DIFFUSIVE NATURAL CONVECTION OF LOW PRANDTL NUMBER LIQUIDS WITH SORET AND DUFOUR EFFECTS

机译:低PRANDTL数液体的双扩散自然对流,具有固溶和缓释作用

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An unsteady numerical model for double-diffusive natural convection of low-Pr liquids with Soret and Dufour effects inside the horizontal cavity is developed. The thermosolutal model is solved numerically using the SIMPLE algorithm with QUICK scheme. The flow field, temperature and concentration distributions for different buoyancy ratios, Rayleigh numbers and aspect ratios under different Prandtl numbers are studied systematically. The results reveal that the flow structure develops from conduction-dominated to convection as buoyancy ratio increases under different Prandtl numbers. Heat transfer intensity keeps constant and mass transfer intensity grows slowly before a critical point as Rayleigh number increases for different Prandtl numbers. Then heat transfer intensity enhances dramatically and mass transfer intensity increases faster as Rayleigh number increases after a critical point. The vortex number of flow structure, recirculation zones of isotherm and isoconcentration contours, heat and mass transfer intensity increase as aspect ratio decreases under different Prandtl numbers. Full Text: PDF DOI: http://dx.doi.org/10.5098/hmt.10.24 ISSN: 2151-8629 About Us | Contact Us | Terms of Use | Privacy Policy | Disclaimer
机译:建立了水平腔内具有Soret和Dufour效应的低Pr液体双扩散自然对流的非定常数值模型。使用具有QUICK方案的SIMPLE算法对热固模型进行数值求解。系统地研究了不同普朗特数下不同浮力比,瑞利数和长宽比的流场,温度和浓度分布。结果表明,在不同的普朗特数下,随着浮力比的增加,流动结构从传导为主发展为对流。随着不同普朗特数的瑞利数增加,传热强度保持恒定,传质强度在临界点之前缓慢增长。然后,随着临界点后瑞利数的增加,传热强度显着提高,传质强度增加更快。在不同的Prandtl数下,随着长径比的减小,流动结构的涡旋数,等温线和等浓度线的回流区,传热传质的强度增加。全文:PDF DOI:http://dx.doi.org/10.5098/hmt.10.24 ISSN:2151-8629关于我们|联系我们|使用条款|隐私政策|免责声明

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