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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Natural convection analysis employing entropy generation and heatline visualization in a hollow L-shaped cavity filled with nanofluid using lattice Boltzmann method- experimental thermo-physical properties
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Natural convection analysis employing entropy generation and heatline visualization in a hollow L-shaped cavity filled with nanofluid using lattice Boltzmann method- experimental thermo-physical properties

机译:使用晶格Boltzmann方法 - 实验热物理性质的空心L形腔内采用熵产生和热线可视化的自然对流分析。实验热物理性质

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摘要

The natural convection heat transfer and fluid flow is analyzed using lattice Boltzmann numerical method. The entropy generation analysis and heatline visualization are used to study the convective flow field comprehensively. The hollow L-shaped cavity is considered and filled with SiO2-TiO2/Water-EG ( 60: 40) hybrid nanofluid. The thermal conductivity and dynamic viscosity of nanofluid are measured experimentally. To use the experimental data of thermal conductivity and dynamic viscosity, two sets of correlations based on temperature for six different solid volume fractions of 0.5, 1, 1.5, 2, 2.5 and 3 vol% are derived. The influences of different governing parameters such different aspect ratios, solid volume fractions of nanofluid and Rayleigh numbers on the fluid flow, temperature filed, average/local Nusselt number, total/local entropy generation and heatlines are presented.
机译:使用晶格Boltzmann数值方法分析自然对流传热和流体流动。 熵产生分析和热线可视化用于全面研究对流流场。 中空L形腔被认为并填充有SiO 2-TiO2 /水 - 例如(60:40)杂交纳米流体。 实验测量纳米流体的导热率和动态粘度。 为了使用导热性和动态粘度的实验数据,推导出基于六种不同的固体体积分数的两组相关性为0.5,1,1,15,2,2.5和3体积%。 提出了不同治疗参数的影响,这种不同的纵横比,纳米流体和瑞利数在流体流动,温度归档,平均/局部露珠,总/局部熵产生和热线上的影响。

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