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Natural convective boundary layer flow of a nanofluid past a convectively heated vertical plate

机译:纳米流体的自然对流边界层流经对流加热的垂直板

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摘要

Natural convective flow of a nanofluid over a convectively heated vertical plate is investigated using a similarity analysis of the transport equations followed by their numerical computations. The transport model employed includes the effect of Brownian motion and thermophoresis. The analysis shows that velocity, temperature and solid volume fraction of the nanofluid profiles in the respective boundary layers depend, besides the Prandtl and Lewis numbers, on four additional dimensionless parameters, namely a Brownian motion parameter Nb, a thermophoresis parameter Nt, a buoyancy-ratio parameter Nr and convective parameter Nc. In addition to the study of these parameters on the boundary layer flow characteristics (velocity, temperature, solid volume fraction of the nanofluid, skin friction, and heat transfer), correlations for the Nusselt and Sherwood numbers have been developed based on a regression analysis of the data. These linear regression models provide a highly accurate (with a maximum standard error of 0.004) representation of the numerical data and can be conveniently used in engineering practice.
机译:使用对流方程的相似性分析,然后对其进行数值计算,研究了纳米流体在对流加热垂直板上的自然对流流动。使用的传输模型包括布朗运动和热泳的影响。分析表明,除了普朗特和刘易斯数外,各个边界层中纳米流体分布的速度,温度和固体体积分数还取决于四个附加的无量纲参数,即布朗运动参数Nb,热泳参数Nt,浮力-比率参数Nr和对流参数Nc。除了研究这些关于边界层流动特性(速度,温度,纳米流体的固体体积分数,皮肤摩擦和热传递)的参数外,还基于对Nusselt和Sherwood数的回归分析,建立了相关性。数据。这些线性回归模型提供了数值数据的高精度(最大标准误差为0.004)表示,可以在工程实践中方便地使用。

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