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Heat transfer enhancement in the boundary layer flow of hybrid nanofluids due to variable viscosity and natural convection

机译:可变粘度和自然对流作用增强了混合纳米流体边界层流动的传热

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摘要

The aim of the current work is to explore how heat transfer can be enhanced by variations in the basic properties of fluids in the presence of free convection with the aid of suspended hybrid nanofluids. Also, the influence of the Laurentz force on the flow is considered. The mathematical equations are converted into a pair of self-similarity equations by applying appropriate transformations. The reduced similarity equivalences are then solved numerically by Runge-Kutta-Fehlberg 45th-order method. To gain better perception of the problem, the flow and energy transfer characteristics are explored for distinct values of significant factors such as variable viscosity, convection, magnetic field, and volume fraction. The results acquired are in good agreement with previously published results. The noteworthy finding is that the thermal conductivity is greater in hybrid nanofluid than that of a regular nanofluid in the presence of specified factors. The boundary layer thickness of both hybrid nanofluid and normal nanofluid diminishes due to decrease in variable viscosity. The fluid flow and temperature of the hybrid nanofluid and normal nanofluid increases as there is a rise in volume fraction.
机译:当前工作的目的是探索在悬浮的混合纳米流体的帮助下,在自由对流的情况下,通过改变流体的基本特性可以增强传热。同样,考虑了劳伦兹力对流动的影响。通过应用适当的变换,将数学方程式转换为一对自相似方程式。然后通过Runge-Kutta-Fehlberg的45 阶方法对简化的等价性进行数值求解。为了更好地理解问题,对流量和能量转移特性进行了探索,以获取重要因素(例如可变粘度,对流,磁场和体积分数)的不同值。获得的结果与以前发布的结果非常吻合。值得注意的发现是,在存在特定因素的情况下,杂化纳米流体的导热系数要比常规纳米流体的导热系数大。由于可变粘度的降低,混合纳米流体和普通纳米流体的边界层厚度减小。混合纳米流体和普通纳米流体的流体流量和温度随着体积分数的增加而增加。

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