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Influence of Variable Thermophysical Properties on Nanofluid Bioconvection along a Vertical Isothermal Cone

机译:沿垂直等温锥的可变热物理性质对纳米流体生物对流的影响

摘要

The prime purpose of this analysis is to investigate the effect of variable thermophysical properties of nano fluid on bioconvection boundary layer flow past a uniformly heated vertical cone. The governing equations with associated boundary conditions for this phenomenon are cast into a non-dimensional form via continuous transformation, which are then solved by using the implicit finite difference method. How does the phenomena of heat transfer is effected due to the temperature-dependent thermophysical properties of the fluid is the question investigated in this manuscript. Comprehensive numerical computations are carried out for wide range of the parameters that are describing the flow characteristics. The influence of the governing physical parameters on the distribution of velocity and temperature profiles, wall skin friction and local rate of heat transfer is explored. Tabular comparison with some special cases of published data is done and good agreement is found.It is recorded that, the variable thermophysical properties of the fluid are more likely to promote the rate of heat transfer, Q_w as compared to fluid having constant properties.
机译:该分析的主要目的是研究纳米流体的可变热物理性质对流经均匀加热的垂直圆锥体的生物对流边界层流动的影响。具有此现象的关联边界条件的控制方程通过连续变换被转换为无量纲形式,然后使用隐式有限差分法求解。本论文探讨了由于流体的温度依赖性热物理特性而如何影响热传递现象的问题。对描述流动特性的各种参数进行了全面的数值计算。探讨了控制物理参数对速度和温度分布,壁皮肤摩擦和局部传热速率的影响。与已发表数据的一些特殊情况进行了表格比较,并发现了很好的一致性。据记录,与具有恒定特性的流体相比,流体的可变热物理特性更有可能促进传热速率Q_w。

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