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辐射对Casson纳米流体绕拉伸平板/圆柱的驻点流动的影响。

Radiation effect on stagnation point flow of Casson nanofluid past a stretching plate/cylinder.

作者信息

Mahabaleshwar U S, Maranna T, Mishra Manoranjan, Hatami M, Sunden Bengt

机构信息

Department of Studies in Mathematics, Davangere University, Shivagangothri, Davangere, Karnataka, 577007, India.

Department of Mathematics, Indian Institute of Technology Ropar, Rupnagar, Punjab, 140001, India.

出版信息

Sci Rep. 2024 Jan 16;14(1):1387. doi: 10.1038/s41598-024-51963-2.

Abstract

The exclusive behaviour of nanofluid has been actively emphasized due to the determination of improved thermal efficiency. Hence, the aim of this study is to highlight the laminar boundary layer axisymmetric stagnation point flow of Casson nanofluid past a stretching plate/cylinder under the influence of thermal radiation and suction/injection. Nanofluid comprises water and FeO as nanoparticles. In this article, a novel casson nanofluid model has been developed and studied on stretchable flat plate or circular cylinder. Adequate rational assumptions (velocity components) are employed for the transformation of the governing partial-differential equations into a group of non-dimensional ordinary-differential formulas, which are then solved analytically. The momentum and energy equations are solved through the complementary error function method and scaling quantities. Using various figures, the effects of essential factors on the nanofluid flow, heat transportation, and Nusselt number, are determined and explored. From obtained results, it is observed that the velocity field diminishes owing to magnification in stretching parameter [Formula: see text] and Casson fluid parameter [Formula: see text]. The temperature field increases by amplifying radiation [Formula: see text], and solid volume fraction parameter [Formula: see text]. The research is applicable to developing procedures for electric-conductive nanomaterials, which have potential applications in aircraft, smart coating transport phenomena, industry, engineering, and other sectors.

摘要

由于确定了提高的热效率,纳米流体的独特行为受到了积极关注。因此,本研究的目的是突出在热辐射和抽吸/注入影响下,Casson纳米流体绕过拉伸板/圆柱的层流边界层轴对称驻点流动。纳米流体由水和作为纳米颗粒的FeO组成。在本文中,开发并研究了一种新型的Casson纳米流体模型,该模型作用于可拉伸平板或圆柱体。采用了适当合理的假设(速度分量),将控制偏微分方程转化为一组无量纲常微分公式,然后进行解析求解。通过互补误差函数法和缩放量求解动量和能量方程。利用各种图形,确定并探讨了关键因素对纳米流体流动、热传递和努塞尔数的影响。从所得结果可以看出,由于拉伸参数[公式:见原文]和Casson流体参数[公式:见原文]的增大,速度场减小。温度场通过增大辐射[公式:见原文]和固体体积分数参数[公式:见原文]而升高。该研究适用于开发导电纳米材料的程序流程,这些材料在航空、智能涂层传输现象、工业、工程和其他领域具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27d0/10791655/75aad2285792/41598_2024_51963_Fig1_HTML.jpg

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