Suppr超能文献

具有罗宾条件的拉伸表面配置的化学反应性Oldroyd-B纳米流体中的非线性对流-辐射分析:在纳米涂层制造中的应用

Analysis of Nonlinear Convection-Radiation in Chemically Reactive Oldroyd-B Nanoliquid Configured by a Stretching Surface with Robin Conditions: Applications in Nano-Coating Manufacturing.

作者信息

Nasir Muhammad, Waqas Muhammad, Bég O Anwar, Ameen Hawzhen Fateh M, Zamri Nurnadiah, Guedri Kamel, Eldin Sayed M

机构信息

Faculty of Informatics and Computing, Besut Campus, University Sultan Zainal Abidin, Besut 22200, Malaysia.

NUTECH School of Applied Science and Humanities, National University of Technology, Islamabad 44000, Pakistan.

出版信息

Micromachines (Basel). 2022 Dec 11;13(12):2196. doi: 10.3390/mi13122196.

Abstract

Motivated by emerging high-temperature manufacturing processes deploying nano-polymeric coatings, the present study investigates nonlinear thermally radiative Oldroyd-B viscoelastic nanoliquid stagnant-point flow from a heated vertical stretching permeable surface. Robin (mixed derivative) conditions were utilized in order to better represent coating fabrication conditions. The nanoliquid analysis was based on Buongiorno's two-component model, which features Brownian movement and thermophoretic attributes. Nonlinear buoyancy force and thermal radiation formulations are included. Chemical reactions (constructive and destructive) were also considered since coating synthesis often features reactive transport phenomena. An ordinary differential equation model was derived from the primitive partial differential boundary value problem using a similarity approach. The analytical solutions were achieved by employing a homotopy analysis scheme. The influence of the emerging dimensionless quantities on the transport characteristics was comprehensively explained using appropriate data. The obtained analytical outcomes were compared with the literature and good correlation was achieved. The computations show that the velocity profile was diminished with an increasing relaxation parameter, whereas it was enhanced when the retardation parameter was increased. A larger thermophoresis parameter induces an increase in temperature and concentration. The heat and mass transfer rates at the wall were increased with incremental increases in the temperature ratio and first order chemical reaction parameters, whereas contrary effects were observed for larger thermophoresis, fluid relaxation and Brownian motion parameters. The simulations can be applied to the stagnated nano-polymeric coating of micromachines, robotic components and sensors.

摘要

受新兴的采用纳米聚合物涂层的高温制造工艺的推动,本研究考察了来自加热的垂直拉伸可渗透表面的非线性热辐射Oldroyd-B粘弹性纳米流体驻点流动。采用罗宾(混合导数)条件以便更好地表示涂层制造条件。纳米流体分析基于布翁焦尔诺的双组分模型,该模型具有布朗运动和热泳特性。包含了非线性浮力和热辐射公式。由于涂层合成通常具有反应传输现象,因此也考虑了化学反应(建设性和破坏性)。使用相似方法从原始偏微分边值问题导出了常微分方程模型。通过采用同伦分析方案获得了解析解。使用适当的数据全面解释了新出现的无量纲量对传输特性的影响。将获得的分析结果与文献进行了比较,并取得了良好的相关性。计算结果表明,速度剖面随着松弛参数的增加而减小,而随着延迟参数的增加而增大。较大的热泳参数会导致温度和浓度升高。壁面处的传热和传质速率随着温度比和一级化学反应参数的增加而增加,而对于较大的热泳、流体松弛和布朗运动参数则观察到相反的效果。这些模拟可应用于微机械、机器人部件和传感器的停滞纳米聚合物涂层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29ab/9782562/a0974094d5c6/micromachines-13-02196-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验