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基于修正的布翁焦尔诺模型研究粘性耗散和给定热流条件下辐射对铜-水纳米流体三维旋转流动的影响

Radiation effects on 3D rotating flow of Cu-water nanoliquid with viscous heating and prescribed heat flux using modified Buongiorno model.

作者信息

Owhaib Wahib, Basavarajappa Mahanthesh, Al-Kouz Wael

机构信息

Department of Mechanical and Maintenance Engineering, German Jordanian University, Amman, 11180, Jordan.

Center for Mathematical Needs, Department of Mathematics, CHRIST (Deemed to be University), Bangalore, Karnataka, 560029, India.

出版信息

Sci Rep. 2021 Oct 19;11(1):20669. doi: 10.1038/s41598-021-00107-x.

Abstract

In this article, the three-dimensional (3D) flow and heat transport of viscous dissipating Cu-HO nanoliquid over an elongated plate in a rotating frame of reference is studied by considering the modified Buongiorno model. The mechanisms of haphazard motion and thermo-migration of nanoparticles along with effective nanoliquid properties are comprised in the modified Buongiorno model (MBM). The Rosseland radiative heat flux and prescribed heat flux at the boundary are accounted. The governing nonlinear problem subjected to Prandtl's boundary layer approximation is solved numerically. The consequence of dimensionless parameters on the velocities, temperature, and nanoparticles volume fraction profiles is analyzed via graphical representations. The temperature of the base liquid is improved significantly owing to the existence of copper nanoparticles in it. The phenomenon of rotation improves the structure of the thermal boundary layer, while, the momentum layer thickness gets reduced. The thermal layer structure gets enhanced due to the Brownian movement and thermo-migration of nanoparticles. Moreover, it is shown that temperature enhances owing to the presence of thermal radiation. In addition, it is revealed that the haphazard motion of nanoparticles decays the nanoparticle volume fraction layer thickness. Also, the skin friction coefficients found to have a similar trend for larger values of rotation parameter. Furthermore, the results of the single-phase nanoliquid model are limiting the case of this study.

摘要

在本文中,通过考虑修正的布翁焦尔诺模型,研究了旋转参考系中粘性耗散的铜 - 水纳米流体在细长平板上的三维(3D)流动和热传输。修正的布翁焦尔诺模型(MBM)包含了纳米颗粒的随机运动和热迁移机制以及有效的纳米流体特性。考虑了罗斯兰辐射热通量和边界处的规定热通量。在普朗特边界层近似下,对控制非线性问题进行了数值求解。通过图形表示分析了无量纲参数对速度、温度和纳米颗粒体积分数分布的影响。由于基础液体中存在铜纳米颗粒,基础液体的温度显著提高。旋转现象改善了热边界层的结构,而动量层厚度减小。由于纳米颗粒的布朗运动和热迁移,热层结构得到增强。此外,结果表明温度因热辐射的存在而升高。另外,还表明纳米颗粒的随机运动会使纳米颗粒体积分数层厚度减小。此外,对于较大的旋转参数值,发现皮肤摩擦系数具有类似的趋势。此外,单相纳米流体模型的结果限制了本研究的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51db/8526597/337b0e78692d/41598_2021_107_Fig1_HTML.jpg

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