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辐射二阶材料中存在霍尔效应、离子滑移和热扩散时的热质传递最新进展:微机械应用

Recent Development of Heat and Mass Transport in the Presence of Hall, Ion Slip and Thermo Diffusion in Radiative Second Grade Material: Application of Micromachines.

作者信息

Deepthi V V L, Lashin Maha M A, Ravi Kumar N, Raghunath Kodi, Ali Farhan, Oreijah Mowffaq, Guedri Kamel, Tag-ElDin El Sayed Mohamed, Khan M Ijaz, Galal Ahmed M

机构信息

Department of Mathematics, CVR College of Engineering, Hyderabad 500039, India.

College of Engineering, Princess Nourah Bint Abdulrahman University, Riyadh 84428, Saudi Arabia.

出版信息

Micromachines (Basel). 2022 Sep 21;13(10):1566. doi: 10.3390/mi13101566.

Abstract

This article describes the incompressible two-dimensional heat and mass transfer of an electrically conducting second-grade fluid flow in a porous medium with Hall and ion slip effects, diffusion thermal effects, and radiation absorption effects. It is assumed that the fluid is a gray, absorbing-emitting but non-scattering medium and the Rosseland approximation is used to describe the radiative heat flux in the energy equation. It is assumed that the liquid is opaque and absorbs and emits radiation in a manner that does not result in scattering. It is considered an unsteady laminar MHD convective rotating flow of heat-producing or absorbing second-grade fluid across a semi-infinite vertical moving permeable surface. The profiles of velocity components, temperature distribution, and concentration are studied to apply the regular perturbation technique. These profiles are shown as graphs for various fluid and geometric parameters such as Hall and ion slip parameters, radiation absorption, diffusion thermo, Prandtl number, Schmidt number, and chemical reaction rate. On the other hand, the skin friction coefficient and the Nusselt number are determined by numerical evaluation and provided in tables. These tables are then analysed and debated for various values of the flow parameters that regulate it. It may be deduced that an increase in the parameters of radiation absorption, Hall, and ion slip over the fluid region increases the velocity produced. The resulting momentum continually grows to a very high level, with contributions from the thermal and solutal buoyancy forces. The temperature distribution may be more concentrated by raising both the heat source parameter and the quantity of radiation. When one of the parameters for the chemical reaction is increased, the whole fluid area will experience a fall in concentration. Skin friction may be decreased by manipulating the rotation parameter, but the Hall effect and ion slip effect can worsen it. When the parameter for the chemical reaction increases, there is a concomitant rise in the mass transfer rate.

摘要

本文描述了在具有霍尔效应、离子滑移效应、扩散热效应和辐射吸收效应的多孔介质中,导电二级流体流动的不可压缩二维热质传递。假设流体是一种灰色的、吸收发射但不散射的介质,并采用罗斯兰近似来描述能量方程中的辐射热通量。假设液体是不透明的,以不导致散射的方式吸收和发射辐射。考虑了一种不稳定的层流磁流体动力学对流旋转流动,即产热或吸热的二级流体穿过半无限垂直移动的渗透表面。应用正则摄动技术研究了速度分量、温度分布和浓度的分布。这些分布以各种流体和几何参数(如霍尔和离子滑移参数、辐射吸收、扩散热、普朗特数、施密特数和化学反应速率)的图表形式显示。另一方面,通过数值计算确定了表面摩擦系数和努塞尔数,并以表格形式给出。然后对这些表格进行分析和讨论,以探讨调节这些参数的各种流动参数值。可以推断,流体区域内辐射吸收、霍尔效应和离子滑移参数的增加会提高产生的速度。由此产生的动量不断增长到非常高的水平,这得益于热浮力和溶质浮力的作用。通过提高热源参数和辐射量,温度分布可能会更加集中。当化学反应的其中一个参数增加时,整个流体区域的浓度将会下降。通过控制旋转参数可以降低表面摩擦,但霍尔效应和离子滑移效应会使其恶化。当化学反应参数增加时,传质速率会随之提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/caf5/9610405/eb82552856c0/micromachines-13-01566-g002.jpg

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