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采用伽辽金有限元法对具有旋转圆柱腔的加热三角形封闭腔内Ag/MgO-水混合纳米流体的热流饱和情况进行研究。

Heat flow saturate of Ag/MgO-water hybrid nanofluid in heated trigonal enclosure with rotate cylindrical cavity by using Galerkin finite element.

作者信息

Redouane Fares, Jamshed Wasim, Devi S Suriya Uma, Prakash M, Nasir Nor Ain Azeany Mohd, Hammouch Zakia, Eid Mohamed R, Nisar Kottakkaran Sooppy, Mahammed A Belhadj, Abdel-Aty Abdel-Haleem, Yahia I S, Eed Emad M

机构信息

LGIDD, Ahmed ZABANA University, Relizane, Algeria.

Department of Mathematics, Capital University of Science and Technology (CUST), Islamabad, 44000, Pakistan.

出版信息

Sci Rep. 2022 Feb 10;12(1):2302. doi: 10.1038/s41598-022-06134-6.

Abstract

MHD Natural convection, which is one of the principal types of convective heat transfer in numerous research of heat exchangers and geothermal energy systems, as well as nanofluids and hybrid nanofluids. This work focuses on the investigation of Natural convective heat transfer evaluation inside a porous triangular cavity filled with silver-magnesium oxide/water hybrid nanofluid [HO/Ag-MgO] under a consistent magnetic field. The laminar and incompressible nanofluid flow is taken to account while Darcy-Forchheimer model takes account of the advection inertia effect in the porous sheet. Controlled equations of the work have been approached nondimensional and resolved by Galerkin finite element technique. The numerical analyses were carried out by varying the Darcy, Hartmann, and Rayleigh numbers, porosity, and characteristics of solid volume fraction and flow fields. Further, the findings are reported in streamlines, isotherms and Nusselt numbers. For this work, the parametric impact may be categorized into two groups. One of them has an effect on the structural factors such as triangular form and scale on the physical characteristics of the important outputs such as fluidity and thermal transfer rates. The significant findings are the parameters like Rayleigh and slightly supported by Hartmann along with Darcy number, minimally assists by solid-particle size and rotating factor as clockwise assists the cooler flow at the center and anticlockwise direction assists the warmer flow. Clear raise in heat transporting rate can be obtained for increasing solid-particle size.

摘要

磁流体动力学自然对流是众多热交换器和地热能系统以及纳米流体和混合纳米流体对流换热的主要类型之一。这项工作重点研究了在均匀磁场下,填充有银 - 氧化镁/水混合纳米流体[HO/Ag - MgO]的多孔三角形腔内的自然对流换热评估。考虑了层流和不可压缩的纳米流体流动,同时达西 - 福希海默模型考虑了多孔板中的平流惯性效应。该工作的控制方程已进行无量纲处理,并通过伽辽金有限元技术求解。通过改变达西数、哈特曼数和瑞利数、孔隙率、固体体积分数特性和流场进行了数值分析。此外,结果以流线、等温线和努塞尔数的形式呈现。对于这项工作,参数影响可分为两组。其中一组对结构因素有影响,如三角形形状和尺寸对诸如流动性和热传递速率等重要输出的物理特性的影响。重要发现是瑞利数等参数,哈特曼数有轻微影响,达西数也有影响,固体颗粒尺寸影响最小,旋转因子方面,顺时针方向有助于中心的较冷流体流动,逆时针方向有助于较热流体流动。增加固体颗粒尺寸可明显提高热传输速率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e46/8831676/6a7910c33ee1/41598_2022_6134_Fig1_HTML.jpg

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