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首页> 外文期刊>International Communications in Heat and Mass Transfer >The influence of multiple fins arrangement cases on heat sink efficiency of MHD MWCNT-water nanofluid within tilted T-shaped cavity packed with trapezoidal fins considering thermal emission impact
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The influence of multiple fins arrangement cases on heat sink efficiency of MHD MWCNT-water nanofluid within tilted T-shaped cavity packed with trapezoidal fins considering thermal emission impact

机译:多翅片布置壳对考虑热排放冲击的梯形翅片堆积T形腔内MHD MWCNT水纳米流体散热效率的影响

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摘要

This paper explores numerically the MHD heat transfer of MWCNT nanoliquid inside a T-shaped cavity fitted with trapezoidal equidistant fins under thermal radiation effects. The simulation model is done with the help of the program Comsol Multiphysics. The function of several parameters is investigated, including Rayleigh and Hartmann quantities, as well as emission factors and trapezoidal fins height. In addition, for various cavity tilt angle, the influence of various fin arrangement cases on heat transfer efficiency is addressed. The important findings show that increasing the number of Rayleigh, as well as the radiation parameter, improves the flow of convection heat flow. The influence of Lorentz powers on weakening convective heat exchange is reduced when the impact of thermal emission is present. Moreover, rising the height of the trapezoidal fins increases the convective flow. Among the various trapezoidal fins arrangements, the average Nusselt limit is obtained with case 4 in the case of horizontal cavity γ = 0 . On the other hand, depending on the cavity tilt angles, the best trapezoidal fins arrangements for the most efficient heat transfer changes.
机译:本文探讨了在热辐射效应下配备有梯形等距翅片的T形腔内MWCNT纳米水质的MHD传热。在程序COMSOL Multiphysics的帮助下,仿真模型完成。研究了几个参数的功能,包括瑞利和Hartmann数量,以及排放因子和梯形鳍高度。另外,对于各种腔倾斜角度,各种翅片布置情况对传热效率的影响是解决的。重要研究结果表明,增加瑞利的数量以及辐射参数,改善了对流热流的流动。当存在热排放的影响时,Lorentz功率对弱化热交换的影响降低。此外,上升梯形翅片的高度增加了对流流动。在各种梯形鳍片布置中,在水平腔γ= 0的情况下,用壳体4获得平均尿液限制。另一方面,取决于腔倾斜角度,最佳梯形鳍片布置对于最有效的传热变化。

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  • 来源
    《International Communications in Heat and Mass Transfer》 |2021年第7期|105468.1-105468.14|共14页
  • 作者单位

    Laboratory of Ionized Backgrounds and Reagents Studies (LEMIR) Preparatory Institute for Engineering Studies of Monastir (IPE1M) University of Monasar Monastir City 5019 Tunisia;

    College of Engineering Department of Chemical Engineering University of Ha'il Ha'il City 81441 Saudi Arabia Laboratory of Ionized Backgrounds and Reagents Studies (LEMIR) Preparatory Institute for Engineering Studies of Monastir (IPE1M) University of Monasar Monastir City 5019 Tunisia Higher School of Sciences and Technology of Hammam Sousse Department of Physics University of Sousse Sousse City 4011 Tunisia;

    Department of Mechanical Engineering College of Engineering Imam Mohammad Ibn Saud Islamic University (IMSIU) Riyadh 11432 Saudi Arabia;

    Department of Mechanical Engineering College of Engineering Imam Mohammad Ibn Saud Islamic University (IMSIU) Riyadh 11432 Saudi Arabia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Miniature heat sink with trapezoidal fins; Arrangement cases; Free convection; Thermal radiation; Nanofluid;

    机译:用梯形鳍片的微型散热器;安排案件;免费对流;热辐射;纳米流体;

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