The Impact of Nanofluid on Natural Convection in an Isosceles Rectangular Container with a Heat Source

Bouras Abdelkrim, Djedid Taloub, Amina Amroune, Z. Driss
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引用次数: 1

Abstract

The development of modern technology in microelectronics and power engineering requires the creation of efficient cooling systems. This is made possible by the use of special fin technology inside the cavity or special heat transfer Ethylene glycol-copper nanofluids to intensify the heat removal from the heat-generating elements. A numerical study of the natural convection of stationary laminar heat transfers in a closed rectangular cavity with a local source of internal volumetric heat generation. For different Rayleigh numbers and different volume fractions of nanoparticles. The system of equations governing the problem was solved numerically by the fluent computer code based on the method of finite volumes. Based on the Boussinesq approximation. Interior and exterior surfaces are maintained at a constant temperature. The study is carried out for Rayleigh numbers ranging from 104 to 106. The effects of different Rayleigh numbers and volume fractions of nanoparticles on natural convection have been studied. The results are presented as isotherms, isocurrents, and local and mean Nusselt numbers. The aim of this study is to see the influence of the thermal Rayleigh number and the volume fraction of the nanoparticles on the rate of heat transfer.
纳米流体对带热源等腰矩形容器内自然对流的影响
现代微电子技术和动力工程技术的发展要求创造高效的冷却系统。这是通过在腔内使用特殊的翅片技术或特殊的传热乙二醇-铜纳米流体来加强产热元件的热量去除而实现的。具有内部体积产热的局部热源的封闭矩形腔内固定层流传热的自然对流数值研究。对于不同瑞利数和不同体积分数的纳米颗粒。基于有限体积法,用fluent计算机程序对控制该问题的方程组进行了数值求解。基于Boussinesq近似。内部和外部表面保持在恒定温度。这项研究的瑞利数范围是104到106。研究了不同瑞利数和纳米颗粒体积分数对自然对流的影响。结果以等温线、等流、局部努塞尔数和平均努塞尔数表示。本研究的目的是观察热瑞利数和纳米颗粒体积分数对传热速率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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