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Mixed Convection Flow of Nanofluid in a Square Enclosure with an Intruded Rectangular Fin

机译:纳米流体中的混合对流流动在方形外壳中,具有侵入的矩形鳍片

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Mixed convection flow in enclosures has been a subject of interest for many years due to their ever increasing applications in solar collectors, electronic cooling, lubrication technologies, food processing, and nuclear reactors. In comparison, little effort has been given to the problem of mixed convection in enclosures filled with nanofluids, while the addition of nanoparticles in a fluid base to alter specific material properties is considered a feasible solution for many heat transfer problems. Mixed convection of nanofluids is a challenging problem as the addition of nanoparticles changes the fluid's thermo-physical properties as well as due to the complex interactions among inertia, viscous, and buoyancy forces. In this study, a two-dimensional steady-state numerical model has been developed to investigate mixed convection flow of nanofluids in a square enclosure with an intruded rectangular fin and to optimize the fin geometry for maximizing the heat transfer using the Constructal design. The model has been developed using ANSYS-FLUENT for various fin geometries. Flow fields, temperature fields, and heat transfer rates are examined for different values of Rayleigh and Reynolds numbers for several geometries of the fin with the aim of maximizing the heat transfer from the fin to the surrounding flow. Outcome of this study provides important insight into the heat transfer behavior of nanofluids, which will help in developing novel geometries with enhanced and controlled heat transfer for solar collectors and electronic devices.
机译:由于其在太阳能收集器,电子冷却,润滑技术,食品加工和核反应堆中,围栏中的混合对流流是多年来的兴趣的主题。相比之下,已经对填充有纳米流体的外壳混合对流的问题,而在流体基部中的纳米颗粒加入以改变特定材料特性的纳米颗粒被认为是许多传热问题的可行解决方案。随着纳米颗粒的加入改变流体的热物理性质以及由于惯性,粘性和浮力之间的复杂相互作用,纳米流体的混合对流是一个具有挑战性的问题。在该研究中,已经开发了一种二维稳态数值模型来研究具有侵入矩形翅片的方形外壳中纳米流体的混合对流流程,并优化翅片几何形状,以使用构造设计最大化传热。该模型已经使用ANSYS-FLUENT开发的各种鳍几何形状。针对纤维的几个几何形状的瑞利和雷诺数的不同值检查流场,温度场和传热速率,其目的是最大化从翅片到周围流动的热传递。本研究的结果提供了对纳米流体的传热行为的重要见解,这将有助于开发具有增强和控制的太阳能收集器和电子设备的传热的新型几何形状。

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