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Numerical Investigation of Fluid Flow and Heat Transfer Inside a 2D Enclosure with Three Hot Obstacles on the Ramp under the Influence of a Magnetic Field

机译:磁场作用下斜坡上三个热障的二维外壳内流体流动和传热的数值研究

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This paper focuses on solving the fluid flow and heat transfer equations inside a two-dimensional square enclosure containing three hot obstacles affected by gravity and magnetic force placed on a ramp using Boltzmann method (LBM) applying multiple relaxation times (MRT). Although, the Lattice Boltzmann with MRT is a complex technique, it is a relatively new, stable, fast and high-accurate one. The main objective of this research was to numerically model the fluid flow and ultimately obtaining the velocity field, flow and temperature contour lines inside a two-dimensional enclosure. The results and their comparisons for different types of heat transfer revealed that free or forced heat transfer has a considerable impact on the heat transfer and stream lines. This can be controlled by modifying the Richardson number. It is revealed that changing the intensity of the magnetic field (Hartman number) has an appreciable effect on the heat transfer.
机译:本文的重点是使用玻尔兹曼方法(LBM)应用多次弛豫时间(MRT)来求解包含三个受重力和磁力影响的热障碍的二维方形外壳内部的流体流动和传热方程。尽管具有MRT的Lattice Boltzmann是一项复杂的技术,但它是一种相对较新,稳定,快速且高精度的技术。这项研究的主要目的是对流体流动进行数值建模,并最终获得二维外壳内的速度场,流量和温度等高线。不同类型传热的结果及其比较表明,自由或强制传热对传热和流线有很大影响。可以通过修改Richardson数来控制。结果表明,改变磁场强度(哈特曼数)对传热有显着影响。

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