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Effect of Location of a Rotating Circular Cylinder and Heat Source on Mixed Convection Heat Transfer Characteristics inside a Square Enclosure with Discrete Heater at the Bottom Wall

机译:旋转圆柱和热源位置对底壁的离散加热器在方形外壳内混合对流传热特性的影响

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A numerical investigation of mixed convection heat transfer phenomena in a square enclosure containing a heat conducting rotating circular cylinder has been taken into consideration in this work. As a heat source, a discrete isoflux heater is placed at the bottom wall of the enclosure whereas the top wall is considered as adiabatic. The vertical sidewalls of the enclosure are assumed to be maintained at constant low temperature to properly describe the boundary conditions in the work. The coupled equations of the developed mathematical model are solved by using the finite element method based on the Galerkin method of weighted residuals for different rotating speeds of the cylinder varying over the range of 0-500 keeping the Rayleigh number and Prandtl number fixed. The effects of position of rotating cylinder (both horizontal and vertical) and location of the heat source on the streamlines, isotherms, variation of local Nusselt number, average Nusselt number and other heat transfer and fluid flow phenomena are numerically investigated. The results reveal that the flow field, temperature field and heat transfer rate strongly depend on cylinder and heat source position.
机译:在这项工作中考虑了包含旋转圆柱形的正方形外壳中混合对流传热现象的数值研究。作为热源,将离散的IsoFlux加热器放置在外壳的底壁处,而顶壁被认为是绝热的。假设外壳的垂直侧壁保持在恒定的低温下,以适当地描述工作中的边界条件。通过使用基于加权残留的Galerkin方法的有限元方法来解决所开发数学模型的耦合方程,用于在0-500的范围内变化的圆柱体的不同旋转速度保持瑞利数和普朗特数固定。在数值研究了旋转汽缸(水平和垂直)和热源的位置,局部水平,局部露珠数,平均营养数和其他传热和流体流动现象的效果。结果表明,流场,温度场和传热率强烈取决于圆柱和热源位置。

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