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Enhancement of Conjugate Mixed Convection Heat Transfer in a Long Horizontal Channel with Multiple Rotating Cylinders

机译:具有多个旋转汽缸的长水平通道中共轭混合对流传热的增强

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Two-dimensional, laminar, steady mixed convection heat transfer in a long horizontal channel has been investigated numerically with flow modulation through periodically distributed heat conducting rotating cylinders. The upper wall of the channel is maintained at constant low temperature and the lower wall is maintained at constant high temperature. A series of heat conducting rotating cylinders is placed periodically along the centerline of the channel with a spacing between two successive cylinders being equal to the height of the channel. The mathematical model of the present problem is governed by two-dimensional continuity, momentum and energy equations. The governing equations are then transformed to non-dimensional forms that are solved by using Galerkin finite element method with triangular discretization system. Water, air and liquid Gallium are considered as the working fluids. Numerical simulation is performed for case of pure mixed convection heat transfer characterized by a Richardson number of unity. Parametric simulation is carried out for a wide range of Reynolds numbers (1 ≤ Re ≤ 500) based on the dynamic condition of the rotating cylinder. Numerical results are presented and analyzed in terms of the distribution of streamline and isotherm patterns, local and average Nusselt number variation along the hot wall for different parametric conditions. It is found that, presence of heat conducting rotating cylinder increases the heat transfer significantly particularly in the lower range of Reynolds numbers considered in the present study and enhancement of heat transfer occurs as the Prandtl number increases. Thus, dynamic condition of the rotating cylinder and the thermophysical properties of working fluid play dominant roles for enhancing the heat transfer characteristics and flow behavior within the long horizontal channel.
机译:通过周期性分布的热传导旋转汽缸数在数量上对长水平通道进行了长水平通道中的二维层的稳态混合对流热传递。通道的上壁保持在恒定的低温下,下壁保持在恒定的高温下。一系列热传导旋转圆柱体沿着通道的中心线周期性地放置,在两个连续的圆柱体之间间隔等于通道的高度。本问题的数学模型由二维连续性,动量和能量方程管辖。然后将控制方程转换为通过使用具有三角形离散系统的Galerkin有限元方法解决的非尺寸形式。水,空气和液体镓被认为是工作流体。对于纯混合对流热传递的情况进行了数值模拟,其特征在于Richardson unity。基于旋转圆筒的动态条件,对参数模拟进行宽范围的雷诺数(1≤Re≤00)。在不同参数条件的热壁的流线和等温模式的分布,局部和平均喷射数变化的分布方面提出和分析了数值结果。结果发现,导热旋转圆筒的存在显着增加了热传递,特别是在本研究中考虑的雷诺数的较低范围内,随着PRANDTL数增加而发生热传递的增强。因此,旋转圆筒的动态条件和工作流体的热理性质起到优势作用,以提高长水平通道内的传热特性和流动。

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