首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >A Thermal Nonequilibrium Approach to Natural Convection in a Square Enclosure Due to the Partially Cooled Sidewalls of the Enclosure
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A Thermal Nonequilibrium Approach to Natural Convection in a Square Enclosure Due to the Partially Cooled Sidewalls of the Enclosure

机译:方形外壳中由于部分冷却的侧壁而导致自然对流的热非平衡方法

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This article presents a numerical investigation of steady non-Darcy natural convection heat transfer in a square cavity filled with a heat-generating porous medium with partial cooling using a local thermal nonequilibrium (LTNE) model. Five different partial cooling boundary conditions and the fully cooled boundary condition are investigated under LTNE and local thermal equilibrium (LTE). The cooling portions of the left and the right sidewalls of the cavity are maintained at temperature T (0) while the enclosure's top and bottom walls, as well as the inactive parts of its sidewalls, are kept insulated. The simulation results show that the placement order of wall cooling has a significant effect on the flow pattern and heat transfer rate. Compared with the fully cooled wall, the partially cooled wall of the cavity yielded a higher local Nusselt number for both fluid and solid phases. Under the same boundary conditions, the LTNE and LTE models can demonstrate significant differences in flow patterns and temperature fields. The total heat transfer rate increases with both Darcy number and Rayleigh number. Enhancement of interphase heat transfer coefficient (H) reduces the impact of Darcy number on the heat transfer rate of a porous cavity. Also, the total heat transfer rate of the porous medium decreases steadily with thermal conductivity ratio gamma and interphase heat transfer coefficient H.
机译:本文介绍了使用局部热非平衡(LTNE)模型对装有生热多孔介质并进行部分冷却的方腔内稳态非达西自然对流传热的数值研究。在LTNE和局部热平衡(LTE)下研究了五个不同的局部冷却边界条件和完全冷却边界条件。腔体左右侧壁的冷却部分保持在温度T(0),同时机箱的顶壁和底壁以及侧壁的非活动部分保持绝缘。仿真结果表明,冷却壁的布置顺序对流态和传热速率有显着影响。与完全冷却的壁相比,腔的部分冷却的壁对于液相和固相均产生较高的局部努塞尔数。在相同的边界条件下,LTNE和LTE模型可以证明流型和温度场存在显着差异。总传热率随达西数和瑞利数增加。相间传热系数(H)的增加减小了达西数对多孔腔的传热速率的影响。另外,多孔介质的总传热率随着导热率比γ和相间传热系数H稳定地减小。

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