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Effects of heating intensity on the transient natural convection flows in open cavities

机译:加热强度对开孔瞬态自然对流流动的影响

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摘要

The effects of the air variable properties (density, viscosity and thermal conductivity) on the transient buoyancy-driven flows established in open square cavities are investigated. Two-dimensional, laminar, transitional and turbulent simulations are obtained, mainly considering uniform heat flux heating conditions. For the fully understanding of the transient flow, different configurations are considered, including those chosen for comparison purposes. The low-Reynolds k-ω turbulence model is employed. The average Nusselt number and the dimensionless mass-flow rate have been obtained for a wide range of the Rayleigh number varying from 10~5 to 10~(12). The changes produced along the time in the flow patterns inside the cavity when the effects of variation of properties are relevant, are also shown. The transient evolution of the flow is strongly affected when the heating parameter is high enough.
机译:研究了空气可变特性(密度,粘度和热导率)对开方腔中建立的瞬态浮力驱动流的影响。主要考虑均匀热通量加热条件,获得了二维,层流,过渡和湍流模拟。为了充分理解瞬态流量,考虑了不同的配置,包括出于比较目的而选择的配置。采用低雷诺k-ω湍流模型。在瑞利数范围从10〜5到10〜(12)的宽范围内,已经获得了平均努塞尔数和无量纲质量流率。还显示了当特性变化的影响相关时,空腔内部流动模式随时间产生的变化。当加热参数足够高时,流动的瞬态演变会受到严重影响。

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