首页> 外文会议>Proceedings of the ASME Heat Transfer Division 2003 >TURBULENT NATURAL CONVECTION IN HORIZONTAL COMPOSITE CAVITIES
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TURBULENT NATURAL CONVECTION IN HORIZONTAL COMPOSITE CAVITIES

机译:水平复合腔中的湍流自然对流

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Turbulent natural convection in a two-dimensional horizontal composite square cavity, isothermally heated at the left side and cooled from the opposing surface, is numerically analyzed using the finite volume method. The composite square cavity is formed by three distinct regions, namely, clear, porous and solid region. Accordingly, the development of a numerical tool able to treat all these regions as one computational domain is of advantage for engineering design of thermal systems. Governing equations are written in terms of primitive variables and are recast into a general form. It was found that the fluid begins to permeate the porous medium for values of Ra greater than 10~6. Nusselt number values show that for the range of Ra analyzed there are no significant variation between the laminar and turbulent model solution.
机译:使用有限体积法对二维水平复合方腔内的湍流自然对流进行了数值分析,该空间在左侧等温加热并从相对的表面冷却。复合方腔由三个不同的区域形成,即透明区域,多孔区域和实心区域。因此,能够将所有这些区域视为一个计算域的数值工具的开发对于热系统的工程设计是有利的。控制方程式是用原始变量来写的,并被改写为一般形式。研究发现,当Ra值大于10〜6时,流体开始渗透到多孔介质中。 Nusselt值表明,在分析的Ra范围内,层流模型和湍流模型解决方案之间没有显着变化。

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