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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Energy Streamlines Analyses on Natural Convection Within Porous Square Enclosure With Internal Obstructions
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Energy Streamlines Analyses on Natural Convection Within Porous Square Enclosure With Internal Obstructions

机译:能量流线分析具有内部障碍的多孔方型围护结构内的自然对流

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Natural convection through a porous layer heated from the side with internal flow obstructions have been investigated based on visualization of total energy flow via energy streamfunctions or energy streamlines. Energy streamline has been introduced previously by Mahmud and Fraser (2007, "Visualizing Energy Flows Through Energy Streamlines and Pathlines," Int. J. Heat Mass Transfer, 50, pp. 3990-4002) as an alternate convection heat transfer energy visualization technique. Energy streamlines consider all forms of related energy; for example, thermal energy, potential energy, kinetic energy, electrical energy, magnetic energy, and chemical energy. A finite volume method has been employed to solve momentum and energy balance as well as postprocessing energy streamfunctions. A parametric study has been carried out using the following parameters: Rayleigh number (Ra) from 10~3 to 10~6, Darcy number (Da) from 10~(-4) to 10~(-3), dimensionless thin fin lengths (L) 0.25, 0.5, and 0.75, dimensionless positions (H) 0.25, 0.5, and 0.75 with Prandtl number (Pr) 0.7. One finding of the present study is that, adding an obstruction in a cavity is similar to reducing Da of the porous medium. Therefore, the average Nusselt number calculated on the hot wall of the cavity always degraded compared to the no obstruction case whenever a baffle is attached. Thus the attached horizontal obstruction adds some thermal insulation effect. This finding is important in double wall space filled with fiberglass insulation in contemporary buildings, where the side wall is reinforced on the inside with structural members.
机译:基于通过能量流函数或能量流线对总能量流的可视化,已经研究了通过从内部加热受阻的侧面加热的多孔层进行的自然对流。 Mahmud和Fraser(2007年,“可视化通过能量流线和路径的能量流”,Int。J. Heat Mass Transfer,50,第3990-4002页)引入了能量流线作为对流传热能量可视化的替代技术。能源流线考虑所有形式的相关能源;例如,热能,势能,动能,电能,磁能和化学能。已采用有限体积方法来解决动量和能量平衡以及后处理能量流函数。使用以下参数进行了参数研究:瑞利数(Ra)从10〜3至10〜6,达西数(Da)从10〜(-4)至10〜(-3),无量纲的薄鳍长度(L)0.25、0.5和0.75,无量纲位置(H)0.25、0.5和0.75,Prandtl数(Pr)0.7。本研究的一个发现是,在空腔中添加障碍物类似于减少多孔介质的Da。因此,无论何时安装挡板,与无阻塞情况相比,在空腔热壁上计算出的平均努塞尔数始终会下降。因此,附着的水平障碍物增加了一些隔热效果。这一发现对于当代建筑中充满玻璃纤维保温层的双壁空间非常重要,在该空间中,侧壁在内部通过结构构件进行了加固。

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