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Thermal radiation role in conjugate heat transfer across a multiple-cavity building block

机译:热辐射在跨多腔构件的共轭传热中的作用

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摘要

Accurate calculation of the heat transfer rate across building blocks may lead to significant energy savings. Conjugate heat transfer analysis is carried out numerically to compute the heat transfer rate/Rvalue as the number/layout of air-filled cavities is changed. Conduction heat transfer in the block material and both natural convection and radiation in the cavity were considered. It is found that increasing the number of cavities keeping the block width unchanged decreases the heat flux significantly. Five cavities can fit the building block under investigation without compromising the strength. Furthermore, changing the surface emissivity can increase the R-value substantially so that no insulation would be needed to fill the spaces. Thermal radiation plays a considerable role in the heat transfer process of this application. Through this study, the heat transfer characteristics and the gains in the R-value were quantified for the basic blocks used in the local market. Furthermore, the gains in the R-value were calculated for different number of cavities, for different cavities layouts for the conjugate contribution of conduction, convection and/or radiation across the building block. Results are useful for designers and manufacturers of building blocks for better energy savings of end users.
机译:跨构件的传热率的准确计算可以节省大量能源。进行数值模拟的共轭传热分析,以计算充气腔的数量/布局改变时的传热速率/ Rvalue。考虑了块状材料中的传导热传递以及空腔中的自然对流和辐射。发现增加空腔的数量以保持块的宽度不变会显着降低热通量。可以在不影响强度的情况下将五个腔体安装到正在研究的构件上。此外,改变表面发射率可以实质上增加R值,从而不需要绝缘来填充空间。热辐射在该应用的传热过程中起着重要作用。通过这项研究,量化了当地市场上使用的基本模块的传热特性和R值的增长。此外,针对不同数量的腔体,针对不同的腔体布局,针对跨构件的传导,对流和/或辐射的共轭贡献,计算R值的增益。结果对于积木的设计人员和制造商而言非常有用,可以帮助最终用户更好地节省能源。

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