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New external convective heat transfer coefficient correlations for isolated low-rise buildings

机译:隔离式低层建筑的新外部对流传热系数相关性

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Building energy analyses are very sensitive to external convective heat transfer coefficients so that some researchers have conducted sensitivity calculations and proved that depending on the choice of those coefficients, energy demands estimation values can vary from 20% to 40%. In this context, computational fluid dynamics calculations have been performed to predict convective heat transfer coefficients at the external surfaces of a simple shape low-rise building. Effects of wind velocity and orientation have been analyzed considering four surface-to-air temperature differences. Results show that the convective heat transfer coefficient value strongly depends on the wind velocity, that the wind direction has a notable effect for vertical walls and for roofs and that the surface-to-air temperature difference has a negligible effect for wind velocity higher than 2 m/s. External convective heat transfer coefficient correlations are provided as a function of the wind free stream velocity and wind-to-surface angle.
机译:建筑能耗分析对外部对流传热系数非常敏感,因此一些研究人员进行了敏感性计算,并证明了根据这些系数的选择,能耗需求估算值可能在20%到40%之间变化。在这种情况下,已经进行了计算流体动力学计算,以预测简单形状的低层建筑的外表面处的对流传热系数。考虑了四个地对空温度差,分析了风速和风向的影响。结果表明,对流换热系数值在很大程度上取决于风速,风向对垂直墙和屋顶的影响显着,而地表空气温度差对风速大于2的影响可忽略不计多发性硬化症。外部对流传热系数的相关性随无风流速度和风向表面角度的变化而变化。

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