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Numerical Analysis on the Thermal Performance of a Lightweight Aluminum Standing-seam Roofing Structure with Experimental Validation

机译:实验验证轻量级铝架屋面结构热性能的数值分析

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This paper reports an investigation result of the energy performance of a large-space building with the light-weight insulation roof structure.A computer simulation model for analyzing its dynamic building energy use is reported in the paper,and the thermal performance of a widely used roofing structure (R1) is evaluated accordingly.The developed model was validated by experimental results,and good agreement was found.The results indicate that the energy consumption for air conditioning of large-space buildings can be considerably reduced by employing lightweight roofs with polyurethane insulation (R2) compared with the buildings with currently used glass-wool insulation materials (R1).It was also found that the maximum heat flux of the lightweight metal roof at noon is 11.57W/m2,while the heat flux of south walls is 7.96W/m2;6.87W/m2 for east walls,6.42W/m2 for west walls,3.30W/m2 for north walls.The heat gain through the lightweight roof structure accounts for 32.03% of the total heat gains of the large-space building.Therefore,optimum design of a roof structure should be conducted.Four different roof structures are evaluated in this paper.It is found that the peak heat gain for R2 is 26200.94W,but 54129.77W for R1.The peak heat gain of R2 only accounts for 48.4% of that of the R1.Properly arranging insulation layers and selecting insulation material for such a building can significantly reduce heat gain through the roof,and hence reduce the space cooling load of a building and the design capacity of A/C systems accordingly.
机译:本文报告了具有轻量级绝缘屋顶结构的大空间建筑能量性能的调查结果。本文报道了用于分析其动态建筑能源的计算机仿真模型,以及广泛使用的热性能相应地评估屋顶结构(R1)。通过实验结果验证了开发的模型,发现了良好的一致性。结果表明,通过采用具有聚氨酯绝缘的轻质屋顶,可以大大降低大型空间建筑空调的能耗(R2)与具有目前使用的玻璃羊毛保温材料(R1)的建筑物相比。还发现中午的轻质金属屋顶的最大热通量为11.57W / m2,而南墙的热量通量为7.96 W / M2; 6.87W / M2为东墙,西墙6.42W / M2,北墙3.30W / M2。通过轻质屋顶结构的热量增益占总HEA总屋的32.03% T.因此,应该进行屋顶结构的最佳设计。在本文中评估了不同的屋顶结构。发现R2的峰值热增益为26200.94W,但R1为54129.77W 。R2的峰值热增益仅占R1的48.4%.Properly布置绝缘层和选择的绝缘材料,用于这种建筑物的绝缘材料可以显着降低通过屋顶的热量增益,因此降低了建筑物的空间冷却负荷相应的A / C系统的设计能力。

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