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Experimental evaluation of insulation material in roofing system under tropical climate

机译:热带气候下屋面系统保温材料的实验评估

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The objective of this study is to determine the influence of radiant barriers on conductive and radiative heat transfers when they are integrated to a building envelope and to compare their efficiency to traditional insulation material (mineral wools, polystyrene). It is also about determining which insulation material and process can lead to a better heat flux reduction through a building roof. For this study four identical small-scale test cells were used. Their respective roof was equipped with the insulation material to be tested: One with polystyrene, the second with a radiant barrier the third one with fibber glass and the last one with no insulation material was considered as the reference cell. Different test were performed with a view to evaluate the influence of parameters such as roof absorptivity and roof air layer ventilation on the heat flux reduction through the roof. With the measured temperature, the conductive and radiative heat fluxes were calculated. With a white corrugated iron roof top the heat flux reduction provided by the radiant barrier is 37%. With a black one this material allows a reduction of 33%. It is shown that whatever the roof absorptivity value, the radiative heat flux is predominant over the conductive one. With no ventilation, the radiant barrier is comparable to polystyrene and fiber glass; when the airspace is ventilated the radiant barrier provides a better insulation.
机译:这项研究的目的是确定将辐射屏障集成到建筑围护结构中时,对辐射传导和辐射传热的影响,并将其与传统的隔热材料(矿棉,聚苯乙烯)进行比较。它还与确定哪种隔热材料和工艺可以更好地降低穿过建筑物屋顶的热通量有关。在这项研究中,使用了四个相同的小规模测试室。他们各自的屋顶装有要测试的绝缘材料:一个带有聚苯乙烯,第二个带有辐射屏障,第三个带有纤维玻璃,最后一个没有绝缘材料被视为参考电池。为了评估诸如屋顶吸收率和屋顶空气层通风等参数对通过屋顶的热通量减少的影响,进行了不同的测试。利用测得的温度,计算出传导热和辐射热通量。对于白色的波纹铁皮屋顶,辐射屏障的热通量减少了37%。黑色时,这种材料可减少33%。结果表明,无论屋顶的吸收率值是多少,辐射热通量都比导电热通量大。在没有通风的情况下,辐射屏障可与聚苯乙烯和玻璃纤维媲美;当空域通风时,辐射屏障可提供更好的隔热效果。

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