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Radiative and hygrothermal properties of flax/viscose spunlaced nonwovens

机译:亚麻/粘胶水刺非织造布的辐射和湿热性能

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摘要

Biobased fabrics are now getting widely used as solar shading for managing solar gain and daylight management and reducing building peak load and annual energy consumption of existing buildings. This work proposes to characterize five spunlaced nonwovens made of 65% of flax and 35% of viscose with different grammage. Radiative properties (transmissivity, reflectivity and absorptivity) are evaluated not only over the sun's spectrum, but also over UV, visible and IR spectra. In addition, hygrothermal properties, such as thermal resistance, specific heat capacity or water vapor resistance, are also evaluated. Results indicate that these nonwovens present low transmittivity, which is interesting in the view of managing solar gain. Furthermore, it was found that radiative properties are mainly influenced by nonwoven's thickness and porosity, as well the relative humidity. Lastly, hygrothermal properties (thermal resistance, thermal conductivity and water vapor resistance) are impacted mainly by porosity.
机译:生物基织物现在正被广泛用作遮阳材料,用于管理日光获取和日光管理,并减少建筑物的峰值负荷和现有建筑物的年能耗。这项工作建议表征由55%亚麻和35%粘胶纤维制成的五种水刺无纺布,其克重不同。不仅在太阳光谱范围内,而且还在紫外线,可见光和红外光谱范围内评估辐射特性(透射率,反射率和吸收率)。另外,还评估了湿热性能,例如耐热性,比热容或耐水蒸气性。结果表明,这些非织造布呈现出低透射率,这在管理日光吸收方面是有趣的。此外,发现辐射性能主要受非织造材料的厚度和孔隙率以及相对湿度的影响。最后,湿热特性(热阻,导热系数和耐水蒸气性)主要受孔隙度影响。

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