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Experimental investigation on hygrothermal performance of a bio-based wall made of cement mortar filled with date palm fibers

机译:填充有椰枣纤维的水泥砂浆生物基墙的湿热性能试验研究

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In the present work, the hygrothermal behavior of a wall structure made of a novel biobased material, i.e. date palm fiber reinforced concrete was investigated. In this context, a specific setup was developed which allows simulating a bi-climatic environment with separate outdoor and indoor environments. This device made it possible to apply various scenarios of static / dynamic hygrothermal loading to the outer side of wall, involving variation/cycling of temperature (T) and /or relative humidity (RH). During these experiments, resulting variations of T and RH across the wall thickness were monitored with in-situ sensors. Outstanding thermo-hygric phenomena were highlighted, such as high coupling effect between heat and moisture transfers, resulting from evaporation-condensation and sorption-desorption processes. Besides, significant thermal and hygric inertia was observed through the Date Palme Concrete (DPC) wall. The response time of this DPC wall to temperature variations remains shorter than in the case of humidity variations. Even so, large damping effect is obtained compared to outdoor boundary conditions, which make this DPC wall a good candidate for mitigating overheating during summertime and reducing interstitial condensation as well. (c) 2019 Elsevier B.V. All rights reserved.
机译:在目前的工作中,研究了一种由新型生物基材料制成的墙壁结构(即枣椰子纤维增强混凝土)的湿热行为。在这种情况下,开发了一种特定的设置,该设置允许模拟具有单独的室外和室内环境的双气候环境。该设备使得可以将静态/动态湿热负荷的各种场景应用到墙的外侧,涉及温度(T)和/或相对湿度(RH)的变化/循环。在这些实验中,使用原位传感器监控了整个壁厚中T和RH的最终变化。突出了杰出的热-湿现象,例如由于蒸发-冷凝和吸附-解吸过程而导致的热量和水分传递之间的高耦合效应。此外,通过Date Palme Concrete(DPC)墙观察到了显着的热惯性和湿惯性。该DPC壁对温度变化的响应时间比湿度变化的情况要短。即便如此,与室外边界条件相比,仍可获得较大的阻尼效果,这使该DPC墙成为缓解夏季过热并减少间隙凝结的理想选择。 (c)2019 Elsevier B.V.保留所有权利。

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