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首页> 外文期刊>Journal of Energy Storage >Dynamic assessment of the thermal performance of hemp wool insulated external building walls according to the Moroccan climatic zoning
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Dynamic assessment of the thermal performance of hemp wool insulated external building walls according to the Moroccan climatic zoning

机译:根据摩洛哥气候区划动态评估麻棉保温外墙的热性能

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This paper deals with the assessment of the dynamic thermal performance of Moroccan external walls. Firstly, based on the quadrupole method, the thermal capacity and thermal resistance of an uninsulated brick wall were calculated for different thicknesses of the brick layer. The optimum brick thickness chosen corresponds to the one that maximally enhance the thermal inertia and thermal resistance. Afterwards, the brick wall was externally insulated with hemp wool, a bio-based insulation material. For an hypothetical lifespan of 20 years, and based on the life cycle cost analysis, annual heating and cooling requirements, optimum insulation thicknesses, energy savings and payback periods were calculated for all wall orientations and considering the six climatic zones of Morocco. It was found that the optimal brick thickness was equal to 0.20 m and the optimal insulation thicknesses vary between 1 and 6 cm for the different climatic zones and the different wall orientations. Moreover, a comparison with the minimum technical specifications fixed by the Moroccan thermal regulation showed that our results allow the reduction of annual heating and cooling requirements by a minimum percentage of 56% for the city of Ifrane, and a maximum percentage of 79% for the city of Marrakech. Finally, annual greenhouse gas (GHG) emissions were also calculated and it was found that they can be decreased, with the use of optimum thicknesses of hemp wool, by a minimum of 32% for the city of Ifrane and a maximum of 75% for the city of Errachidia.
机译:本文涉及对摩洛哥外墙动态热性能的评估。首先,基于四极杆法,针对不同厚度的砖层,计算了非保温砖墙的热容和热阻。选择的最佳砖厚度对应于最大程度地提高热惯性和热阻的厚度。之后,用麻棉(一种生物基绝缘材料)对砖墙进行外部绝缘。在一个假设的20年寿命中,根据生命周期成本分析,计算了所有墙面朝向并考虑了摩洛哥的六个气候带,计算了年度供暖和降温要求,最佳隔热厚度,节能和投资回收期。结果发现,对于不同的气候区域和不同的墙壁方向,最佳的砖厚等于0.20 m,最佳的保温层厚度在1至6 cm之间变化。此外,与摩洛哥热量法规确定的最低技术规格进行比较后,我们的结果表明,伊夫兰市的年供暖和制冷需求减少了至少56%,而伊夫兰市的减少了79%。马拉喀什市。最后,还计算了每年的温室气体排放量,发现可以通过使用最佳厚度的麻棉将其减少,对于伊夫兰市来说,最低减少32%,对于伊夫兰市,最多减少75%。埃拉基迪亚市。

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