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首页> 外文期刊>Journal of Cleaner Production >On the influence of concrete-straw-plaster envelope thermal mass on the cooling and heating loads for different climatic zones of India
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On the influence of concrete-straw-plaster envelope thermal mass on the cooling and heating loads for different climatic zones of India

机译:关于混凝土秸秆 - 石膏包络热质量对印度不同气候区冷却和加热负荷的影响

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摘要

Incorporating insulation material in the building envelope is one of the simple yet effective passive techniques aimed at mitigating the energy consumption in buildings. The development and utilization of sustainable materials with heat insulating capacity as an alternative to synthetic insulations is a promising path towards reduced carbon footprint of buildings. The insulation potential of straw, an agricultural waste, in the context of the wide-ranging climate of India is the focus of the current work. Cooling and/or heating load analysis over 24 h of a representative summer and winter day is performed through transient numerical analysis for five climatic zones of India. Three building envelope configurations possible with retrofitting straw insulation (placed on the outside or inside or equally on either side) over existing walls/roof are compared. Four different thicknesses (10, 20, 30 and 40 cm) of the straw insulation are considered for analysis. Recommendations of envelope configuration with insulation are proposed based on energy and cost savings for the different climatic zones. Overall, the case of straw insulation split on either side performs the best. Energy savings in the range of 67-96% is achievable with the addition of just 10 cm thick straw across different climatic zones. The work also presents a comparison of the straw envelope performance against different types of envelopes based on sustainable materials found in literature. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在建筑物包络中加入绝缘材料是一种简单而有效的被动技术之一,旨在减轻建筑物中的能量消耗。可持续材料具有隔热容量作为合成绝缘体的替代的可持续材料的开发和利用是朝着建筑物的碳足迹降低的有希望的路径。吸管的绝缘潜力,农业废物,在印度广泛的气候范围内是当前工作的重点。通过对印度五个气候区的瞬态数值分析进行了24小时的冷却和/或加热负荷分析,对印度五个气候区进行了瞬态数值分析。比较了三种建筑包络配置,通过改装秸秆绝缘(放置在现有墙壁/屋顶上方的稻草绝缘层(放置在外侧或内侧或侧面)上。考虑四种不同的厚度(10,20,30和40厘米)的秸秆绝缘用于分析。基于不同气候区的能量和成本节省,提出了具有绝缘层的包络配置的建议。总的来说,两侧秸秆绝缘分裂的情况表现最佳。在67-96%的节能范围内可实现,在不同气候区的增加只有10厘米的粗秸秆。该工作还提出了基于文献中发现的可持续材料的不同类型信封的秸秆包络性能的比较。 (c)2020 elestvier有限公司保留所有权利。

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