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Modeling thermal performance of exterior walls retrofitted from insulation and modified laterite based bricks materials

机译:模拟从隔热材料和改性红土基砖材料翻新的外墙的热性能

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摘要

Uninsulated concrete block walls commonly found in tropical region have to be retrofitted to save energy. The thickness of insulation layer used can be reduced with the help of modified laterite based bricks layer (with the considerably lower thermal conductivity than that of concrete block layer) during the retrofit building fabrics. The aim of this study is to determine the optimum location and distribution of different materials. The investigation is carried out under steady periodic conditions under the climatic conditions of Garoua in Cameroon using a Simulink model constructed from H-Tools (the library of Simulink models). Results showed that for the continuous air-conditioned space, the best wall configuration from the maximum time lag, minimum decrement factor and peak cooling transmission load perspective, is dividing the insulation layer into two layers and placing one at the exterior surface and the other layer between the two different massive layers with the modified laterite based bricks layer at the interior surface. For intermittent cooling space, the best wall configuration from the minimum energy consumption depends on total insulation thickness. For the total insulation thickness less than 8 cm approximately, the best wall configuration is placing the half layer of insulation material at the interior surface and the other half between the two different massive layers with the modified earthen material at the exterior surface. Results also showed that, the optimum insulation thickness calculated from the yearly cooling transmission (estimated only during the occupied period) and some economic considerations slightly depends on the location of that insulation.
机译:热带地区常见的非绝缘混凝土砌块墙必须进行翻新,以节省能源。在改建建筑织物期间,可以借助改性的基于红土的砖层(导热系数比混凝土砌块层的导热系数低得多)来减少所使用的隔热层的厚度。这项研究的目的是确定不同材料的最佳位置和分布。使用从H-Tools构建的Simulink模型(Simulink模型库),在喀麦隆Garoua气候条件下的稳定周期性条件下进行了调查。结果表明,对于连续的空调空间,从最大的时间滞后,最小的递减系数和最大的冷却传递载荷角度来看,最佳的墙面配置将保温层分为两层,一层放在外表面,另一层放在外面在两个不同的块状层之间,内表面使用改性的基于红土的砖层。对于间断的冷却空间,从最小的能耗中获得最佳的墙面配置取决于总的隔热厚度。对于总的隔热层厚度大约小于8厘米,最佳的墙面配置是将隔热材料的一半放在内表面,另一半放置在两个不同的块状层之间,外表面则使用改性的土质材料。结果还表明,根据每年的冷却传输量(仅在使用期间进行估算)计算出的最佳隔热层厚度以及一些经济方面的考虑,在某种程度上取决于该隔热层的位置。

著录项

  • 来源
    《Heat and mass transfer》 |2017年第12期|3487-3499|共13页
  • 作者单位

    Environmental Energy Technologies Laboratory, University of Yaounde I, Yaounde, Cameroon;

    Laboratory L3E:Energy, Water and Environment, National Advanced School of Engineering, University of Yaounde I, Po Box 8390, Yaounde, Cameroon;

    Laboratory L3E:Energy, Water and Environment, National Advanced School of Engineering, University of Yaounde I, Po Box 8390, Yaounde, Cameroon;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Multi-layered wall; Optimum configuration; Insulation thickness impact; Optimum insulation thickness;

    机译:多层墙;最佳配置;绝缘层厚度影响;最佳绝缘厚度;

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