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首页> 外文期刊>Science and Technology for the Built Environment >A passive wall design to minimize building temperature swings for Algerian Saharan climate
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A passive wall design to minimize building temperature swings for Algerian Saharan climate

机译:一种无源墙设计,以最大限度地减少阿尔及利亚撒哈拉气候的建筑温度波动

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摘要

In this study, the effect of both high thermal insulation and high thermal mass are investigated numerically using TRNSYS simulation software under steady periodic conditions. This investigation is carried out for a high-energy efficiency home under the Saharan climate conditions of Bechar City. In order to perform this analysis and to achieve the best performance, several external wall configurations are proposed. These configurations are based on changing two aspects; walls construction materials using stabilized earth blocks and clay bricks, and the other one is insulating materials using polystyrene and a new biocomposite insulating material referenced as hemihydrate gypsum/date palm fibers available in Bechar City. The calibration of the model is performed through a comparative study of numerical temperature results with experimental data. Thermal characteristics such as indoor temperature, yearly heating and cooling loads, time lag, and decrement factor are determined for each configuration. The results show that good thermal performances are achieved by the stabilized earth blocks-hemihydrate gypsum/date palm fibers (wall 2) configuration. This configuration gives the lowest indoor temperature swings and yearly heating and cooling loads. Considering the cost analysis, the wall 2 configuration yields an affordable cost.
机译:在该研究中,在稳定的周期性条件下使用TRNSYS仿真软件进行数字地研究了高热绝缘和高热质量的效果。在Bechar City的Saharan气候条件下,对大能效率的家庭进行了这项调查。为了执行该分析并实现最佳性能,提出了几种外墙配置。这些配置基于改变两个方面;墙壁建筑材料使用稳定的地球块和粘土砖,另一个是使用聚苯乙烯的绝缘材料和新的生物复合绝缘材料,称为Bechar城市的半水合物石膏/枣棕榈纤维。通过对实验数据的数值温度结果的比较研究进行模型的校准。为每个配置确定诸如室内温度,每年加热和冷却负载,时间滞后和减量系数的热特性。结果表明,通过稳定的地球嵌段 - 半水石石膏/枣棕榈纤维(墙壁2)构造来实现良好的热性能。这种配置提供了最低的室内温度摇摆和每年加热和冷却载荷。考虑到成本分析,墙壁2配置产生了实惠的成本。

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