The effect of building materials choice on the thermal comfort in the auto-produced individual housing in Biskra.

Sihem Latreche, L. Sriti
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引用次数: 3

Abstract

The building envelope is the first barrier to protect against external climatic variations. Generally, it consists of two types of walls: opaque walls (walls and roof) and transparent walls (Windows). The design characteristics of the enclosure strongly affect the occupants' thermal comfort, as well as the building energy consumption. The constructive choices relating to structural elements, in particular, walls, roofing and openings are generally considered in the thermal exchanges between the building and its environment. In the present study, which is based on experimental analysis in the self-generated residential sector in Biskra (Algeria), where a warm and arid climate predominates, we aim to evaluate the thermal impact of certain architectural and constructive parameters that are specific to residential habitat self-produced in Biskra. This paper summarizes the main results obtained from an in situ measurement campaign that evaluated the essential parameters of thermal comfort such as ambient and surface temperature, air velocity, and humidity. These parameters were used as indicators to measure the impact of the envelope material characteristics on its climatic adaptability. This paper also presents some recommendations for optimizing the choice of building materials specific to the self-produced residential in order to improve its thermal performance while preserving the essentials of its specificities.
建筑材料选择对Biskra汽车生产的独立住宅热舒适性的影响。
建筑围护结构是抵御外部气候变化的第一道屏障。通常,它由两种类型的墙组成:不透明墙(墙和屋顶)和透明墙(窗)。围护结构的设计特点强烈影响居住者的热舒适性以及建筑能耗。在建筑与其环境之间的热交换中,通常会考虑与结构元件有关的构造选择,特别是墙壁、屋顶和开口。本研究基于对Biskra(阿尔及利亚)自产住宅区的实验分析,该地区气候温暖干旱,我们旨在评估Biskra自产住宅区特有的某些建筑和建设参数的热影响。本文总结了现场测量活动的主要结果,该活动评估了热舒适性的基本参数,如环境和表面温度、空气速度和湿度。这些参数被用作衡量包膜材料特性对其气候适应性的影响的指标。本文还提出了一些建议,以优化自产住宅的建筑材料选择,从而提高其热性能,同时保留其特性的本质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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12 weeks
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