传统住宅建筑中的气候敏感设计:卡尔斯·卡拉库尔特住宅

Pub Date : 2023-08-30 DOI:10.11113/ijbes.v10.n3.1088
F. Çakıcı, Ç. Takva
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引用次数: 0

摘要

基于性能和能源效率的设计在住宅建筑中很重要。考虑气候数据和节能的设计方法也被用于传统建筑设计。在此背景下,旨在评估俄罗斯占领时期(1878-1918)在土耳其建造的Kars的Karakurt房屋,这些房屋属于气候敏感设计范围。Kars Karakurt房屋是传统建筑实例,作为波罗的海建筑的合格代表,保留了该地区的原始肌理,文献中对这些房屋的研究不足,构成了研究空白。本研究采用了定性和定量相结合的研究方法。通过测量技术和工具获得了卡拉库尔特村建筑的平面图和立面类型。在定性研究部分,通过现场调查获得了有关建筑物的信息,并对情况进行了分析。在定量研究部分,根据气候敏感设计方法,对建筑和空间的朝向分析以及立面的窗墙面积比进行了评估。在研究结果中,对10栋卡拉库尔特房屋的平面图、立面、屋顶和材料特性等设计标准进行了检查,发现这些建筑在气候敏感设计范围内是标准化的。可以看出,建筑物和空间的朝向不倾向于以风为主、阳光穿透最少的北向,窗户/墙壁面积比保持在最小值,从而减少了能量损失,尤其是由于开口造成的能量损失。
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Climate-sensitive Design in Traditional Residential Architecture: Kars Karakurt Houses
Design based on performance and energy efficiency is important in residential buildings. The design approach, which considers climatic data and energy conservation, was also used in traditional building design. In this context, it is aimed to evaluate the Karakurt houses in Kars, built during the Russian occupation period (1878-1918) in Turkey, within the scope of climate-sensitive design. The inadequacy of studies in the literature on Kars Karakurt houses, which are traditional architectural examples that preserve the original texture of the region as qualified representatives of Baltic architecture, constitutes a research gap. In this study, qualitative and quantitative research methods were used. The architectural plan and facade typologies of the buildings in Karakurt village were obtained by measuring techniques and tools. In the qualitative research part, information about the buildings was obtained from on-site investigations and a situation analysis was made. In the quantitative research part, orientation analyses of buildings and spaces, and window-wall area ratios of facades have been evaluated according to climate-sensitive design approaches. In the research findings, design criteria such as plan, facade, roof and material properties of 10 Karakurt houses, were examined and it was seen that the buildings were standardized within the scope of climate-sensitive design. It is seen that the north direction, where the wind is dominant and the sunlight penetration is the least, is not preferred for the orientation of the buildings and the space, and the window/wall area ratio is kept to a minimum, reducing the energy loss especially due to the openings.
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