Exploring Design Principles of Bioclimatic Architecture and Double Skin Facades as A Convincing Tool for Energy Saving

Sertaç Ilter
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引用次数: 2

Abstract

Different climates of different regions do not provide the required appropriate climatic conditions to ensure thermal comfort all year long. The goal to be pursued is to achieve the best interaction between climate, building and user behaviour. Bioclimatic buildings exploit climate in order to offer their occupants the most appropriate comfortable conditions. Especially, variations in hours of sunshine, in temperature, and rainfall of a particular climate signify establishing various strategies according to seasonal differences of a particular region. In wintertime assembling most of solar gain, and protecting the users from the cold (heating) is important. In summer; occupants/users need more protection from the sun (cooling). Thus, bioclimatic buildings reside in tune with these natural rhythms through consulting the most of natural lighting.This paper is aimed to enable architects to rediscover the principles of bioclimatic architecture and the modern technical and architectural means to achieve them. The study persuades adjusting the Double Skin Façades (DSF) design as the disciplined approach of ensuring the major strategies of Bioclimatic Architecture. Apparently, the study seeks three delineated bioclimatic approach daylight, thermal comfort and natural ventilation in DSF systems. The study views the DFS systems as the potential inclination for bioclimatic architecture ecological principles. On this basis, a connection between Bioclimatic Architecture and DFS systems are asserted and moderated within a generalized task.
探索生物气候建筑的设计原则和双层幕墙作为节能的有力工具
不同地区的气候条件不同,不能保证全年的热舒适。要追求的目标是实现气候、建筑和用户行为之间的最佳互动。生物气候建筑利用气候为居住者提供最适宜的舒适条件。特别是,特定气候的日照时数、温度和降雨量的变化意味着要根据特定地区的季节差异制定各种策略。在冬季,收集大部分太阳能,保护用户免受寒冷(加热)是重要的。在夏天;居住者/使用者需要更多的防晒保护(冷却)。因此,生物气候建筑通过充分利用自然光,与这些自然节奏保持一致。本文旨在使建筑师重新发现生物气候建筑的原理以及实现这些原理的现代技术和建筑手段。该研究说服调整双表皮设计(DSF)作为确保生物气候建筑主要战略的有纪律的方法。显然,该研究寻求三种生物气候方法:DSF系统中的日光、热舒适和自然通风。该研究将DFS系统视为生物气候建筑生态原则的潜在倾向。在此基础上,生物气候建筑和DFS系统之间的联系在一个广义的任务中被断言和调节。
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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