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Biophilic, photobiological and energy-efficient design framework of adaptive building facades for Northern Canada

机译:加拿大北部自适应建筑立面的嗜聚菌,光生物学和节能设计框架

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This paper develops an integrated design framework of adaptive building façades (ABFs) to respond to photobiological and thermal needs of occupants, biophilic factors, energy requirements and climatic features in Northern Canada, i.e. near and above 50°N. The paper discusses the importance of biophilic and photobiological factors and ABFs to improve occupants’ health and human–nature relations and deal with the extreme climate in Northern Canada where non-adapted buildings that could negatively affect occupants’ well-being. The paper shows that existing ABFs must be further developed for northern applications in terms of (i) the physical structure and configuration of components, (ii) the design of solar shading/louver panels to address photobiological and biophilic requirements, (iii) the development of lighting adaptation scenarios to respond to biophilic and photobiological needs, local photoperiods and energy issues and (iv) the overall biophilic quality for accessibility to natural patterns. The ABFs’ framework was developed in three phases including: (1) process environmental data, (2) produce adaptation scenarios and (3) operate adaptation scenarios. The research discussed major issues of all phases that must be further studied, especially the development of hourly/daily/seasonally lighting adaptation scenarios. The paper develops a holistic parametric methodology to integrate and optimize major design variables of ABF’s components.
机译:本文开发了一个综合设计框架,适应性建筑外墙(ABFS),以应对加拿大北部的居住者,敌意因素,能源需求和气候特征的光生物和热需求,即近50°N。本文探讨了嗜聚和光生物因素和ABF的重要性,以改善居住者的健康和人性关系,并处理加拿大北部的极端气候,其中不适应的建筑物可能对居住者产生负面影响。本文表明,现有的ABF必须进一步开发用于北方应用的(i)组件的物理结构和配置,(ii)太阳遮阳/百叶窗面板的设计,以解决光生物和食用需求,(iii)的发展照明适应情景,以响应杀虫和光生物需求,局部光周期和能量问题,(iv)整体杀虫品质,可用于自然模式。 ABFS框架是三个阶段开发的,包括:(1)过程环境数据,(2)产生适应方案和(3)操作适应情景。该研究讨论了必须进一步研究的所有阶段的主要问题,特别是开发每小时/每日/季节性照明适应情景。本文开发了整体参数学方法,可集成和优化ABF组件的主要设计变量。

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