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Calculation of the shadow-penumbra relation and its application on efficient architectural design

机译:影影关系的计算及其在高效建筑设计中的应用

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Shadow Dispersion is the effect by which any opaque object's shadow progressively becomes penumbra. This effect originates from a partial obstruction of the visibility of the solar disk. It allows diminishing solar gain in places where there is high radiation intensity, facilitating visual ergonomics and energy efficiency. Although architecture in the tropics offers a wide array of strategies for creating penumbras, i.e., meshes, lattices, architectural fabrics, openwork walls and pergolas, there is no method for its design. Solar architecture literature simplifies the shadow projection phenomenon and always assumes sunrays as being parallel, but penumbra calculation does not allow for this simplification. In order to bridge this gap, calculating equations are deduced here and the tables needed to appraise suitable architectural areas not to block but soften sunlight are included. This paper defines the penumbra rate and shows its application on a building built in Medellin in 2006, designed for housing exhibitions of orchids, which depend on penumbra to survive. The work concludes by outlining the future possibilities of incorporating penumbra zones into the architectural design process. Other applications of the method are also mentioned. (C) 2014 Elsevier Ltd. All rights reserved.
机译:阴影分散是任何不透明对象的阴影逐渐变为半影的效果。这种影响源于部分阻碍了太阳盘的可见性。它可以在高辐射强度的地方减少太阳的吸收,从而促进视觉人体工程学和能源效率。尽管热带地区的建筑提供了创建半影的各种策略,即网格,格子,建筑织物,镂空墙和凉棚,但尚无设计方法。太阳建筑文献简化了阴影投影现象,并始终假定太阳光线是平行的,但半影法计算不允许这种简化。为了弥合这一差距,在此推导了计算公式,并提供了评估合适的建筑区域而不是遮挡而是柔化阳光所需的表格。本文定义了半影率,并显示了其在2006年麦德林建造的建筑物中的应用,该建筑物用于展览兰花,而兰花则依靠半影生存。最后,工作概述了将半影带纳入建筑设计过程的未来可能性。还提到了该方法的其他应用。 (C)2014 Elsevier Ltd.保留所有权利。

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