扩散几何:蒸汽作为构造元素在建筑空间中塑造微气候

Honghao Deng, Jiabao Li, Xuesong Zhang, P. Michalatos
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引用次数: 0

摘要

建筑的一个基本功能是控制我们周围的环境。在实践中,室内气候被离散成独立的单元,湿润的空间被指定为湿润的空间,干燥的空间被保持为干燥的空间。与自然变化的天气模式相反,建筑通常是静态的和二元的,中间没有扩散。因此,室内无法体验到自然界的天气状况。目前在建筑中使用蒸汽几何形状的装置仅限于创造性的展示。通过扩散几何,我们建议蒸汽作为一种媒介,将微气候带入建筑空间。蒸汽作为构造元素的独特特性允许用户调节能见度,创建冷却梯度,并产生三个主要元素的空间模式:蒸汽旋涡环,蒸汽龙卷风和蒸汽墙。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diffusive Geometries: Vapor as a Tectonic Element to Sculpt Microclimates in Architectural Space
An essential function of architecture is to control the environment around us. In practice, interior climates are discretized into self-contained units, where wetness is designated to wet spaces, and dryness is kept to dry spaces. Contrary to nature's changing weather patterns, architecture is often static and binary, with no diffusion in between. As a result, weather conditions in nature are not experienced inside. Current installations using vapor geometries in architecture are limited to creative showcases. With Diffusive Geometries, we are proposing vapor as a medium to bring microclimates into architectural spaces. The unique characteristics of vapor as tectonic elements allow users to modulate visibility, create cooling gradients, and produce spatial patterns with three main elements: vapor vortex ring, vapor tornado, and vapor wall.
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