Voronoi几何体用于建筑立面,以管理直射阳光

Q2 Engineering
A. Goharian, Khosro Daneshjoo, M. Mahdavinejad, M. Yeganeh
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引用次数: 1

摘要

如今,超先进的外墙已经取得了长足的进步,参数化仿真软件为这一进步做出了重大贡献。Voronoi壳,基于其不规则的性质,是现代建筑外墙中使用的最先进的外墙之一。在本文中,主要关注的是这些立面对来自太阳的入射光的行为。本研究提出的方法是基于Ladybug Tool的插件功能。通过对天气信息和所需几何形状的分析,将每个时间步骤中的直射光线作为矢量,并通过考虑环境(立面)计算直射阳光小时数。为了估计综合方法,相同的工作流程将冬至(P2)和夏至(P1)作为横断面研究(最大和最小太阳高度)进行评估。结果表明,几何形状的类型和立面框架的厚度对射入光线的方向有很大的影响,几何形状的类型应控制在适合太阳高度的纬度;因为Voronoi立面的几何复杂性与太阳高度有很大关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voronoi geometry for building facade to manage direct sunbeams
Nowadays, ultra-advanced facades have made great strides, and parametric simulation software has made a significant contribution to this advancement. Voronoi shells, based on their irregular nature, are one of the most advanced facades that are being used in modern building facades. In this paper, the main focus is on the behavior of these facades against incident light from the sun. The method presented in this research is based on Ladybug Tool’s plug-in capabilities. Using the analysis of weather information and the desired geometry, direct rays as a vector in each time step is prepared, and the amount of direct sunbeam hours by considering the contexts (Facade) calculated. To estimate the comprehensive method, the same workflow evaluated winter (P2) and summer (P1) solstice as a cross-sectional study (Max & Min solar altitude). The results indicate that the type of geometry Voronoi and the thickness of the facade frame have a great effect on the direction of the rays inwards and also the type of geometry should be controlled at latitudes appropriate to the solar altitude; because of the geometric intricacies of the Voronoi facade have a great deal to do with the solar altitude.
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
21
审稿时长
12 weeks
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