多目标优化斋浦尔(印度)复合气候下建筑围护结构设计的视觉、热能和冷能性能

Pushpendra Kumar Chaturvedi, Nand Kumar, Ravita Lamba
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摘要

窗户、百叶窗和遮阳等气候响应型被动围护结构对建筑物的能源和经济性能有重大影响。本文提出了一种多目标优化(MOO)方法,通过考虑多种设计可能性来提高建筑物的能源、视觉和热性能。分析对象是一栋位于印度斋浦尔半干旱气候(柯本气候分类:Bsh)的住宅公寓楼。多目标优化方法包括三个步骤:首先使用 Rhinoceros 软件建立基础模拟模型,然后使用 Octopus 插件进行多目标优化,最后应用多标准决策选择导热系数、南立面和西立面的窗墙比、太阳辐射热获得系数、视觉透光率、窗台高度、百叶深度、缝隙间距、缝隙角度、外遮阳深度和遮阳(缝隙)数量的最佳值。优化结果表明,与最坏情况相比,有用日光照度(UDI)提高了六倍,制冷能源需求减少了 72%,热舒适度提高了 34%。所提出的方法可以帮助设计师在建筑设计、翻新、改造或绿地开发过程中选择最佳的围护结构特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-objective optimization for visual, thermal, and cooling energy performance of building envelope design in the composite climate of Jaipur (India)
Climate-responsive passive envelope features such as windows, louvers, and shading have significant impact on a building's energy and economic performance. This paper presents a multi-objective optimization (MOO) approach to enhance energy, visual and thermal performances of a building by considering a wide range of numerous design possibilities. A residential apartment building located in a semi-arid composite climate (Köppen climate classification: Bsh) of Jaipur, India is considered for the analysis. The multi-objective optimization approach involves three steps: firstly, developing a base simulation model using Rhinoceros software, and then performing multi-objective optimization by Octopus plugin, and finally applying multi-criteria decision-making to select the optimal values of thermal conductivity, window-to-wall ratio of south and west façades, solar heat gain coefficient, visual light transmittance, window sill height, louvers depth, distance between slits, slits angle, external shade depth, and shade (slits) count. The optimized results reported a six-fold Useful Daylight Illuminance (UDI) improvement, 72% cooling energy demand reduction, and 34% thermal comfort enhancement from the worst-case scenario. The presented approach can aid designers in selecting optimal envelope features during building design, refurbishment, and renovation or for green field development.
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