Evaluation of building energy load of a multipurpose hall and its optimization through spectrally selective fenestration and passive design concepts

Hrishika Rastogi, Sumedha Moharana
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Abstract

Sports complexes and recreational centers are large and long-term investments that provide integrated facilities for training athletes and hosting social-cultural events. Due to their daily functioning, such buildings involve high energy consumption resulting in environmental impacts at both local and global scales. This article investigates the currently available methods for assessing the performance characteristics of a Multipurpose Hall using passive design techniques by modifying the building materials used for the wall envelope and fenestration design. Given that the proposed Multipurpose Hall is located near the composite climate of New Delhi, India, a study of climatic responses together with an energy evaluation of the building provides insight into the important envelope design for enhancing a building's energy efficiency. Several energy simulations were performed using DesignBuilder software to determine the annual lighting, heating, and cooling consumption for wall envelopes, window glazings, and dynamic shading techniques. Additionally, the solar gain of various fenestration designs was investigated, and the most energy-efficient building envelope was selected. The comparison of the baseline envelope with the modified envelope design revealed a notable improvement in energy performance.

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基于光谱选择性开窗和被动式设计理念的多功能厅建筑能量负荷评价及优化
体育综合体和娱乐中心是大型长期投资,为训练运动员和举办社会文化活动提供综合设施。由于它们的日常功能,这些建筑涉及高能耗,从而在当地和全球范围内造成环境影响。本文通过修改用于墙面围护和开窗设计的建筑材料,研究了目前使用被动设计技术评估多功能厅性能特征的可用方法。鉴于拟建的多用途大厅位于印度新德里的复合气候附近,对气候响应的研究以及对建筑的能源评估为提高建筑能源效率的重要围护结构设计提供了见解。使用DesignBuilder软件进行了几次能量模拟,以确定墙面围护结构、窗户玻璃和动态着色技术的年度照明、供暖和制冷消耗。此外,还研究了各种开窗设计的太阳能增益,并选择了最节能的建筑围护结构。基线包络线与改进包络线设计的比较表明,能源性能显著改善。
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