Study on daylighting mode of energy-efficient buildings

IF 1.4 Q3 Energy Polityka Energetyczna Pub Date : 2021-06-21 DOI:10.33223/epj/136076
Xiangyong Wu, Zhi Yang
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Abstract

The research considers the aspect of the formation of interior lightning in conditions of extensive expenses on heating. In this regard there is important to study features not only of places and model of lightning, but also generation of heat in order to minimize expenses and find alternative technical solutions for building functioning. The relevance is determined by the fact that the problem of low efficiency of thermal energy used to ensure an appropriate microclimate in buildings is typical for many regions. The purpose of this article is to study features not only of places and model of lighting but also generation of heat to minimize expenses and find alternative technical solutions for building functioning. In the work, the methods of calculation methods and mathematical models such as the exergy model of humans were used. The authors have determined that daylight is only one of the complex solutions of the matter of building energy efficiency. Providing the conditions of heating comfort indoors is not less important in the conditions of increasing requirements to energy conservation. The authors consider the compromise between these two requirements without harming human health the main challenge to the energy conservation specialists. The authors have developed the model, which evaluates not only the achievements of technical parameters, but also orientation toward the model of energy consumption of human. The practical application of the
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节能建筑采光方式研究
研究考虑了在采暖费用较大的条件下室内闪电的形成问题。在这方面,重要的是不仅要研究地点和闪电模型的特征,还要研究热量的产生,以最大限度地减少费用,并为建筑功能找到替代的技术解决方案。这种相关性是由这样一个事实决定的,即用于确保建筑物中适当的小气候的热能效率低的问题是许多地区的典型问题。本文的目的不仅是研究场所和照明模式的特点,还包括热量的产生,以最大限度地减少费用,并找到建筑功能的替代技术解决方案。在工作中,采用了计算方法和人体能量模型等数学模型。作者已经确定,日光只是建筑能源效率问题的复杂解决方案之一。在节能要求日益提高的情况下,提供室内采暖舒适的条件同样重要。作者认为,在不损害人体健康的情况下,这两种要求之间的折衷是节能专家面临的主要挑战。该模型不仅对技术参数的研究成果进行了评价,而且面向人类能源消耗模型。的实际应用
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来源期刊
Polityka Energetyczna
Polityka Energetyczna Energy-Energy (all)
CiteScore
3.60
自引率
0.00%
发文量
9
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