School of Energy and Environment, Zhongyuan University of Technology, Zhengzhou 450007, China.
Henan Academy of Building Sciences Co., Ltd, Zhengzhou 450053, China.
Comput Intell Neurosci. 2022 Aug 5;2022:5766448. doi: 10.1155/2022/5766448. eCollection 2022.
In view of the current situation of excessively rapid growth of building energy consumption, a control strategy of external shading louvers based on comprehensive energy consumption is proposed to deeply tap the potential of building energy saving. First, the architectural design software Ecotect is used to establish a simulation model of a shading building in Zhengzhou and import it into the lighting analysis software Daysim and the energy consumption simulation software Energyplus to simulate the annual lighting energy consumption and air-conditioning at 11 kinds of blind angles (15∼165°). For heating energy consumption, take the blind angle corresponding to the minimum comprehensive energy consumption as the opening angle of the dynamic blinds and analyze the comprehensive energy consumption for the whole year under dynamic sunshading. The results show that, compared with the conventional control strategy, the optimized control strategy based on comprehensive energy consumption can greatly improve the building's energy-saving rate.
针对建筑能耗过快增长的现状,提出了一种基于综合能耗的外遮阳百叶窗控制策略,深度挖掘建筑节能潜力。首先,利用建筑设计软件 Ecotect 建立郑州遮阳建筑的模拟模型,将其导入采光分析软件 Daysim 和能耗模拟软件 Energyplus 中,模拟 11 种遮阳角度(15∼165°)下的全年采光能耗和空调能耗。对于采暖能耗,以综合能耗最小对应的遮阳角度作为动态遮阳百叶的开启角度,分析全年动态遮阳下的综合能耗。结果表明,与常规控制策略相比,基于综合能耗的优化控制策略可以大大提高建筑的节能率。