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Deducing the Optimal Control Method for Electrochromic Triple Glazing through an Integrated Evaluation of Building Energy and Daylight Performance

机译:通过综合评估建筑能量和日光性能的综合评价来推导电致变色三层玻璃的最优控制方法

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摘要

Electrochromic glass is anticipated as the next generation of solar control glass for construction because it can control the transmittance of the glass itself. This study analyzed building energy and light environment performance by applying electrochromic glass in triple glazing in order to verify both the solar control characteristics of electrochromic glass and its high insulation performance. This paper evaluates the performance of the electrochromic glass developed by our research team in Korea in five control conditions of varying temperatures and solar radiation levels. By analyzing the cooling and heating load, lighting energy, Daylight Glare Index (DGI), and interior illuminance when applying the selected conditions to office buildings, this paper discerns the optimal control conditions for electrochromic glass. To do so, the optical characteristic data of the electrochromic glass was analyzed via an experiment, and the creation of triple glazing for construction was conducted. The performance of electrochromic glass was evaluated by analyzing hourly and yearly data for cooling, heating load, and lighting energy during a typical day in summer and winter. From this analysis, the control condition with an outstanding performance from an energy perspective was identified. The performance of the light environment was assessed, and the EDPI overall evaluation index was used to find the electrochromic glass’ optimum control conditions for integrating energy and light environment.
机译:电致变色玻璃预计为下一代太阳能控制玻璃,因为它可以控制玻璃本身的透射率。本研究通过在三层玻璃中施加电致变色玻璃来分析建筑能量和光环境性能,以验证电致变色玻璃的太阳能控制特性及其高绝缘性能。本文评估了我们研究团队在韩国在五个不同温度和太阳辐射水平的控制条件下进行了电致变色玻璃的性能。通过分析冷却和加热载荷,照明能量,日光眩光指数(DGI)以及室内照度在将所选条件应用于办公楼时,辨别出电致变色玻璃的最佳控制条件。为此,通过实验分析电致变色玻璃的光学特性数据,进行三重玻璃施工的建造。通过分析夏季和冬季典型的一天,通过分析每小时和每年的数据来评估电致变色玻璃的性能,用于冷却,加热负荷和照明能量。从该分析来看,确定了具有从能量观点的出色性能的控制条件。评估光环境的性能,利用EDPI整体评估指数来寻找电致变色玻璃的最佳控制条件,用于整合能量和光环境。

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