应用带 LED 调光控制的日光集中室内百叶窗系统的照明节能研究

Energies Pub Date : 2024-07-11 DOI:10.3390/en17143425
June-Hae Lee, Jae-Sik Kang
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摘要

这项研究分析了使用日光集中室内百叶窗系统(一种可再生能源设备)降低室内照明能耗的效果。日光集中室内百叶窗系统通过百叶窗将从窗户进入室内的自然光引入室内,从而增强室内照明。这项研究表明,通过使用与 LED 相连的调光控制,照明能源节约效果显著,尤其是在过渡季节,耗电量减少了 85.65%。相比之下,冬季由于自然光照减少,累计耗电量较高,三天平均耗电量为 1128.22 瓦,而过渡季节为 836.60 瓦,增加了 25.85%。照度分布分析表明,冬季距离窗户 1 米处的照度较高,而过渡季节在 3 米和 5 米处的照度值较高,表明自然光的穿透更为有效。过渡季节的太阳高度有利于通过采光百叶实现均匀的光线分布。这些研究结果证实,采用日光百叶和 LED 调光控制后,可节省大量能源并改善照度分布,在过渡季节的效率显著提高。因此,日光集中室内百叶被证实能有效降低室内电气照明的能耗。
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Study on Lighting Energy Savings by Applying a Daylight-Concentrating Indoor Louver System with LED Dimming Control
This study analyzed the effect of indoor lighting energy reduction using a daylight-concentrating indoor louver system, which is a renewable energy equipment item. Daylight-concentrating indoor louver systems enhance indoor lighting by directing natural light, entering through windows, into the room via louvers. This study demonstrates significant lighting energy savings through the use of LED-linked dimming control, particularly during the transitional season, achieving an 85.65% reduction in power consumption. In contrast, the winter season showed higher cumulative power consumption due to reduced natural light availability, with a three-day average consumption of 1128.22 W compared to 836.60 W in the transitional season, representing a 25.85% increase. The illuminance distribution analysis revealed that, while winter had higher illuminance at 1 m from the window, the transitional season recorded higher values at 3 m and 5 m, indicating more effective natural light penetration. The solar altitude during the transitional season facilitated even light distribution through daylighting louvers. These findings confirm the substantial energy savings and improved illuminance distribution achieved with daylighting louvers and LED dimming control, with notable efficiency during the transitional season. Consequently, daylight-concentrating indoor louvers are confirmed to be effective in reducing indoor electric lighting energy consumption.
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