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http://dx.doi.org/10.7836/kses.2013.33.3.067

A Study on BIPV system generation matching by electricity load characteristic of Building  

Park, Jae-Wan (T.E.S Eng)
Shin, U-Cheul (Department of Architectural Engineering, Daejoen University)
Kim, Dae-Gon (Climate Change Research Division, National Institute of Environmental Research)
Yoon, Jong-Ho (Department of Architecture Engineering, Haeundae University)
Publication Information
Journal of the Korean Solar Energy Society / v.33, no.3, 2013 , pp. 67-74 More about this Journal
Abstract
These days, although thermal energy is decreasing, electric energy is increasing in building. Also, it is very important to research and distribute BIPV(Building Integrated photovoltaic) because our society consider electricity more significant than other energy in building. Therefore, in this paper, our research team analyzed difference between BIPV yield and building energy consumption through experimental research. As a result, yearly building energy consumption was 104,602.4kWh and BIPV yield was 105,267kWh. And then, totally counterbalanced time took up 26%, reduced electric load time took up 16%. In other words, peak load could be reduced up to 42% by BIPV. As a result, yearly building energy consumption was 104,602.4kWh and BIPV yield was 105,267kWh. And then, totally counterbalanced time took up 26%, reduced electric load time took up 16%. In other words, peak load could be reduced up to 42% by BIPV.
Keywords
Building bioclimatic chart; Climatic design; Computer program; Energy conservation;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
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2 Young-Sub, An, et al, Case Study on 5kWp Transparent Thin-Film BIPV System, Journal of the Korea Solar Energy, Vol, 30, No. 4pp. 29-35, 2010   과학기술학회마을
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4 Hyun-il, Kim, et al, Analysis of Performance of Building Integrated PV System of Cold Faxade Type, Journal of the Korea Solar Energy , Vol, 28, No. 2 pp. 275-280, 2008
5 http://www.kemco.or.kr/building/v2, KEMCO, KOREA