DOI QR코드

DOI QR Code

A Study on generation characteristics of building integrated Photovoltaic system

건물일체형 태양광발전 시스템의 발전성능 분석

  • 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)
  • Received : 2013.04.10
  • Accepted : 2013.06.24
  • Published : 2013.06.30

Abstract

In this study, we analyze the performance characteristics of Building Integrated Photovoltaic (BIPV) system of K Research Building which was designed with the aim of zero carbon building. In addition, BIPV system, which is consist of three modules; G to G(Glass to Glass), G to T(Glass to Tedlar/Crystal) and Amorphous, has 116.2kWp of total capacity, and is applied to wall, window, atrium and pagora on roof. Therefore, in this paper, our research team analyzed BIPV yield and generation characteristic. BIPV yield was 112,589kWh a year from January 2012 to December 2012. And after applying PV panels on the building, the power from the best setting angle, $30^{\circ}$, of panel was compared. In addition, when the PV was attached practically on the building, the generation power was analyzed. BIPV modules in this study the relationship between module setting angle, type of modules ect. and power characteristics plans to identify.

Keywords

References

  1. Jae-Wan Park, et al., A Study on Building Energy Dem and for Design of Energy System on Green Home Apartment, Journal of the Korea Solar Energy , Vol, 33, No. 1 pp. 23-31, 2013 https://doi.org/10.7836/kses.2013.33.4.023
  2. Hab-Myoung, Lee, et al, A Study on the Mock-up test for applying BIPV in theexternal curtain Wall, Journal of the Korea Solar Energy, Vol, 29, No. 6 pp. 110-118, 2009
  3. Jung-Woo Park, et al., Alalysis of Generation Performance of BIPV System according to Application Methods, Juranal of Korean Institute Architectural Sustainable Environment and Building Systems Vol, 4, No. 2 pp. 273-276, 2011
  4. Jong-Hwa, Song, et al., Power Performance Characteristics of Transparent Thin-film BIPV Moule depending on an installation angle, Journal of the Korea Solar Energy , Vol, 28, No. 2, 2008
  5. International Electro technical Commission. IEC 61724, Photovoltaic system performance monitoring e guidelines for measurement, data exchange and analysis. 1st ed. Geneva, IEC: International Electro technical Commission:1998.
  6. Pless, S., Deru, M., Torcellini, P., Hayter, S., Procedure for Measuring and Reporting the Performance of Photovoltaic Systems in Buildings:NREL/TP-550-38603 October 2005.

Cited by

  1. Effects on the Characteristics of Exhaust Gas Emission and Combustion by Changing Injection Fuel Temperature vol.22, pp.5, 2018, https://doi.org/10.9726/kspse.2018.22.5.076
  2. Implementation of an Adaptive EMS System Based on Solar Power Generation and Power Demand Pattern vol.17, pp.1, 2019, https://doi.org/10.14801/jkiit.2019.17.1.53
  3. IoT 기반 모바일 스마트 태양광 발전 모니터링 시스템 vol.54, pp.8, 2013, https://doi.org/10.5573/ieie.2017.54.8.55
  4. CPU 없는 자가 동력 태양광 트랙커 시스템 vol.21, pp.3, 2017, https://doi.org/10.7471/ikeee.2017.21.3.211
  5. BIPV 설치 입면 디자인을 위한 BIM기반 설계 지원 모델에 관한 연구 vol.17, pp.6, 2017, https://doi.org/10.12813/kieae.2017.17.6.177
  6. 사용자 요구기반 태양광발전 구조물 안전진단 시스템 vol.55, pp.6, 2013, https://doi.org/10.5573/ieie.2018.55.6.61
  7. 부유식 태양광 발전기의 패널과 부유체에 작용하는 풍하중과 유동특성 vol.20, pp.10, 2013, https://doi.org/10.5762/kais.2019.20.10.229
  8. 선박 디젤기관의 배기배출물 특성이 흡기 온도변화에 미치는 영향 vol.25, pp.6, 2019, https://doi.org/10.7837/kosomes.2019.25.6.788