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Development of a Rule-based BIM Tool Supporting Free-form Building Integrated Photovoltaic Design

비정형 건물일체형 태양광 발전 시스템 규칙기반 BIM설계 지원 도구 개발

  • Received : 2015.12.11
  • Accepted : 2015.12.20
  • Published : 2015.12.31

Abstract

Korea has been at the forefront of green growth initiatives. In 2008, the government declared the new vision toward 'low-carbon society and green growth'. The government subsidies and Feed-in Tariff (FIT) increased domestic usage of solar power by supplying photovoltaic housing and photovoltaic generation systems. Since 2000, solar power industry has been the world's fastest growing source with the annual growth rate of 52.5%. Especially, BIPV(Building Integrated Photovoltaic) systems are capturing a growing portion of the renewable energy market due to several reasons. BIPV consists of photovoltaic cells and modules integrated into the building envelope such as a roof or facades. By avoiding the cost of conventional materials, the incremental cost of photovoltaics is reduced and its life-cycle cost is improved. When it comes to atypical building, numerous problems occur because PV modules are flat, stationary, and have its orientation determined by building surface. However, previous studies mainly focused on improving installations of solar PV technologies on ground and rooftop photovoltaic array and developing prediction model to estimate the amount of produced electricity. Consequently, this paper discusses the problem during a planning and design stage of BIPV systems and suggests the method to select optimal design of the systems by applying the national strategy and economic policies. Furthermore, the paper aims to develop BIM tool based on the engineering knowledge from experts in order for non-specialists to design photovoltaic generation systems easily.

Keywords

References

  1. Kang, B-B (2004), "Study on the web based monitoring and output characteristic analysis of PCS for 10kW BIPV", Doctorate Thesis, University of Dongshin.
  2. Kang, T-W (2013), "Study on Thermal and Electrical Performance of Vertical Semi-Transparent BIPV Module According to Insulation", Master's Thesis, University of Kongju.
  3. Kwon, S-H (2010), "A Study on the Identification of As-Built Quality Control Points for the Free-Form Building Facade Panels", Master's Thesis, Seoul National University of Science and Technology.
  4. Kim, K-R (2008), "Comparison of Methodologies for Typical Meteorological Data Generation for Seoul in Korea", Master's Thesis, University of Ulsan.
  5. Kim, S-J (2012), "Prototype System to Support Array Design of Roof-Top Photovoltaics Based on 3D GIS", Doctorate Thesis, University of Seoul.
  6. Kim, H-R (2012), "Study on Electrical and Thermal Performance of BIPV Curtain Wall Systems", Master's Thesis, University of Kongju.
  7. Kim, H-I (2010), "Study on the Performance Analysis and Reliability Assessment for BIPV System", Doctorate Thesis, University of Inha.
  8. Moon, S-W (2011), "Study on the Designs Systemization of Architecture Using Parametric Technology", Master's Thesis, University of Ajou.
  9. Park, J-H (2014), "A Study on the Parametric Design Process for the Curved Surface Division of Irregular-Shaped Tall", Master's Thesis, University of Yeungnam.
  10. Park, H-S (2009), "study on a surface generation method of free-form architecture using a planar quadrilateral mesh technique", Master's Thesis, University of Hanyang.
  11. Seoul Special City Architecture Planning Division (2014), "guideline of Public Buildings".
  12. Solar & Energy (2011), "BIPV technology and market (2009-2015)", pp.24-25.
  13. Renewable Energy Center, "Supply obligation of renewable energy(RPS)system guide", Korea Energy Management Corporation, pp.1-273. 2012.
  14. Yang, H-B (2009), "study on the application of the BIPV system in building skin design", Master's Thesis, University of Yonsei.
  15. Yoo, H-C, Park, S-H, Kim, K-R (2008), "Comparison of Methodologies for Typical Meteorological Data Generation for Seoul", Korea Institute of Energy Research, 28(2), pp.10-18, 2008.
  16. Lee, S-W (2014), "A study on development of buildingintegrated solar power system performance", University of Pukyong.
  17. Ministry of Knowledge Economy (2008), "Development of the third-order new renewable energy technologies and use popular basic plan(2009-2030)".
  18. Han, M-J (2011), "The Design Method and Environmental Performance Evaluation for Unit Type BIPV in High Rise Buildings", Master's Thesis, University of Dankook.
  19. Han, J-K (2010), "A Study on Architectural Design Application of Photovoltaic System in Environment-Friendly Housing", Master's Thesis, University of Dongguk.
  20. Anton. J. V, Reinders. A. H. M. E, (2012) "Real-Time Irradiance Simulation for PV Products and Building Integrated PV in a Virtual Reality Environment", IEEE Journal of Photovoltaics, 2(3), pp.352-358. https://doi.org/10.1109/JPHOTOV.2012.2189937
  21. ANSI/ASHRAE, ANSI/ASHRAE Standard 140-2001, (2006) "Standard Method of Test for the Evaluation of Building Energy Analysis Computer Programs".
  22. Di Vincenzo. M. C, Infield. D, (2010) "Artificial Neural Network for real time modelling of photovoltaic system under partial shading", Sustainable Energy Technologies (ICSET), 2010 IEEE International Conference on, Kandy, Sri Langka, pp.1-5.
  23. Javier Monedero, (2006) "Parametric design : A review and some experiences", 15th CAADe-Conference Proceedings, Vienna University of Technology.
  24. Kolatan, Ferda, (2006) "Responsive Architecture through Parametric Design", New Kind of Science, University of Pennsylvania.
  25. Reich. N. H, Van Sark. W, Turkenburg. W. C, (2010) "Using CAD Software to Simulate PV Energy Yield ‐ The Case of Product Integrated Photovoltaic Operated under Indoor Solar Irradiation", Solar Energy, 84(8), pp. 1526-1537. https://doi.org/10.1016/j.solener.2010.05.015
  26. Woyte. A, Nijs. J, Belmans. R, (2003) "Partial Shadowing of Photovoltaic Arrays with Different System Configurations : Literature Review and Field Test Results", Solar Energy, 74(3), pp.217-233. https://doi.org/10.1016/S0038-092X(03)00155-5
  27. Zhaoyu Wang, Qian Ai, Da Xie, Chuanwen Jiang, (2011) "A Research on Shading and LCOE of Building Integrated Photovoltaic", Power and Energy Engineering Conference (APPEEC), 2011 Asia‐Pacific, Wuhan, China. pp.1-4.
  28. Eastman C, Teicholz P, Sacks R, Liston K, (2014) "BIM Handbook Second Edition", pp.52-92.

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