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비정형 건축물 외장패널의 최적화에 관한 연구

A Study on the Optimization of the Free-Form Buildings Façade Panels

  • 임장식 (종합건축사사무소 동일건축) ;
  • 옥종호 (서울과학기술대학교 건축학부)
  • Lim, Jang-Sik (DONG IL Architect & Engineers) ;
  • Ock, Jong-Ho (School of Architecture, Seoul National University of Science and Technology)
  • 투고 : 2014.02.05
  • 심사 : 2014.03.13
  • 발행 : 2014.06.01

초록

The outer surface of an irregular structure contains panels with two-directional curvature called NURBS. To construct these forms of exterior materials, complex geometric surface should be divided into forms and sizes that can be manufactured and constructed. Because the bigger the curvatures of these divided exterior panel, the more expensive the construction costs, these complex two-directional curvatures should go through optimal process of reinterpretation to minimize the curved surfaces with complex two-directional curvatures. Yet, to gain higher ground in technological competition in the field of irregular structure construction, companies do not share know-how that they obtained. Accordingly, small construction and design companies have trouble calculating even rough estimate and cannot adjust expected construction cost based on comparison of design alternatives. Given this situation, this study conducted the research that can support decision-making in the design stage of the construction and provide basic material for optimal range to reduce manufacturing cost by the minimizing the distorted plane of the irregular structure.

키워드

참고문헌

  1. Kim, S.W., 2009, Classification and Optimization of Irregular-Shaped Building Panels by Fabrication Methods : Focused on Dongdaemun Design Plaza and Park, Yonsei University, Korea.
  2. Les A. Piegl and Wayne Tiller, 2002, Biarc Approximation of NURBS Curves, Computer-Aided Design, 34, pp.807-814. https://doi.org/10.1016/S0010-4485(01)00160-9
  3. Lim, J.S. and Ock, J.H., 2012, A Pilot Study on the Development of an Augmented Reality-based Decision Support System for Free-Form Buildings Construction Management, Transactions of the Society of CAD/CAM Engineers, 17(3), pp.175-187. https://doi.org/10.7315/CADCAM.2012.175
  4. Ahn, Y.-J., Kim, H.-O. and Lee, K.-Y., 1998, G1 Arc Spline Approximation of Quadratic Bezier Curves, Computer-Aided Design, 30(8), pp.615-620. https://doi.org/10.1016/S0010-4485(98)00016-5
  5. Tang, X. and Wang, G., 2001, Planar Point Set Fairing and Fitting by Arc Splines, Computer-Aided Design, 33, pp.35-43. https://doi.org/10.1016/S0010-4485(00)00059-2
  6. Rhino 4.0 User's Guide (2008), http://cadcam.ctw.utwente.nl/rhino.htm
  7. Han, J.Y., 2011, (A) Study on Classification and Feature of Double-curved Surface Fabrication Techniques in Freeform Architecture, Sejong University, Korea.
  8. Kwen, S.H., Shim, H.W. and Ock, J.H., 2011, A Study on the Problem Analysis and Quality Improvement in Fabricating Free-Form Buildings Facade Panels through Mock-up Panels Production, Journal of Construction Engineering Project Management, 12(3), pp.11-21. https://doi.org/10.6106/KJCEM.2011.12.3.11
  9. Wikipedia, http://en.wikipedia.org/wiki/Murinsel
  10. Jeongok Prehistory Museum, http://www.jgpm.or.kr
  11. Wikipedia, http://en.wikipedia.org/wiki/Saint-Lazare
  12. Seoul Design Foundation, http://www.seouldesign.or.kr/plaza2/summary.jsp