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논문 기본 정보

자료유형
학술저널
저자정보
Alkadri, Miktha F. (Department of Architecture Engineering and Technology, Faculty of Architecture, Delft University of Technology) Turrin, Michela (Department of Architecture Engineering and Technology, Faculty of Architecture, Delft University of Technology) Sariyildiz, Sevil (Department of Architecture Engineering and Technology, Faculty of Architecture, Delft University of Technology)
저널정보
테크노프레스 Advances in computational design Advances in computational design 제3권 제4호
발행연도
2018.1
수록면
319 - 338 (20page)

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High-performing architecture should be designed by taking into account the mutual dependency between the new building and the local context. The performative architecture plays an important role to avert any unforeseen failures after the building has been built; particularly ones related to the microclimate impacts that affect the human comfort. The use of the concept of solar envelopes helps designers to construct the developable mass of the building design considering the solar access and the site obstruction. However, the current analysis method using solar envelopes lack in terms of integrating the detailed information of the existing context during the simulation process. In architectural design, often the current site modelling not only absent in preserving the complex geometry but also information on the surface characteristics. Currently, the emerging applications of point clouds offer a great possibility to overcome these limitations, since they include the attribute information such as XYZ as the position information and RGB as the color information. This study particularly presents a comparative analysis between the manually built 3D models and the models generated from the point cloud data. The modelling comparisons focus on the relevant factors of solar radiation and a set of simulation to calculate the performance indicators regarding selected portions of the models. The experimental results emphasize an introduction of the design approach and the dataset visibility of the 3D existing environments. This paper ultimately aims at improving the current architectural decision of support environment means, by increasing the correspondence between the digital models for performance analysis and the real environments (context of design) during the conceptual design phase.

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