The generative modeling paradigm is a shift from static models to flexible models. It describes a modeling process using functions, methods and operators. The result is an algorithmic description of the construction process. Each evaluation of such an algorithm creates a model instance, which depends on its input parameters (width, height, volume, roof angle, orientation, location). These values are normally chosen according to aesthetic aspects and style. In this study, the model’s parameters are automatically generated according to an objective function. A generative model can be optimized according to its parameters, in this way, the best solution for a constrained problem is determined. Besides the establishment of an overall framework design, this work consists on the identification of different building shapes and their main parameters, the creation of an algorithmic description for these main shapes and the formulation of the objective function, respecting a building’s energy consumption (solar energy, heating and insulation). Additionally, the conception of an optimization pipeline, combining an energy calculation tool with a geometric scripting engine is presented. The methods developed leads to an automated and optimized 3D shape generation for the projected building (based on the desired conditions and according to specific constrains). The approach proposed will help in the construction of real buildings that account for less energy consumption and for a more sustainable world.
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21 July 2017
INTERNATIONAL CONFERENCE OF NUMERICAL ANALYSIS AND APPLIED MATHEMATICS (ICNAAM 2016)
19–25 September 2016
Rhodes, Greece
Research Article|
July 21 2017
Global optimization framework for solar building design
N. Silva;
N. Silva
1Centre for Rapid and Sustainable Product Development,
Polytechnic Institute of Leiria
, Marinha Grande, Portugal
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N. Alves;
N. Alves
a)
1Centre for Rapid and Sustainable Product Development,
Polytechnic Institute of Leiria
, Marinha Grande, Portugal
2Department of Mechanical Engineering, School of Technology and Management,
Polytechnic Institute of Leiria
, Portugal
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P. Pascoal-Faria
P. Pascoal-Faria
b)
1Centre for Rapid and Sustainable Product Development,
Polytechnic Institute of Leiria
, Marinha Grande, Portugal
3Department of Mathematics, School of Technology and Management,
Polytechnic Institute of Leiria
, Portugal
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a)
Corresponding author: nuno.alves@ipleiria.pt
AIP Conf. Proc. 1863, 520006 (2017)
Citation
N. Silva, N. Alves, P. Pascoal-Faria; Global optimization framework for solar building design. AIP Conf. Proc. 21 July 2017; 1863 (1): 520006. https://doi.org/10.1063/1.4992670
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