id |
ecaade2017_195 |
authors |
Collins, Jeffrey and Gentry, Russell |
year |
2017 |
title |
KBAD - Knowledge Base for Architectural Detailing |
doi |
https://doi.org/10.52842/conf.ecaade.2017.2.657
|
source |
Fioravanti, A, Cursi, S, Elahmar, S, Gargaro, S, Loffreda, G, Novembri, G, Trento, A (eds.), ShoCK! - Sharing Computational Knowledge! - Proceedings of the 35th eCAADe Conference - Volume 2, Sapienza University of Rome, Rome, Italy, 20-22 September 2017, pp. 657-666 |
summary |
This paper examines the current state of the conventional Design-Bid-Build project, wherein design intentions are manually translated to construction directives by subcontractors based on industry-specific details. This process exacerbates a dilemma in design and construction; that often the designer may be unaware of certain details that are involved in fabricating and assembling building components. Research for Knowledge Base for Architectural Detailing (KBAD) proposes a system that takes advantage of current CAD software and programming language, bringing together the information provided by and important to the design team with the data required by the subcontractor to accurately produce architectural components, during the design phases of a project. The trade of architectural precast concrete is used to demonstrate the potential of such a system. Solid modeling, visual scripting, and programming language techniques working towards KBAD are described. Possible variations of architectural precast concrete panels, detailed with window openings, reveals, and embed plates, are presented. |
keywords |
BIM; HCI; Collaboration |
series |
eCAADe |
email |
|
full text |
file.pdf (5,695,590 bytes) |
references |
Content-type: text/plain
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Afsari, K (2016)
Consolidated exchange models for implementing precast concrete model view definition
, 33rd International Symposium on Automation and Robotics in Construction
|
|
|
|
Burry, M (2002)
Rapid prototyping, CAD/CAM and human factors
, Automation in Construction, 11, pp. 313-333
|
|
|
|
Collins, J (2016)
Incorporating BIM into Architectural Precast Concrete Fabrication
, 33rd International Symposium on Automation and Robotics in Construction
|
|
|
|
Eastman, C, Teicholz, P, Sacks, R and Liston, K (2011)
BIM Handbook: A Guide to Building Information Modeling for Owners, Managers, Designers, Engineers and Contractors
, Wiley
|
|
|
|
Gane, V and Haymaker, J (2012)
Design Scenarios: Enabling transparent parametric design spaces
, Advanced Engineering Informatics, 26, pp. 618-640
|
|
|
|
Gentry, R, Sherif, S, Cavieres, A and Biggs, D (2016)
BIM schema for masonry units and walls
, 16th International Brick and Block Masonry Conference, pp. 629-635
|
|
|
|
Goel, A (2015)
Geometry, Drawings, Visual Thinking and Imagery: Towards a Visual Turing Test of Machine Intelligence
, AAAI Workshop on Beyond the Turing Test
|
|
|
|
Khan, L (1961)
Form and Design
, Architectural Design Magazine, 31, p. (Originally recorded "Voice of America - Louis I. Kahn." November 19, 1960)
|
|
|
|
Loukissas, Y (2012)
Co-Designers: Cultures of Computer Simulation in Architecture
, Rutledge
|
|
|
|
Mitchell, W (1990)
The Logic of Architecture: Design, Computation, and Cognition
, The MIT Press
|
|
|
|
Pyburn, J (2008)
The Role of Precast Concrete Technology in Post War Building Construction
, Docomomo US, Restoring Postwar Heritage, Preservation Technology, 8, pp. 75-80
|
|
|
|
Sacks, R, Eastman, C and Lee, G (2004)
Parametric 3D Modeling in Building Construction with Examples from Precast Concrete
, Automation in Construction, 13, pp. 291-312
|
|
|
|
Shelden, D (2014)
Information, Complexity and the Detail
, Garcia, M (eds), Architectural Design: Future Details of Architecture, Wiley
|
|
|
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last changed |
2022/06/07 07:56 |
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