CumInCAD is a Cumulative Index about publications in Computer Aided Architectural Design
supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

PDF papers
References

Hits 1 to 3 of 3

_id 675c
authors Koutamanis, A., Bridges, A.H. and Van Loon, P.P.
year 1993
title A New Framework for Teaching Computer-Aided Design at the Faculty of Architecture, Delft University of Technology
source [eCAADe Conference Proceedings] Eindhoven (The Netherlands) 11-13 November 1993
doi https://doi.org/10.52842/conf.ecaade.1993.x.t4h
summary The paper describes the new organization of computer-aided design courses at the Faculty of Architecture, Delft University of Technology. The main characteristics of the new organization are emphasis on both technical skills and methodical knowledge, and a wide spectrum of subjects and applications distributed in the thematic structure of the first and second years. As a representative of the new courses the paper outlines Schematic Design, the first computer course in the second year.
series eCAADe
email
last changed 2022/06/07 07:50

_id ddss9202
id ddss9202
authors Koutamanis, A. and Mitossi, V.
year 1993
title Architectural computer vision: Automated recognition of architectural drawings
source Timmermans, Harry (Ed.), Design and Decision Support Systems in Architecture (Proceedings of a conference held in Mierlo, the Netherlands in July 1992), ISBN 0-7923-2444-7
summary Computer vision offers the ability to transform digitized drawings into documents that can be used with computer systems. Recognition of digitized drawings can occur at the levels of (a) geometric elements, (b) building elements, and (c) spatial articulation. The last two levels apply not only to digitized images but also to computer-produced ones. The enormous burden placed on the user for inputting and manipulating CAD drawings suggests that automated recognition can add to the capabilities of CAD by making the computer more flexible with respect to inputting design information and more responsive to the actual concerns of the designer.
series DDSS
last changed 2003/08/07 16:36

_id cd30
authors Koutamanis, Alexander
year 1993
title On the Correlation of Design and Computational Techniques in Architectural Education
source [eCAADe Conference Proceedings] Eindhoven (The Netherlands) 11-13 November 1993
doi https://doi.org/10.52842/conf.ecaade.1993.x.g6i
summary Many studies employ analyses of human intelligence as justification or guideline for the development of machine intelligence. The main benefit brought on by such studies has been the improvement of our understanding of both human and machine intelligence. In teaching architecture with computers the same approach can make explicit design techniques architects use by means of equivalent or similar computational techniques. Explicitation of design techniques leads to a better understanding of architects' activities, as well as to which computer tools can offer automated support to these activities. In the curriculum of the Faculty of Architecture, Delft University of Technology, relations and correspondences between computational and design techniques form a major underlying theme in computer-aided design courses. The purposes of this theme are (i) comprehension of the computational structure of a computer design tool, and (ii) explanation of how such computational structures relate to architectural design. (correspondences between the computational principles of computer programs and design techniques are instrumental in defining the scope of each computer tool in architectural design while improving the students' understanding of architectural design as a cognitive process and thus promoting automation as a natural extension of established conventional practices. The paper outlines the correlation of computational and design techniques in the case of electronic spreadsheets. Spreadsheets are introduced through a thorough presentation of the various kinds and aspects of constraint propagation, their underlying computational principle. Numerical constraint propagation is explained by means of spreadsheet applications for simple numerical calculations. Symbolic constraint propagation is presented in the framework of machine perception. Both forms are then linked to architectural design through parametric design and the recognition of spaces in floor plans. Exercises linked to spreadsheets and constraint propagation include the parametric calculation of stairs and making parametric variations of a building on the basis of floor area calculations.

series eCAADe
email
more http://caad.bk.tudelft.nl/koutamanis/
last changed 2022/06/07 07:50

No more hits.

HOMELOGIN (you are user _anon_535171 from group guest) CUMINCAD Papers Powered by SciX Open Publishing Services 1.002