Details

ISBN/EAN: 978-3-659-39567-3
Einband: kartoniertes Buch
Weitere Details
Auflage:
1. Auflage 2015
Erschienen am:
Sprache:
English
Umfang:
568 S.
Format (T/L/B):
3.5 x 22 x 15 cm

Hersteller:
OmniScriptum SRL
info@omniscriptum.com
Str. Armeneasca 28/1, office 1
MD 2012 Chisinau


Weitere Details arrow_forward_ios

Constructing Design Concepts

A computational approach to the synthesis of architectural form

379,60 €

Lieferbar innerhalb 1 - 2 Wochen

Beschreibung

Designers refer to "concepts" as manifold relationships framing original design possibilities. Concepts - verbal or schematic - are economical and inclusive means towards the application of a particular order. This study offers a computational account of the use of concepts in creative design. Shape formalism - a computational theory introduced by Stiny and Gipps - is used to map the role of design concepts. Shape formalism engages a calculating part and a syntactic-interpretive part. The calculating part consists of shape algebras where the elements of Euclidean space are used in calculations. The syntactic-interpretive part consists of production rules confining the syntactic and semantic properties of sets of products, called languages. The disposition of the designer is freely associated here to that of a speaker. A speaker has to conform to the conventions of an existing mode of expression, a language, but also has to be original. The speaker constructs verbal arguments to produce a response in an audience by satisfying logical premises. The designer constructs spatial arguments to produce a response in a group of users by satisfying performative, aesthetic, or other premises.

Über Sotirios D Kotsopoulos

Sotirios D. Kotsopoulos examines the impact of computational procedural thinking in design theory and practice. He uses formal-generative means like shape algebras and rule schemata to reveal the constructive associations of form, structure, and performance from a computational point of view. He holds a PhD in Design & Computation received from MIT.