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

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Hits 1 to 20 of 546

_id cf2007_129
id cf2007_129
authors Mahalingam, Ganapathy
year 2007
title Discovering Computational Structures in Architecture
source Computer Aided Architectural Design Futures / 978-1-4020-6527-9 2007 [Proceedings of the 12th International Conference on Computer Aided Architectural Design Futures / 978-1-4020-6527-9] Sydney (Australia) 11–13 July 2007, pp. 129-137
summary The linkage between the worlds of Architecture, which involves the design and construction of the built environment, and Computer Technology, which involves practical applications of computation, still has a vast, as yet untapped potential. What if the implications of the linked term, ‘computer-architecture,’ are explored to reveal its full scope? This paper describes a unique method to analyze and code works of Architecture in a way that enables one to discover hidden computational structures in the works of Architecture. The case being made here is that the inherent structures of architecture may be computational structures as well.
series CAAD Futures
email
last changed 2007/07/06 12:47

_id acadia16_254
id acadia16_254
authors Sharmin, Shahida; Ahlquist, Sean
year 2016
title Knit Architecture: Exploration of Hybrid Textile Composites Through the Activation of Integrated Material Behavior
doi https://doi.org/10.52842/conf.acadia.2016.254
source ACADIA // 2016: POSTHUMAN FRONTIERS: Data, Designers, and Cognitive Machines [Proceedings of the 36th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA) ISBN 978-0-692-77095-5] Ann Arbor 27-29 October, 2016, pp. 254-259
summary The hybrid system in textile composites refers to the structural logic defined by Heino Engel, which describes a system that integrates multiple structural behaviors to achieve an equilibrium state (Engel 2007). This research explores a material system that can demonstrate a hybrid material behavior defined by the differentiated tensile and bending-active forces in a single, seamless knitted composite material. These behaviors were installed during the materialization phase and activated during the composite formation process. Here, the material formation involves two interdependent processes: 1) development of the knitted textile with integrated tensile and reinforced materials and 2) development of the composite by applying pre-stress and vacuuming the localized area with reinforcements in a consistent resin-based matrix. The flat bed industrial weft knitting machine has been utilized to develop the knitted textile component of the system with a controlled knit structure. This enables us to control the material types, densities, and cross sections with integrated multiple layers/ribs and thus, the performance of the textile at the scale of fiber structure. Both of these aspects were researched in parallel, using physical and computational methods informed and shaped by the potentials and constraints of each other. A series of studies has been utilized to develop small-scale prototypes that depict the potential of the hybrid textile composite as the generator of complex form and bending active structures. Ultimately, it indicates the possibilities of hybrid textile composite materials as self-structuring lightweight components that can perform as highly articulated and differentiated seamless architectural elements that are capable of transforming the perception of light, space, and touch.
keywords form-finding, programmable materials, composite forming processes, embedded responsiveness
series ACADIA
type paper
email
last changed 2022/06/07 07:56

_id caadria2007_049
id caadria2007_049
authors Singh, Vishal; John S. Gero
year 2007
title Computational Modeling of Temporary Design Teams
doi https://doi.org/10.52842/conf.caadria.2007.x.b6s
source CAADRIA 2007 [Proceedings of the 12th International Conference on Computer Aided Architectural Design Research in Asia] Nanjing (China) 19-21 April 2007
summary This paper presents a framework for a computational model of temporary design teams (TDTs). The framework is based on the situated Function-Behaviour-Structure (FBS) ontology, which is used to describe the different aspects of a TDT. This paper demonstrates how TDTs can be represented and reasoned about in terms of the FBS variables. A situated social agent’s architecture is introduced. At the agent level the social attributes that are considered include agent’s motivation, threshold point, attitude and beliefs. This agent is built on the idea of constructive memory. Constructive memory gives the situated agent the ability to adapt to the changing environment, which in this case is the team structure, team goals, and the other agents. This allows the framework to be used for studying the social aspects of changing team structures and team composition, which are characteristic of TDTs and the changing work culture that are facilitated by improved communication and IT tools. This research aims to lay the computational foundation for a means of studying temporary design team behaviour.
series CAADRIA
email
last changed 2022/06/07 07:50

_id ecaade2007_010
id ecaade2007_010
authors Artopoulos, Giorgos; Kourtis, Lampros
year 2007
title The House of Affects Project
doi https://doi.org/10.52842/conf.ecaade.2007.777
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 777-784
summary The House of Affects is an experimental installation to be part of the PerFormaSpace project pursued at the University of Cambridge, UK (DIGIS) and Goldsmiths College London, U.C.L. (Digital Studios), currently partially funded by Arts&Business East 2006, in collaboration with Econavate, UK who will provide their technical expertise in fabrication using recycled materials. This paper presents project-specific information and theoretical discussion on the design process and the computational methods used to develop advanced adaptive structural components in relationship to behavioral goals, criteria and constraints.
keywords Optimization, computational architecture, architectonics, adaptability
series eCAADe
email
last changed 2022/06/07 07:54

_id ecaade2007_213
id ecaade2007_213
authors Correia, José; Romão, Luís
year 2007
title Extended Perspective System
doi https://doi.org/10.52842/conf.ecaade.2007.185
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 185-192
summary This paper presents a new system of graphical representation, which has been given a provisional name: Extended Perspective System - EPS. It results from a systemic approach to the issue of perspective, sustained by several years of academic research and pedagogical experience with architecture students. The EPS aims to be a global and unified perspective system, gathering the current autonomous perspective systems and turning them into particular states of a broader conceptual framework. Through the use of in-built specific operations, which become particularly effective in a computational environment, the EPS creates and contains an unlimited set of in-between new states, which can also be considered legitimate and particular perspective systems. Considerations of its potential role in architectural descriptive drawing are discussed.
keywords Linear perspective, curvilinear perspective, graphical representation, conceptual drawing, visual perception
series eCAADe
email
last changed 2022/06/07 07:56

_id ascaad2007_014
id ascaad2007_014
authors Dritsas, S. and E. Rafailaki
year 2007
title A Computational Framework for Theater Design
source Em‘body’ing Virtual Architecture: The Third International Conference of the Arab Society for Computer Aided Architectural Design (ASCAAD 2007), 28-30 November 2007, Alexandria, Egypt, pp. 165-182
summary This paper presents the results of an ongoing research on computational methods for the design of theatrical spaces. We demonstrate a systemic approach to design supported by a set of digital tools implemented for assisting the process. The primary purpose of the framework is to establish a formal basis for expressing and exploring explicit design criteria. At this stage the framework enables us to metrically access a range of design metrics that traditionally have been addressed through primarily architectural narrative. Moreover, our method strives in establishing a background where knowledge can be explicitly encoded and the results of analytical methods can be additively employed. In the future, the framework will assist as the platform for experimenting with generative or query-based design processes empowered by computation. We structured this paper / framework around three conceptual units: (a) a design intent toolkit assisting the processes of rapidly generating theater configurations; (b) an analytical system that evaluates a range of design metrics centered about aspects of visual comfort; and (c) a post-processing and visualization unit that binds the design metrics with existing data / studies and provide a range of representation methods. Overall, the methodology adopts existing knowledge in theatrical design, challenges traditional ideas of understanding the theater and proposes methods for evaluating its architectural performance. The conclusions focus on highlighting both the limitations and the potential of our system in the process of theater design. We also extend outside the boundaries of the current research into a brief discussion on the methodological impact of digital technology in architectural research. Finally we propose areas of future research and development.
series ASCAAD
email
last changed 2008/01/21 22:00

_id acadia07_056
id acadia07_056
authors Dritsas, Stylianos; Becker, Mirco
year 2007
title Research & Design in Shifting from Analog to Digital
doi https://doi.org/10.52842/conf.acadia.2007.056
source Expanding Bodies: Art • Cities• Environment [Proceedings of the 27th Annual Conference of the Association for Computer Aided Design in Architecture / ISBN 978-0-9780978-6-8] Halifax (Nova Scotia) 1-7 October 2007, 56-65
summary In this paper we track the evolution of computational design from its analog origins to its contemporary digital regime. Our long term goal is to qualify and quantify the implications of digital computation on design thinking and its influence on the architectural practice. Meanwhile, we present the results of our past few years of collaborative research in design and computation that illustrate the nature of the intellectual engagement required for appreciating the potential of digital design thinking and making. In a temporal frame, these results are expressed as a constellation of punctuated innovations emerging sporadically during the painstaking process of tackling architectural problems using digital means. In the long run, they hopefully amount to an approach to fleshing out a paradigm shift from analog to digital and building a knowledge foundation of architectural methods.
series ACADIA
email
last changed 2022/06/07 07:55

_id caadria2019_663
id caadria2019_663
authors Gaudilliere, Nadja
year 2019
title Towards an History of Computational Tools in Automated Architectural Design - The Seroussi Pavilion Competition as a Case Study
doi https://doi.org/10.52842/conf.caadria.2019.2.581
source M. Haeusler, M. A. Schnabel, T. Fukuda (eds.), Intelligent & Informed - Proceedings of the 24th CAADRIA Conference - Volume 2, Victoria University of Wellington, Wellington, New Zealand, 15-18 April 2019, pp. 581-590
summary The present research proposes a method to analyse computational tools at the architect's disposal and the potential technical bias they induce in architectural design. Six case studies will be used as a demonstration of the method's ability to highlight those biases and how architects and designers manipulate those tools to translate their architectural expertise into algorithmic design. Those case studies are the six answers to the Seroussi Pavilion competition, organized in 2007 by Natalie Seroussi, a Parisian gallery owner. Having a keen interest into computational design, she invited six architectural practices specializing in this field. As the six case studies answer the same design brief, it represents a particularly suitable opportunity to analyse the intricate relationship between architectural constraints, their translation into computational data and instructions and the programming tools used to do so. Through the analysis of four different aspects of the project - algorithmic tools/method, computational set-up, organizational chart and architectural design - several issues of the computational turn in architecture are discussed.
keywords digital heritage; computational design tools; architectural constraints; programming-based spatial design; Seroussi pavilion competition
series CAADRIA
email
last changed 2022/06/07 07:51

_id acadia07_066
id acadia07_066
authors Gün, Onur Yüce ; Wallin, Nicholas J.
year 2007
title Composing the Bits of Surfaces in Architectural Practice
doi https://doi.org/10.52842/conf.acadia.2007.066
source Expanding Bodies: Art • Cities• Environment [Proceedings of the 27th Annual Conference of the Association for Computer Aided Design in Architecture / ISBN 978-0-9780978-6-8] Halifax (Nova Scotia) 1-7 October 2007, 66-73
summary Emergent design tools, with enhanced modeling and parametric manipulation capabilities, are encouraging the exploration of new geometric typologies in the field of architecture. Designers are not only finding more opportunities to work with geometries of higher complexities but are also becoming able to manipulate their designs with simple formulations. After a decade of familiarity with free form modeling tools, architects must now become more aware of the critical relationship between design and construction. When a design is performed without taking the constraints of construction into account the inefficient method of geometric post-rationalization becomes necessary. Thus, the knowledge of the rationale should be applied from the very beginning of the design processes, and digital models should be informed and controlled while being developed. This paper will present analytical strategies and methods for working with nonstandard geometries in a geometrically and parametrically controlled environment. Each method is supported with custom scripts which run in both parametric and non-parametric computer aided design (CAD) platforms. Each script and method is manipulated for the next project and the computational tools created build up a library of surface generation, manipulation, and subdivision tools. This library later becomes a source for office-wide use of surface manipulation.
series ACADIA
email
last changed 2022/06/07 07:49

_id ecaade2007_009
id ecaade2007_009
authors Gün, Onur Yüce
year 2007
title Composing the Bits of Surfaces in Architectural Practice
doi https://doi.org/10.52842/conf.ecaade.2007.859
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 859-868
summary Emergent design tools; with enhanced modeling and parametric manipulation capabilities are encouraging the exploration of new geometric typologies in the field of architecture. Designers are not only finding more opportunities to work with geometries of higher complexities but also becoming able to update their designs with simple formulations. After a decade of proximity with free form modeling tools, architects now have to become more aware of the critical relationship of design and construction. When the design is performed without taking the constraints of the construction the inefficient method of geometric post-rationalization unavoidably has to take place. So, the knowledge of the rationale should be applied from the very beginning of the design processes, and the digital models should be informed and controlled while being developed. This paper will present analytical strategies and methods developed for working with non-standard geometries in a geometrically and parametrically controlled environment. Each method is supported with custom scripts which run in both parametric and non-parametric computer aided design (CAD) platforms. Each script and method is manipulated for the next project over time and the computational tools created build up a library of surface generation, manipulation and subdivision tools.
keywords Parametric, surface, construction, Generative Components, Rhino Script
series eCAADe
email
last changed 2022/06/07 07:50

_id sigradi2007_af15
id sigradi2007_af15
authors Herrera Polo, Pablo C.
year 2007
title Computational Design Solutions in architectural education: The use of script language to design complex surfaces [Solución de problemas relacionados al diseño de superficies complejas: Experiencia de programación en la educación del arquitecto]
source SIGraDi 2007 - [Proceedings of the 11th Iberoamerican Congress of Digital Graphics] México D.F. - México 23-25 October 2007, pp. 97-101
summary In this paper, the author explains why architects who know how to use scripts have an advantage over the ones who just know how to manipulate a specific software. The reason behind this affirmation is that knowing how to program frees the architect from the rules and language of the interactive software. To prove his point, the author organized two workshops where students at the school of architecture learned to use Rhinoscript. The students didn't create a new interface, but used an existing one. They adapted the program (Rhino) to a design problem they had formulated at the beginning of the workshop. Students could have also used MaxScript (3DS Max) and MelScript (Maya).
keywords Script language; Rhino; Architectural education; complex surfaces; Digital Design Fabrication Group
series SIGRADI
email
last changed 2016/03/10 09:53

_id ecaade2007_177
id ecaade2007_177
authors Kaijima, Sawako; Michalatos, Panagiotis
year 2007
title Discretization of Continuous Surfaces as a Design Concern
doi https://doi.org/10.52842/conf.ecaade.2007.901
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 901-908
summary The increasing trend in architecture to create unconventional forms opened up a new area of investigations in the employment of computational methods in design and construction. Our investigation is undertaken within a structural engineering firm, Adams Kara Taylor and focuses on finding ways to design structural solutions that respect criteria of efficiency, architectural intentions as well as intrinsic properties of the geometry. In this paper, we present various approaches on discretization where a project is presented as a continuous form, envelope or skin that must be subsequently subdivided in order to yield a framing or cladding solution compatible with different manufacturing, design and engineering considerations. The first part of this paper illustrates such a project where we applied and developed one of our discretization approaches. The second part of the paper focuses on generalization where we present a series of methodologies and corresponding software tools developed for the purpose.
keywords Discretization, framing solution, structural analysis
series eCAADe
email
last changed 2022/06/07 07:52

_id sigradi2008_175
id sigradi2008_175
authors Knight, Terry; Larry Sass, Kenfield Griffith, Ayodh Vasant Kamath
year 2008
title Visual-Physical Grammars
source SIGraDi 2008 - [Proceedings of the 12th Iberoamerican Congress of Digital Graphics] La Habana - Cuba 1-5 December 2008
summary This paper introduces new visual-physical design grammars for the design and manufacture of building assembly systems that provide visually rich, culturally resonant design variations for housing. The building systems are intended to be tailored for particular cultures and communities by incorporating vernacular, decorative design into the assembly design. Two complementary areas of computational design research are brought together in this work: shape grammars and digital fabrication. The visual or graphic aspects of the research are explored through shape grammars. The physical design and manufacturing aspects are explored through advanced digital design and fabrication technologies and, in particular, build on recent work on mono-material assemblies with interlocking components that can be fabricated with CNC machines and assembled easily by hand on-site (Sass, 2007). This paper describes the initial, proof-of-concept stage of this work: the development of an automated, visual-physical grammar for an assembly system based on a vernacular language of Greek meander designs. A shape grammar for the two-dimensional Greek meander language (Knight, 1986) was translated into a three-dimensional assembly system. The components of the system are uniquely designed, concrete “meander bricks” (Figure 1). The components have integrated alignment features so that they can be easily fitted and locked together manually without binding materials. Components interlock horizontally to form courses, and courses interlock vertically in different ways to produce a visual variety of meander walls. The assembly components were prototyped at desktop scale with a layered manufacturing machine to test their appearance after assembly and their potential for design variations (Figure 2). Components were then evaluated as full-scale concrete objects for satisfaction of physical constraints related to concrete forming and component strength. The automated grammar (computer program) for this system generates assembly design variations with complete CAD/CAM data for fabrication of components formed from layered, CNC cut molds. Using the grammar, a full-scale mockup of a corner wall section was constructed to assess the structural, material, and aesthetic feasibility of the system, as well as ease of assembly. The results of this study demonstrate clearly the potentials for embedding visual properties in structural systems. They provide the foundations for further work on assembly systems for complete houses and other small-scale structures, and grammars to generate them. In the long-term, this research will lead to new solutions for economical, easily manufactured housing which is especially critical in developing countries and for post-disaster environments. These new housing solutions will not only provide shelter but will also support important cultural values through the integration of familiar visual design features. The use of inexpensive, portable digital design and fabrication technologies will allow local communities to be active, cooperative participants in the design and construction of their homes. Beyond the specific context of housing, visual-physical grammars have the potential to positively impact design and manufacture of designed artifacts at many scales, and in many domains, particularly for artifacts where visual aesthetics need to be considered jointly with physical or material requirements and design customization or variation is important.
keywords Shape grammar, digital fabrication, building assembly, mass customization, housing
series SIGRADI
email
last changed 2016/03/10 09:54

_id ascaad2007_003
id ascaad2007_003
authors Lee S. and Ö. Akin
year 2007
title The development of an augmented reality-based user interface to support maintenance fieldwork
source Em‘body’ing Virtual Architecture: The Third International Conference of the Arab Society for Computer Aided Architectural Design (ASCAAD 2007), 28-30 November 2007, Alexandria, Egypt, pp. 35-42
summary This paper discusses computational support for the maintenance of Mechanical, Electrical, and Plumbing (MEP) systems to more effectively use maintenance information. A common cause of inefficient and ineffective maintenance has been the difficulty in getting reliable, just-in-time information for in-situ maintenance work. To reduce this inefficiency in the maintenance environment, accessibility and accuracy of maintenance information must be improved. Our approach, therefore, is the development of a user interface that will produce superimposed computer graphics of equipment/facility-specific maintenance information onto a live video stream on portable computing devices, such as laptops and PDAs. This paper concentrates on elicitation of primary functions needed to support various maintenance activities as well as a prototype application being developed for the approach.
series ASCAAD
email
last changed 2008/01/21 22:00

_id sigradi2007_af88
id sigradi2007_af88
authors Medero Rocha, Isabel Amalia
year 2007
title ZOOM IN/ZOOM OUT - Architectural Scale in the Visualization and Representation of Architecture [ZOOM IN/ZOOM OUT - Escala arquitetônica na visualização e representação da arquitetura]
source SIGraDi 2007 - [Proceedings of the 11th Iberoamerican Congress of Digital Graphics] México D.F. - México 23-25 October 2007, pp. 102-106
summary The generation of ideas and the development of architectural design are affected by the actions of graphic software computer operators. This study is focused on the ZOOM instruction of CAD softwares as one of these operators, in an analogy to the concept of Architectural Scale. The terms ZOOM IN / ZOOM OUT were first used by us in 1998 in a methodology proposal developed in a MSc thesis – The Design Process in the Computer Environment – An Analogy between Computer and Design Operators, and subsequently implemented in a virtual design workshop, with the aim to use computer tools in the development of architectural knowledge.
keywords Design process; Computational commands; Architectural scale
series SIGRADI
email
last changed 2016/03/10 09:55

_id ascaad2007_057
id ascaad2007_057
authors Menges, A.
year 2007
title Computational Morphogenesis: Integral Form Generation and Materialization Processes
source Em‘body’ing Virtual Architecture: The Third International Conference of the Arab Society for Computer Aided Architectural Design (ASCAAD 2007), 28-30 November 2007, Alexandria, Egypt, pp. 725-744
summary Natural morphogenesis, the process of evolutionary development and growth, derives polymorphic systems that obtain their complex form, organisation and versatility from the interaction of system intrinsic material capacities and external environmental influences and forces. One striking aspect of natural morphogenesis is that formation and materialisation processes are always inherently and inseparably related. In stark contrast to these integral development processes of material form, architecture as a material practice is mainly based on design approaches that are characterised by a hierarchical relationship that prioritises the definition and generation of form over its subsequent materialisation. This paper will present an alternative approach to design that entails unfolding morphological complexity and performative capacity without differentiating between form generation and materialisation processes. Based on an understanding of material systems not as derivatives of standardized building systems and elements but rather as generative drivers in the design process this approach seeks to develop and employ computational techniques and digital fabrication technologies to unfold innate material capacity and specific latent gestalt. Extending the concept of material systems by embedding their material characteristics, geometric behaviour, manufacturing constraints and assembly logics within integral computational models promotes an understanding of form, material and structure not as separate elements, but rather as complex interrelations in polymorphic systems resulting from the response to varied input and environmental influences and derived through the logics and constraints of advanced manufacturing processes. These processes will be explained along 8 research projects.
series ASCAAD
email
last changed 2008/01/21 22:00

_id ecaade2017_265
id ecaade2017_265
authors Motalebi, Nasim and Duarte, José Pinto
year 2017
title A Shape Grammar of Emotional Postures - An approach towards encoding the analogue qualities of bodily expressions of emotions
doi https://doi.org/10.52842/conf.ecaade.2017.2.485
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. 485-492
summary This paper is concerned with the translation of analogue qualities of human emotions into digital readings. Human body postures are considered as one of the main behavioral conduits for non-verbal communication and emotional expressions (Shan et.al., 2007). This research is the first step towards identifying and detecting emotions through posture analysis of users moving through space; leading towards generating real time responses in the form of spatial configurations to users' emotions. Such spatial configurations would then help inhabitants reach certain emotional states that would enhance their life quality. In order to achieve this goal, we propose a methodology for developing a comprehensive shape grammar algorithm that could evaluate and predict bodily expressions of emotions. The importance of this study lies under the embodied interactions (Streech et.al., 2011) in space. As the circumfixed space impacts the embodied mind, the body impacts its surrounding including the architectural space.
keywords Shape Grammar; Computation; Emotion; Posture; Interactive Architecture
series eCAADe
email
last changed 2022/06/07 07:58

_id ecaade2007_228
id ecaade2007_228
authors Pupo, Regiane; Celani, Gabriela
year 2007
title Trends in Graduate Research on IT & Architecture: a Qualitative Comparison of Tendencies in Brazil and abroad
doi https://doi.org/10.52842/conf.ecaade.2007.431
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 431-437
summary Applications of information technology (IT) in the architectural profession have greatly increased in the past decades, ranging nowadays from concept design to automated construction. There are countless applications in the architecture practice that go well beyond representation, such as BIM software, generative design systems, and rapid prototyping and fabrication. For this reason, IT has been a frequent graduate research topic. In the present research academic graduate theses that dealt with IT in architecture since 1999 were surveyed and categorized, with the purpose of comparing the topics, applications and methods that are studied in Brazil and abroad. We hope that the differences found will help Brazilian architecture schools to update their IT curriculum, overcoming old prejudices against the use of computers in the creative phases of design.
keywords Information technology, architectural design, design process, design education, computational design, CAD
series eCAADe
email
last changed 2022/06/07 08:00

_id caadria2007_309
id caadria2007_309
authors Schoch, Odilo
year 2007
title The Categorisation of Data from Smart Buildings for a positive Sustainable Application
doi https://doi.org/10.52842/conf.caadria.2007.x.h3i
source CAADRIA 2007 [Proceedings of the 12th International Conference on Computer Aided Architectural Design Research in Asia] Nanjing (China) 19-21 April 2007
summary This paper describes an architecture oriented approach of a categorization of information in so called computer integrated buildings (CIB). It follows an approach which seeks for the suitability of information categorization in order to achieve an energetically sustainable operation of CIBs. The CIB and its environment may exist as physical objects or as a simulation. The underlying question of this paper is: how can data of high temporal and spatial density be made accessible within a CIB with the goal of quickly delivering the most suitable answers for a specifical application. The subtitle „Google™ in the House“ was chosen due to the achievable relation of a model with simple user interfaces, extendable pre-valuable data basis and high quality answers is being developed. The model’s foundation is the potential of any built context that it is very easy to position data in physical space by adding its position by Cartesian coordinates. This architectural way of pre-sorting data is defined as logical arranging. Further on, known mechanisms of information retrieving and mapping are added to the model. A preliminarily summary concludes that energetically sustainable operations are backed through means of computational categorization models.
series CAADRIA
email
last changed 2022/06/07 07:50

_id ecaade2007_115
id ecaade2007_115
authors Seifried, Philipp; Hoog, Jochen; Falkner, Christoph
year 2007
title Teaching 3D Generative Virtual Architecture with VIPA CONSTRICTOR
doi https://doi.org/10.52842/conf.ecaade.2007.751
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 751-756
summary CONSTRICTOR is a novel teaching and learning tool to introduce students of architecture to the fundamentals of computational design. It was developed within an EC funded e-learning project, VIPA (Virtual campus for virtual space design Provided for European Architects). In this paper, we describe the general structure and technology of CONSTRICTOR and its application within the course “Synthetic Constructions II”) that aims at familiarizing students with concepts like cellular automata, swarms, shape grammars, path finding etc. CONSTRICTOR allows students to observe simulations, navigate through them and change the parameters that define and control them, thereby developing an understanding for the rules that govern their virtual environments. They can also change the geometry used in the simulations and work with and export their results. Students can modify the simulations at code level, combine them or write entirely new simulations. Finally some of the student work performed during and after the course is described, and an outlook for future work and further developments around the VIPA courses and the constrictor software will be given.
keywords Blender, generative design, learning platform, virtual space design
series eCAADe
email
last changed 2022/06/07 07:56

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