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 556

_id ecaade2007_088
id ecaade2007_088
authors Bechthold, Martin
year 2007
title Teaching Technology: CAD/CAM, Parametric Design and Interactivity
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 767-775
doi https://doi.org/10.52842/conf.ecaade.2007.767
summary The paper discusses a project-based approach to technology teaching, and examines the case of the mobile information unit (MIU) for Harvard University and its art museums. A student competition was held to explore design alternatives for this unit. The winning entry proposed an interactive, pixilated fiber-optics display as well as touch screens. Parametric digital modeling was used in the design and design development of the scheme. Research included the study of structural alternatives, fabrication methods and the modes of interaction between users and the MIU.
keywords Computer-aided design and manufacturing, fabrication, simulation, prototype, fiber optics
series eCAADe
email
last changed 2022/06/07 07:54

_id ascaad2007_036
id ascaad2007_036
authors Pratini, E.F.
year 2007
title Experimental Tools for the Teaching of Technical Graphics and Improving Visualization
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. 457-468
summary This paper presents an updated evaluation of an experience of applying computer graphics, virtual reality and Internet resources in the teaching of technical graphics at the University of Brasilia, Brazil. It differs from a previous paper (Pratini, 2004) for the addition of an overview of the course, the context and the new teaching methodology. It is an extended, more detailed paper, which includes examples, and closes with some results of surveys on the didactic material and the methodology. Our motivation for this experiment is the fact that most of the students have a lack of previous knowledge on the basis of drawings, resulting difficulties in both understanding and visualizing technical drawings. In this experiment, we introduced VRML 3D modeling in addition to CAD and regular pencil-and-paper drawings study and practice. To support the learning of this broad knowledge not present in the technical graphics bibliography, we first provided a website with animations and virtual reality resources. Since 2003 we are providing a CD-ROM containing all the former website material which is updated each semester. At the present time, the CD-ROM contains almost all the needed didactic material and software for the one semester technical graphics course. This experience was intended to improve and to support learning in a way that motivates the students, young people who are used to play video and computer games. Classes, website and CD-ROM material were conceived to take advantage of computers´ interactivity and animated resources. The use of computers´ technology and new media to support the learning resulted a new methodology and several new unanswered questions.
series ASCAAD
email
last changed 2008/01/21 22:00

_id caadria2007_329
id caadria2007_329
authors Jacobs, Zhya
year 2007
title Capturing the Infinite: Bottom up CAD - CAM Technology for Regenerative Development
source CAADRIA 2007 [Proceedings of the 12th International Conference on Computer Aided Architectural Design Research in Asia] Nanjing (China) 19-21 April 2007
doi https://doi.org/10.52842/conf.caadria.2007.x.b0l
summary In most design practices there is a division between the generation of information to describe buildings and the production of information to construct them. Today architects are in charge of the design of the building (aesthetics) while the contractor is accountable for the means of construction (tectonics). The advent of digital technologies within the field of architecture however has begun to cause and will continue to cause fundamental changes within the AEC industry. The Paper describes a possible scenario where a Bottom – Up, part to whole approach to architecture can be adopted using the freedom afforded by Parametric Design within the CAD-CAM environment. This approach is explored through the design of a smart block in concrete that is integrated into a wall system.
series CAADRIA
email
last changed 2022/06/07 07:50

_id ascaad2007_027
id ascaad2007_027
authors Villalon, R. and J. Lobel
year 2007
title Materializing Design: contemporary issues in the use of cad/cam technology in the architectural design and fabrication process
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. 317-326
summary While the ability to produce and quantify design and fabrication information has been greatly enhanced by advances in CAD/CAM technology over the last several decades, a practical link between what can be modelled virtually and what can be built physically has yet to be realized. The process of parsing complex design information and translating it into a format that can be utilized by those responsible for its fabrication is a many-stepped process, in some cases made increasingly difficult by the same technology intended to simplify the process. The use of CAD/CAM technology in the architectural design process requires ongoing consideration as its use becomes increasingly pervasive in the design process. Within the context of contemporary architectural practice and discourse, what is the degree of fidelity between design information and fabrication information? How are advances in accessibility to, and the capability of CAD/CAM technologies affecting the role of the architect in the overall building process? Does CAD/CAM offer unique and undiscovered possibilities to re-associate the designer with the builder, or simply a process of more efficiently automating the design and construction process? Our work builds upon issues of the fundamental differences that CAD/CAM technologies introduce to design practices; issues that were raised at the very outset of CAD/CAM’s introduction to architectural design. Employing parametric design software, we design and construct a speculative façade system for a high-rise tower which is then fabricated at a reduced-scale with various two-axis CAM technology. We use relational and constraint-based logics in order to create models of parametric assemblies of discrete components which are translated into machine-ready formats, fabricated and re-assembled, in a process modelled on that typically followed in the construction of a real building project.
series ASCAAD
email
last changed 2008/01/21 22:00

_id ecaade2008_022
id ecaade2008_022
authors Einar Larsen, Knut; Schindler, Christoph; Scheurer, Fabian; Stori, Simen
year 2008
title The Ringve Botanical Garden Viewing Platform
source Architecture in Computro [26th eCAADe Conference Proceedings / ISBN 978-0-9541183-7-2] Antwerpen (Belgium) 17-20 September 2008, pp. 783-790
doi https://doi.org/10.52842/conf.ecaade.2008.783
summary Since 2006 the Faculty of Architecture of the Norwegian University of Science and Technology (NTNU) has organized the ‘1-2-TRE’ workshops on digital timber fabrication. The annual one-semester courses explore the possibilities and conditions of file-to-factory processes in cooperation with professional carpentries. The 2007 course focused on adding varied simple elements to a complex whole. Within a full semester course, a permanent viewing platform for the Botanical Garden of Trondheim was designed, produced and built by the participating students.
keywords Teaching project 1:1, Industry cooperation, Digital fabrication, CAD/CAM, Ringve Botanical Garden Viewing Platform
series eCAADe
email
last changed 2022/06/07 07:55

_id ascaad2007_051
id ascaad2007_051
authors Ibrahim, M.M.
year 2007
title Teaching BIM, what is missing? The challenge of integrating BIM based CAD in today’s architectural curricula
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. 651-660
summary Building Information Modeling is the technology converting the workplace in design firms around the world. Now, professionals as well as academia see the feasibility and benefits of converting to such a new technology. Therefore, it seems inevitable to start teaching BIM to architecture students. And as we keep using and depending on computers the way we are, it also seems inevitable that programming will soon become one of the core curriculum classes for architecture students. However, the same problems facing professionals in design firms are those facing academic educators in schools of architecture, but with some different aspects. The misconceptions about the reality of BIM and the lack of understanding the full potential of the applications are the common issues. Few schools have started looking at the problem of preparing their students for a career in a BIM enabled work environment. The difficulty is due partly to the novelty of the technology and partly to the dilemma of teaching one application versus teaching the technology behind it. Besides the steep learning curve there should be the early introduction to how to interact deeply with the application to edit its content. The training required for BIM based CAD should focus on the core concepts rather than the application interface and functionalities. Therefore, building a course for teaching these systems should follow a different path than with conventional CAD. The training should be tied closely to the design curriculum in the design schools. A special version with different interface might empower the user. Hence, enhancing the experience and relieving some of the concerns attached with introducing BIM in the architecture curriculum.
series ASCAAD
email
last changed 2008/01/21 22:00

_id ecaade2007_005
id ecaade2007_005
authors Larsen, Knut Einar; Scheurer, Fabian; Schindler, Christoph; Stori, Simen
year 2007
title The Trondheim Camera Obscura
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 51-58
doi https://doi.org/10.52842/conf.ecaade.2007.051
summary This paper discusses a project where we, together with a group of 15 graduate students, designed, produced, and built small timber structure (a Camera Obscura) in Trondheim, Norway. The project was part of a full semester course at the Faculty of Architecture of the Norwegian University of Science and Technology (NTNU). The main purpose of the course was to explore the possibilities of prefabrication in timber construction based on file-to-factory processes (digital fabrication). Moreover, we wished to give the students the experience of building a permanent structure in 1:1.
keywords Teaching project 1:1, industry cooperation, digital fabrication, CAD-CAM, camera obscura
series eCAADe
email
last changed 2022/06/07 07:52

_id ecaade2007_173
id ecaade2007_173
authors Matcha, Heike
year 2007
title Parametric Possibilities: Designing with Parametric Modelling
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 849-856
doi https://doi.org/10.52842/conf.ecaade.2007.849
summary We describe several projects in our ongoing research and teaching activities in the field of parametric design. The work is based on the premise that using parametric modelling and customized mass production for designing, planning and realisation, the creation of a spatially rich and varied architecture which is specific for individual programs, users and contexts is being made possible. We demonstrate this design approach by explaining three different design methodologies of various projects. The specifics and the experience of the use of various CAD software tools will be described: scriptable CAD programs like VectorWorks and CAD software with integrated parametric modelling like Unigraphics.
keywords Parametric design, generative design, mass customisation, CAAD curriculum, digital aids to design creativity
series eCAADe
email
last changed 2022/06/07 07:59

_id ecaade2007_068
id ecaade2007_068
authors Schindler, Christoph; Châtelet, Maud; Wiskemann, Barbara; Zieta, Oskar
year 2007
title Umbrella Schoolyard Roofs in Zurich
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 35-42
doi https://doi.org/10.52842/conf.ecaade.2007.035
summary The paper discusses a 1:1 student workshop on digital sheet metal fabrication organized in collaboration between ETH Zurich and the City of Zurich in 2005 and 2006. During the workshop a structure of fifteen sheet metal schoolyard roofs was designed, produced, and constructed by the participating students. The workshop was set up to explore how current academic topics such as CAD/CAM, digital fabrication with minimal tolerance, and design optimization with genetic algorithms could be incorporated in a permanent structure with legal building standards and a professional construction sequence.
keywords Teaching seminar workshop 1:1, digital sheet metal fabrication, pavilion roof structure, genetic algorithms
series eCAADe
email
last changed 2022/06/07 07:56

_id cf2009_poster_23
id cf2009_poster_23
authors Thorpe, Graham and Sam Kashuk
year 2009
title A Syncretization Of Architecture, Engineering And Science:The use of CAD technology as a pedagogical tool in the teaching of environmentally sustainable design
source T. Tidafi and T. Dorta (eds) Joining Languages Cultures and Visions: CAADFutures 2009 CD-Rom
summary Energy consumption in buildings is responsible for about 40% of Australia’s greenhouse gas emissions. It is quite feasible that the energy consumption in buildings can be halved, but energy performance analysis must be integral to the entire design process. This imperative has led the authors to propose that architecture, engineering and science should be syncretized in the design process. This syncretization shares some features of the rhizomatic approach introduced by Deleuze and Guattari (2007). In rhizomatic systems all points can be, and should be connected. A rhizome can be considered as a space that develops, not from a point but from milieux. In the expansion of a rhizome, elements of the system do not follow tracings of other elements but they form a map of new vistas. Likewise, a syncretic approach is oblivious to the traditional boundaries between architecture, engineering and science. Syncretization has the potential to enrich the intellectual lives of architects, scientists and engineers, and it would have profoundly beneficial performative benefits.
keywords Syncretic, rhizome architecture, engineering, sustainability, education
series CAAD Futures
type poster
last changed 2009/07/08 22:12

_id caadria2009_016
id caadria2009_016
authors Hemsath, Timothy L. ; Ronald Bonnstetter, Leen-Kiat Soh and Robert Williams
year 2009
title Digital CADCAM Pedagogy
source Proceedings of the 14th International Conference on Computer Aided Architectural Design Research in Asia / Yunlin (Taiwan) 22-25 April 2009, pp. 277-284
doi https://doi.org/10.52842/conf.caadria.2009.277
summary Prototype manufacturing as an educational tool has been very successful at the college level in architecture and engineering design. This paper discusses an innovative inquiry-based learning approach rather than the problem-based learning models commonly utilized by other similar programs. For example, several research-funded technology projects (e.g., Cappelleri et al. 2007) look at involving students in problembased learning exercises (e.g., building robots); however, these exercises (while providing valuable experiences) have predetermined outcomes ingrained by the teachers, the project structure, and the components used to construct the devices. Therefore, inquisitive and creative problem solving is limited to the “kit-of-parts” in their approach to solving the problem. The inquiry-based CADCAM pedagogy model is more concerned with the process of solving a problem through the vehicle of prototyping than with the specificity of the design project itself. This approach has great potential. First, the need to solve the problem drives learning on multiple levels, integrating interdisciplinary ideas into the problem and solution. Second, the problem interlocks disciplines through inquiry knowledge building in team exercises. Finally, it encourages diversity and flexibility by allowing students to look at problems from multiples perspectives and points of view.
keywords Inquiry-based education: CAD; CAM; pedagogy
series CAADRIA
email
last changed 2022/06/07 07:49

_id caadria2007_639
id caadria2007_639
authors Jinuntuya, Pinyo; Jirayod Theppipit
year 2007
title Temporary Housing Design and Planning Software for Disaster Relief Decision Support System
source CAADRIA 2007 [Proceedings of the 12th International Conference on Computer Aided Architectural Design Research in Asia] Nanjing (China) 19-21 April 2007
doi https://doi.org/10.52842/conf.caadria.2007.x.k9q
summary There is a continuous and urgent need for disaster relief in Thailand and countries suffering from floods and tsunami impact. Based on this issue, design and planning software for temporary housing project has been developed, as well as the process and guideline for implementation. This paper describes a unique coupling of interactive 3D virtual environment with parametric designing in order to manage disaster relief project more efficiently. Architects and planners can use the functionality of software on both design simulation and project evaluation aspects. We need to provide correct information to help people making decision when they are in disaster. So the disaster relief decision support system must offer proper information of crisis management focused on people, place, and process. One of the main features of software is the relationship modeling of essential factors such as number of people, houses, budget, time, and space. This automatic temporary houses generation and space planning is simulated for land use and layout plan design with cost estimation analysis. The system components were proposed to a new disaster relief system in alternative approach. Using community-based development will not cost budget but required people participation. Our software’s space coordination will start and centered from available space in school or temple with sufficient infrastructure. After essential factors are inputted, appropriated number of temporary houses, public facilities, and management guideline will be generated to support further planning decision. Our core system was developed on Java and Swing Technology, empowered by real-time 3D rendering CAD engine. In addition, “Virtools” as our Authoring Tools was applied to improve design interaction and explore rapid software prototyping. At the end, we discuss the comparison between real situations in Thailand and appropriate design standardization, which should be reconsidered how to manage crisis with the limitation of time and budget from government.
series CAADRIA
email
last changed 2022/06/07 07:50

_id bsct_kourkoutas
id bsct_kourkoutas
authors Kourkoutas, Vassilios
year 2007
title Parametric Form Finding in Contemporary Architecture
source Vienna University of Technology; Building Science & Technology
summary The search of new geometry has been during the last years an interesting subject for Contemporary Architecture. As the 21st century brought a new era for architectural design, CAD programs have evolved together with the idea of Form Finding. The possibilities offered make the collaboration of the architect with the computer now possible in terms of searching the appropriate form for given cases. As the analysis of contemporary architectural pieces has indicated, the procedure of architectural design can be semi-automated. Parametric Form Finding is transferring generative approaches into the architectural design workflow by introducing a set of rules to describe the constrains of the form. Given this context, two methods have been realized, which are guided by the user by providing basic two dimensional shapes, restrictions and form characteristics. The approach is fitted in a plug-in for the modeling environment of Rhinoceros that generates three dimensional form based on the user?s input. The methods followed are being evaluated.
keywords Parametric, Form Finding, Rhinoceros, plug-in
series thesis:MSc
type normal paper
email
more http://cec.tuwien.ac.at
last changed 2007/07/22 15:29

_id ascaad2007_035
id ascaad2007_035
authors Al-Ali, A.I.
year 2007
title Readiness for the Use of Technology for effective learning via the vds: Case of the United Arab Emirates
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. 439-456
summary Review of the literature indicated that today’s knowledge-driven economy demands a workforce equipped with complex skills and attitudes such as problem solving, meta-cognitive skills, critical thinking and lifelong learning. Such skills can be acquired if learning and teaching are guided by the constructivist and cognitive learning theories. In particular, the constructivist approach emphasises effective learning processes based on learning by doing and collaboration. This approach is congruent with use of technologies, such as Virtual Design Studio (VDS), for the purpose of architecture education in design courses, but such use is lacking in the United Arab Emirates (UAE). It is thus important to assess the extent to which the constructivist and cognitive theories are implemented in teaching design courses in the Architecture schools of the UAE. It is also important to assess the effectiveness of employing technology in general and VDS in particular in implementing these theories. The author intends to study the relationship between effective learning on one hand and using VDS in implementing the constructivist and cognitive approaches on the other hand. Thus, the author conducted a preliminary study to gain a basic understanding of the difficulties, approaches, attitudes, perceptions, and motivation related to the learning of design in architecture schools in the UAE. Second, the investigation was designed to assess the extent to which the students would be interested in the use of sophisticated technology in the teaching and learning environment in the UAE architecture education schools in order to achieve effective learning. The study has been conducted in the United Arab Emirates University (UAEU). Methodology used for this was the focus group method. In addition to the focus group interviews with the UAEU students, unstructured individual interviews with lecturers from UAEU and the American University of Sharjah (AUS) have been carried out. Data analysis showed that students were not satisfied with the current teaching methods based on traditional lectures. It was concluded that students were ready to practice effective learning of design via the intermarriage of VDS and the constructivist and cognitive approaches. An ambiguity that remained was whether students were ready for assessment methods which are consistent with the constructivist approach.
series ASCAAD
email
last changed 2008/01/21 22:00

_id ecaade2007_019
id ecaade2007_019
authors Asanowicz, Alexander
year 2007
title Evolution of CAAD Teaching Methods
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 393-399
doi https://doi.org/10.52842/conf.ecaade.2007.393
summary In this paper evolution of CAAD teaching at architectural faculties will be presented. The CAAD will be considered as one of the components of skills and knowledge needed to support Design Studio. The paper is focused on the question “How architectural design may be combined with CAD teaching?” Formulation of this question results from opinion that position of CAAD in teaching of architectural design curriculum is different than other disciplines being taught at architectural schools. Introduction of CAAD to teaching schedules unquestionably and explicitly uncovered the need for changes within the whole schedule of study. Although great number of computer equipment is used, the students are still being taught as in the XIX century. In terms of achieved results it proves ineffective. Analyses have shown that evolution of teaching methods may be divided into four stages: software teaching, “personal involvement”, “replacement” and integration.
keywords CAAD education, design curriculum
series eCAADe
email
last changed 2022/06/07 07:54

_id ijac20075406
id ijac20075406
authors Iordanova, Ivanka
year 2007
title Teaching Digital Design Exploration: Form Follows
source International Journal of Architectural Computing vol. 5 - no. 4, pp. 685-702
summary This paper presents some challenges of teaching computational geometry to architectural students, and proposes a multi-level pedagogical scheme introducing associative geometry and parametric modeling/design into architectural design education. It reports on two pedagogical experiences: one held in the context of a spatial geometry course in the first year of education; and another one, in a digital design studio with third-year architectural students. More specifically, it discusses the impact on design exploration of a library of interactive referents models introduced into the architectural studio. Situated in the 'performance' paradigm of digital design methods, they allow for design object explorations based on modification of architecturally meaningful features (structural, environmental, functional, etc.). The form of a design object can thus 'follow' function, structure, or even sustainability. The digital methods and the design knowledge transferred by the interactive models, together with their visual nature, are found to amplify the processes of 'seeing-as' and the 'reflective conversation with the situation' considered essential for creative design.
series journal
email
last changed 2008/02/25 20:30

_id caadria2007_113
id caadria2007_113
authors Li, Li; Jingwen Gu
year 2007
title Research of the Multimedia Courseware Creation System Application in Architecture Education
source CAADRIA 2007 [Proceedings of the 12th International Conference on Computer Aided Architectural Design Research in Asia] Nanjing (China) 19-21 April 2007
doi https://doi.org/10.52842/conf.caadria.2007.x.e7l
summary A new teaching model is constructed in the study, which can make students fully involved in the learning activity while keep the guidance from instructors. Compared with traditional courseware technology, it excels in following metrics:A framework to build multimedia courseware is constructed in the system, which helps instructors to customize their own courseware in a fast and convenient fashion _ The system can be used to build flexible knowledge structure and complicated information trees, which matches the practical architectural knowledge system and excels the traditional one-way flowing process_A flexible database is built within the system. The courseware created by this system can read from the database and take information out of the database at any time.
series CAADRIA
last changed 2022/06/07 07:50

_id sigradi2007_af24
id sigradi2007_af24
authors Monedero, Javier
year 2007
title Architectural eLearning: An inquiry into the fuzzy boundaries that separate education and instruction [Architectural eLearning. Una indagación sobre los límites borrosos que separan la educación y la instrucción]
source SIGraDi 2007 - [Proceedings of the 11th Iberoamerican Congress of Digital Graphics] México D.F. - México 23-25 October 2007, pp. 155-158
summary This communication is based on the development of a new subject to be imparted in collaboration with three Departments (Visual Communication, Projects and Construction) at the School of Architecture of Barcelona. It is a work that has been financed with a special grant from our university, aimed at the development of new teaching modalities and, in particular, of those that would develop the use of new technologies, collaboration among university departments and eLearning. The aim of the communication is twofold. First, to present some results that we consider valuable in themselves, as much for the techniques as for the methodology that we have used. Second, to propitiate a debate on the new situation that the teaching of architecture is moving to, due to the advance of a series of instruction methods where the methodological organization, the storing of informative material and the preparation of autonomous interactive systems, open more and more effective roads of learning but that, at the same time, point towards a new educational structure that fits badly within the traditional structures in which we have still to work daily. Regarding the first point, the main aspects to highlight are: a) the development of a selflearning system by means of a very complete series of tutorials that allow a gradual acquisition, depending on the necessities or interests of each student, of geometric modeling, parametric design, visual simulation and interactive animation techniques, b) the development of a system of general information supply and on line comments and corrections. Regarding the second point, a provisional theoretical framework has been elaborated based on the consideration of the ubiquitous visual communication media as misleading mediators of a personal relationship. This theoretical frame has been tested by a few experiences carried out with the collaboration of students implied in the project. The general conclusion is that both challenges must be faced at the same time: new educational technologies must be analysed and integrated in our curricula and a new theoretical framework, able to clarify the difference between instruction and education, must be developed in parallel with those technologies.
keywords Architecture; eLearning; Visual Communication
series SIGRADI
email
last changed 2016/03/10 09:55

_id caadria2007_511
id caadria2007_511
authors Rügemer, Jörg
year 2007
title Various Media in the Design Process and Methodology
source CAADRIA 2007 [Proceedings of the 12th International Conference on Computer Aided Architectural Design Research in Asia] Nanjing (China) 19-21 April 2007
doi https://doi.org/10.52842/conf.caadria.2007.x.t8j
summary The paper describes the mergence of traditional architectural design processes with approaches that rely on digital media and software for the creation of architectural space. The depicted projects are part of a ‘work in progress’ process, with a recent studio that is set up to apply the so far accumulated experiences. Within the projects, focus is on those design phases where the applied media and methodology is changed and where the back and forth between different media and the depth of their implementation is perceptible in, and / or has a significant influence on the design itself. Through a line of successive experiments, the paper explains the development of a possible method that utilizes a variety of today’s accessible tools in architecture, making use of phenomena that appear when changing from one tool to another. Goal is to avoid limitations that are existent by the solely employment of one media or method, and to understand the fusion between different media as an inspiring momentum to develop the design further. The paper draws a line from an initially experienced and analyzed design method over several projects in practice and academia to conclude with a possible design method that could be established successfully in both fields of architectural teaching and practice. Initial experiences had been drawn from professional practice, in which the digital realm was limited to a support device of the design process. The first project that is described in the paper, explored the employment of digital media as a possible tool to drive the design process in a broader sense. The studio setting was organized as a laboratory for the exploration of the change of applied media. Focus was on the influence on the design progress. The design method required of the studios participants was not exclusively based on an architectural program, but on an initial, very conceptual process with an artistic approach, based on personal experiences of each participant. This was meant to detach the students entirely from architectural processes and mindsets they had picked up so far. Parallel to that kind of an intellectual process, studio participants learned to handle Maya as the 3D modeling software of their choice. Both the technical knowledge and the artistic projects were merged in a second project phase, in which participants had to further develop their work by applying a very effective mix of various design tools. Using digital media as a parametric design generator, subsequent projects were developed. The task for the designers here were to decide what kind of algorithm could be applied to which process and when it was to be stopped for the best result. Applying such an automatism successfully to the design process, the employment of traditional media and methodology remained, to adapt the digital driven schemes to the required design task. The diverse design experiments demonstrate important aspects when merging complex design and animation software with traditional design processes. To achieve good architectural design results, all examined projects showed that traditional design methods with its physical models are hardly replaceable to its full extent by other media, but digital media are able to strengthen design processes and invite designers to explore new means of design work.
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
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
doi https://doi.org/10.52842/conf.ecaade.2007.751
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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