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 511

_id 05fc
authors Park, Hoon
year 1997
title Cyber Design Studio: Using Manual Media Via Internet Connections for Collaborative Design
doi https://doi.org/10.52842/conf.ecaade.1997.x.c9n
source Challenges of the Future [15th eCAADe Conference Proceedings / ISBN 0-9523687-3-0] Vienna (Austria) 17-20 September 1997
summary This article explores how Computer Aided Design (CAD) systems can be applicable and integrated into the early stage of design. CAD systems are still technologies that are not broadly accepted as useful to the designer especially in this stage of design because CAD systems use the monitor and mouse which differ from the sketch paper and pen of manual media. This article discusses how manual media and Computer-Mediated Communication (CMC) technologies - video conferencing, in my examples - that employ multimedia and Internet can empower designers by providing them with new ways of working together. For accommodating this approach, a prototype CAD system has been developed in which the system consists of a conventional drawing and extra capabilities. This system allows the designer to work with computer based and paper based tools in the same conventional environment as well as remote communications between the designers. This environment is used as the setting for a case study of design tutorials in the design studio. The analysis of this work provides interesting insight into the traditional roles of design studio as well as the relationship between digital and manual media.
keywords Cyber Design Studio, Collaborative Design
series eCAADe
email
more http://info.tuwien.ac.at/ecaade/proc/parkh/parkhoon.htm
last changed 2022/06/07 07:50

_id 6496
authors Chen, Y.Z. and Maver, T.W.
year 1997
title Integrating Design Tools within a Human Collaborative Working
source The Int. Journal of Construction IT 5(2), pp. 47-73
summary This paper stresses the importance of establishing a collaborative working context as the basis for design integration. Within a virtual studio environment framework, a hybrid architecture for design tool integration is presented. Each design tool is wrapped as an autonomous service provider with its own data store; thus the project design data is physically distributed with the design tools. A global product model, which is augmented with meta-data description, is employed to provide a common vocabulary for communications and to assist the management of the distributed resources and activities. Collaboration-aware information is modelled and structured through the meta-data model and a tool model. Based on this, mechanisms for tool service coodination in varying modes are developed. It is then illustrated, through an implemented prototype system, how the integrated design tools might be used in human design work.
series journal paper
last changed 2003/05/15 21:45

_id maver_107
id maver_107
authors Chen, Yan and Maver, Tom W.
year 1997
title Integrating Design Tools within a Human Collaborative Working Context
source International Journal of Construction IT, Vol5, No 2, pp 35-53
summary Integrating design tools has been an important research subject. The work to be reported in this paper differs from many previous efforts in that it not only tackles tool-tool interoperation, but also does so within a human collaborative working context We suggest that design integration support should include not only tool interoperability, but also mechanisms for co-ordinate and control the tool use. We also argue that the higher-level management support should include not only formalised and automated mechanisms, but also semi-automated and even informal mechanisms for human designers to directly interact with each other. Within a collaborative working framework, we'll present a hybrid architecture for tool integration, in which the human designers and the design tools are assumed to be distributed while the management is centralised. In this approach, each design tool is wrapped as an autonomous service provider with its own data store; thus the project design data is physically distributed with the design tools. A meta-data augmented product model, which populates a central meta-data repository serving as a "map" for locating the distributed design objects, is devised to provide a common vocabulary for communications and to assist the management of the distributed resources and activities. A design object broker is used to mediate among the distributed tools, and the central meta-data repository. The reported work has been part of a collaborative design system called virtual studio environment We'll illustrate how the integrated design tools might be used in human design work within the virtual studio environment.
series other
email
last changed 2003/09/03 15:36

_id 2423
authors Morozumi, M., Takahasi, M., Naka, R., Kawasumi, N., Homma, R., Mitchell. W.J., Yamaguchi, S. and Iki, K.
year 1997
title The Levels of Communications Achieved Through Network in an International Collaborative Design Project: An Analysis of VDS ’96 Project Carried Out By Kumamoto University, MIT and Kyoto Institute of Technology
doi https://doi.org/10.52842/conf.caadria.1997.143
source CAADRIA ‘97 [Proceedings of the Second Conference on Computer Aided Architectural Design Research in Asia / ISBN 957-575-057-8] Taiwan 17-19 April 1997, pp. 143-152
summary This paper reviewed the process and the achievements of a five-week-long virtual design studio project the authors carried out with three universities in Japan and the United States in the summer of 1996, in which there was no communication among team members other than network media. After analyzing the use of communication tools in different situations of design communication, and the level of communications achieved in this project, the authors concluded that the present network technology could provide sufficient levels of communication, if only participants could put forth some amount of extra effort for communication among team members.
series CAADRIA
email
last changed 2022/06/07 07:59

_id 6629
authors Torrance, V.
year 1997
title Building process summary
source Automation in Construction 6 (1) (1997) pp. 11-16
summary There is a lack of research in the UK construction industry. New technologies, particularly communications, are producing rapid change and, if the UK does not exploit this, it will be at the mercy of other countries which do. There is a lack of understanding of the decision making process which inhibits simulation. Clients are likely to exert more influence in future, particularly in building management where 50% of construction workload is on maintenance and repair. Electronic building maintenance manuals are needed. IT suppliers may become more involved and even buy into construction design firms in future. Education is vital to keep the industry at the forefront of IT development and new IT distance learning techniques could help.
series journal paper
more http://www.elsevier.com/locate/autcon
last changed 2003/05/15 21:23

_id acadia06_150
id acadia06_150
authors Boza, Luis Eduardo
year 2006
title (Un) Intended Discoveries Crafting the Design Process
doi https://doi.org/10.52842/conf.acadia.2006.150
source Synthetic Landscapes [Proceedings of the 25th Annual Conference of the Association for Computer-Aided Design in Architecture] pp. 150-157
summary Computer Numeric Controlled (CNC) fabrication machineries are changing the way we design and build. These technologies have increased productivity through greater efficiencies and have helped to create new forms of practice, including increased specializations and broader collaborative approaches. (Kieran Timberlake 2003: 31). However, some argue that these technologies can have a de-humanizing effect, stripping the human touch away from the production of objects and redistributing the associated skills to machines. (Dormer 1997: 103). The (Digital) Craft studio explored the notions of technology and craft to understand how and when designers should exploit the tools employed (both the hand and the machine) during the design and production processes.
series ACADIA
email
last changed 2022/06/07 07:54

_id 24f4
authors Kaga, A., Comair, C. and Sasada, T.
year 1997
title Collaborative Design System with Network Technologies
doi https://doi.org/10.52842/conf.caadria.1997.187
source CAADRIA ‘97 [Proceedings of the Second Conference on Computer Aided Architectural Design Research in Asia / ISBN 957-575-057-8] Taiwan 17-19 April 1997, pp. 187-196
summary During the past ten years at the Sasada Lab of Osaka University has been using computer graphics for presentation, design review and design for practical architectural design projects. Our laboratory is interested in "collaborative design” with designers, clients and citizen. We discovered that there are two major problems, initiatives and timing, and have found new solutions using network technologies. This method have solved these problems, but we have found major problems in "collaborative design” that occur the during many practical architectural design projects. This paper presents these problems and some of the solutions and research that our group has accomplished, or is pursuing in the field of "collaborative design”, using some of the latest technologies in hyper-medium and networking. This paper presents the requirements for Collaborative Design System, the new technologies and the thought of system architecture, the prototype system in practical design project, and the evaluation of prototype system.
series CAADRIA
email
last changed 2022/06/07 07:52

_id a99e
authors Kalay, Yehuda E.
year 1997
title P3: An Integrated Environment to Support Design Collaboration
doi https://doi.org/10.52842/conf.acadia.1997.191
source Design and Representation [ACADIA ‘97 Conference Proceedings / ISBN 1-880250-06-3] Cincinatti, Ohio (USA) 3-5 October 1997, pp. 191-205
summary Buildings are the combined product of the efforts of many participants interacting in complex ways over a prolonged period of time. Currently, sequential communication among the participants is the standard means of collaboration. This method, which is well suited to current legal and professional practices, is inefficient, fraught with loss of information and prone to errors, cost and schedule overruns, and promotes optimization of individual parts at the expense of the overall project. This paper describes an integrated design environment that will facilitate collaborative decision making among the various participants, not merely communicate the results of decisions made by one participant to the other participants in the design team. It is based on the convergence of computing and telecommunication technologies, coupled with the emergence of new design paradigms, which together can overcome the technical difficulties associate with current collaborative design practices. It comprises three different modules: a product model, a performance model, and a process model (hence it is called P3). The paper presents each of these models and their integration into a unified framework.

series ACADIA
email
last changed 2022/06/07 07:52

_id cc90
authors Kolarevic, Branko
year 1998
title CAD@HKU
doi https://doi.org/10.52842/conf.acadia.1998.016
source ACADIA Quarterly, vol. 17, no. 4, pp. 16-17
summary Since 1993, we have experimented with Virtual Design Studios (VDS) as an on-going research project that investigates the combination of current computer-aided design (CAD), computer networks (Internet), and computer supported collaborative work (CSCW) techniques to bring together studentsat geographically distributed locations to work in a virtual atelier. In 1993 the theme of the first joint VDS project was in-fill housing for the traditional Chinese walled village of Kat Hing Wai in the New Territories north of Hong Kong, and our partners included MIT and Harvard in Boston (USA), UBC in Vancouver (Canada), and Washington University in St. Louis (USA). In 1994 we were joined by Cornell (USA) and Escola Tecnica Superior d’Arquitectura de Barcelona (Spain) to re-design Li Long housing in Shanghai, and 1995 added the Warsaw Institute of Technology (Poland) for the ACSA/Dupont competition to design a Center for Cultural and Religious Studies in Japan. The 1996 topic was an international competition to design a monument located in Hong Kong to commemorate the return of Hong Kong to Chinese sovereignty in 1997. Communication was via e-mail, the WorldWide Web with limited attempts at VRML, and network video. Several teaching and research experiments conducted through these projects have demonstrated the viability and potential of using electronic, telecommunications, and videoconferencing technologies in collaborative design processes. Results of these VDS have been presented at conferences worldwide, explained in journal papers and published in Virtual Design Studio, edited by J. Wojtowicz, published by HKU Press.
series ACADIA
email
last changed 2022/06/07 07:51

_id aecc
authors Kosco, Igor
year 1997
title CAAD and Network Technologies - Reflexions From Education and Practice.
doi https://doi.org/10.52842/conf.ecaade.1997.x.x2j
source Challenges of the Future [15th eCAADe Conference Proceedings / ISBN 0-9523687-3-0] Vienna (Austria) 17-20 September 1997
summary New technologies like Computer Aided Design and network facilities are affecting the building procurement, design and construction processes very rapidly. Network technologies are giving us a variety of possibilities : quick and simple access to information, quick and easy communication, exchange of datas in different formats ( texts, data, drawings, images, animations, hypertext or multimedia products, etc.) or access to differently located computer and work on it. As the result the communication or collaboration in a design and construction process and management could be used not only at the Level 1. (in one office), Level 2. (between different offices) or Level 3. (different participants and users) but, what is more important, between geographically dispersed members of design and construction teams (dispersed offices or communities in different places, towns, regions, countries or even continents). There are a lot of advantages : quick and easy communication and exchange of information, free choice of a team, easy revisions of a documentation, collaborative work on the same drawings, costs savings in travelling, issuing, copying and shipping of a documentation and finally possible use of the cheaper labour or more skilled professionals in a different region or country.
keywords Remote Communication, Collaboration, Internet, Network,Videoconference, Architectural Design, Project Management
series eCAADe
email
more http://info.tuwien.ac.at/ecaade/proc/kosco/kosco.htm
last changed 2022/06/07 07:50

_id 29cf
authors Martens, B., Linzer. H. and Voigt, A. (Ed.)
year 1997
title Challenges of the Future
doi https://doi.org/10.52842/conf.ecaade.1997
source 15th eCAADe Conference Proceedings / ISBN 0-9523687-3-0 / Vienna (Austria) 17-20 September 1997, CD-Rom
summary As most of us have observed in the past few years, we have begun to emerge as intermediaries between education, practice and the new technologies. We have begun to provide new computational research orientations to the generation of knowledge about design and design&planning process. Over and above acting as a medium of access to tools, we have begun to function in new roles in our schools as strengthening the presence of theories and the intellectual content of design and planning education.

The emergence of new media and techniques are further influencing our function as interpreters of the conceptual implications of change and development. This is the challenge of ECAADE Vienna 97. We believe that it will be an exhilarating experience.

keywords Collaborative Teamwork, Digital Design Process, Spatial Modeling
series eCAADe
email
more http://info.tuwien.ac.at/ecaade/
last changed 2022/06/07 07:49

_id cf2011_p016
id cf2011_p016
authors Merrick, Kathryn; Gu Ning
year 2011
title Supporting Collective Intelligence for Design in Virtual Worlds: A Case Study of the Lego Universe
source Computer Aided Architectural Design Futures 2011 [Proceedings of the 14th International Conference on Computer Aided Architectural Design Futures / ISBN 9782874561429] Liege (Belgium) 4-8 July 2011, pp. 637-652.
summary Virtual worlds are multi-faceted technologies. Facets of virtual worlds include graphical simulation tools, communication, design and modelling tools, artificial intelligence, network structure, persistent object-oriented infrastructure, economy, governance and user presence and interaction. Recent studies (Merrick et al., 2010) and applications (Rosenman et al., 2006; Maher et al., 2006) have shown that the combination of design, modelling and communication tools, and artificial intelligence in virtual worlds makes them suitable platforms for supporting collaborative design, including human-human collaboration and human-computer co-creativity. Virtual worlds are also coming to be recognised as a platform for collective intelligence (Levy, 1997), a form of group intelligence that emerges from collaboration and competition among large numbers of individuals. Because of the close relationship between design, communication and virtual world technologies, there appears a strong possibility of using virtual worlds to harness collective intelligence for supporting upcoming “design challenges on a much larger scale as we become an increasingly global and technological society” (Maher et al, 2010), beyond the current support for small-scale collaborative design teams. Collaborative design is relatively well studied and is characterised by small-scale, carefully structured design teams, usually comprising design professionals with a good understanding of the design task at hand. All team members are generally motivated and have the skills required to structure the shared solution space and to complete the design task. In contrast, collective design (Maher et al, 2010) is characterised by a very large number of participants ranging from professional designers to design novices, who may need to be motivated to participate, whose contributions may not be directly utilised for design purposes, and who may need to learn some or all of the skills required to complete the task. Thus the facets of virtual worlds required to support collective design differ from those required to support collaborative design. Specifically, in addition to design, communication and artificial intelligence tools, various interpretive, mapping and educational tools together with appropriate motivational and reward systems may be required to inform, teach and motivate virtual world users to contribute and direct their inputs to desired design purposes. Many of these world facets are well understood by computer game developers, as level systems, quests or plot and achievement/reward systems. This suggests the possibility of drawing on or adapting computer gaming technologies as a basis for harnessing collective intelligence in design. Existing virtual worlds that permit open-ended design – such as Second Life and There – are not specifically game worlds as they do not have extensive level, quest and reward systems in the same way as game worlds like World of Warcraft or Ultima Online. As such, while Second Life and There demonstrate emergent design, they do not have the game-specific facets that focus users towards solving specific problems required for harnessing collective intelligence. However, a new massively multiplayer virtual world is soon to be released that combines open-ended design tools with levels, quests and achievement systems. This world is called Lego Universe (www.legouniverse.com). This paper presents technology spaces for the facets of virtual worlds that can contribute to the support of collective intelligence in design, including design and modelling tools, communication tools, artificial intelligence, level system, motivation, governance and other related facets. We discuss how these facets support the design, communication, motivational and educational requirements of collective intelligence applications. The paper concludes with a case study of Lego Universe, with reference to the technology spaces defined above. We evaluate the potential of this or similar tools to move design beyond the individual and small-scale design teams to harness large-scale collective intelligence. We also consider the types of design tasks that might best be addressed in this manner.
keywords collective intelligence, collective design, virtual worlds, computer games
series CAAD Futures
email
last changed 2012/02/11 19:21

_id cf2011_p093
id cf2011_p093
authors Nguyen, Thi Lan Truc; Tan Beng Kiang
year 2011
title Understanding Shared Space for Informal Interaction among Geographically Distributed Teams
source Computer Aided Architectural Design Futures 2011 [Proceedings of the 14th International Conference on Computer Aided Architectural Design Futures / ISBN 9782874561429] Liege (Belgium) 4-8 July 2011, pp. 41-54.
summary In a design project, much creative work is done in teams, thus requires spaces for collaborative works such as conference rooms, project rooms and chill-out areas. These spaces are designed to provide an atmosphere conducive to discussion and communication ranging from formal meetings to informal communication. According to Kraut et al (E.Kraut et al., 1990), informal communication is an important factor for the success of collaboration and is defined as “conversations take place at the time, with the participants, and about the topics at hand. It often occurs spontaneously by chance and in face-to-face manner. As shown in many research, much of good and creative ideas originate from impromptu meeting rather than in a formal meeting (Grajewski, 1993, A.Isaacs et al., 1997). Therefore, the places for informal communication are taken into account in workplace design and scattered throughout the building in order to stimulate face-to-face interaction, especially serendipitous communication among different groups across disciplines such as engineering, technology, design and so forth. Nowadays, team members of a project are not confined to people working in one location but are spread widely with geographically distributed collaborations. Being separated by long physical distance, informal interaction by chance is impossible since people are not co-located. In order to maintain the benefit of informal interaction in collaborative works, research endeavor has developed a variety ways to shorten the physical distance and bring people together in one shared space. Technologies to support informal interaction at a distance include video-based technologies, virtual reality technologies, location-based technologies and ubiquitous technologies. These technologies facilitate people to stay aware of other’s availability in distributed environment and to socialize and interact in a multi-users virtual environment. Each type of applications supports informal interaction through the employed technology characteristics. One of the conditions for promoting frequent and impromptu face-to-face communication is being co-located in one space in which the spatial settings play as catalyst to increase the likelihood for frequent encounter. Therefore, this paper analyses the degree to which sense of shared space is supported by these technical approaches. This analysis helps to identify the trade-off features of each shared space technology and its current problems. A taxonomy of shared space is introduced based on three types of shared space technologies for supporting informal interaction. These types are named as shared physical environments, collaborative virtual environments and mixed reality environments and are ordered increasingly towards the reality of sense of shared space. Based on the problem learnt from other technical approaches and the nature of informal interaction, this paper proposes physical-virtual shared space for supporting intended and opportunistic informal interaction. The shared space will be created by augmenting a 3D collaborative virtual environment (CVE) with real world scene at the virtual world side; and blending the CVE scene to the physical settings at the real world side. Given this, the two spaces are merged into one global structure. With augmented view of the real world, geographically distributed co-workers who populate the 3D CVE are facilitated to encounter and interact with their real world counterparts in a meaningful and natural manner.
keywords shared space, collaborative virtual environment, informal interaction, intended interaction, opportunistic interaction
series CAAD Futures
email
last changed 2012/02/11 19:21

_id b3f6
authors Goodwin, G.
year 1997
title Software and hardware summary
source Automation in Construction 6 (1) (1997) pp. 29-31
summary With the rate of change accelerating in both technological development and in the spread of global markets, very few cost cutting businesses will survive in a value added marketplace. Information sharing over networks has a lot to offer the Industry by way of eliminating delays from the construction process and inventory from the Supply Chain. The most significant change by 2005 will be in networking and communications. Discovering design flaws at the design stage rather than when the building is in use must be very attractive to clients of the Construction Industry. Construction firms must have some sort of IT Strategy or clear view of how to exploit IT to support their businesses. Large companies need to act as coaches and mentors to smaller ones. The Industry cannot maximise its IT benefits unless all the players participate.
series journal paper
more http://www.elsevier.com/locate/autcon
last changed 2003/05/15 21:22

_id e336
authors Achten, H., Roelen, W., Boekholt, J.-Th., Turksma, A. and Jessurun, J.
year 1999
title Virtual Reality in the Design Studio: The Eindhoven Perspective
doi https://doi.org/10.52842/conf.ecaade.1999.169
source Architectural Computing from Turing to 2000 [eCAADe Conference Proceedings / ISBN 0-9523687-5-7] Liverpool (UK) 15-17 September 1999, pp. 169-177
summary Since 1991 Virtual Reality has been used in student projects in the Building Information Technology group. It started as an experimental tool to assess the impact of VR technology in design, using the environment of the associated Calibre Institute. The technology was further developed in Calibre to become an important presentation tool for assessing design variants and final design solutions. However, it was only sporadically used in student projects. A major shift occurred in 1997 with a number of student projects in which various computer technologies including VR were used in the whole of the design process. In 1998, the new Design Systems group started a design studio with the explicit aim to integrate VR in the whole design process. The teaching effort was combined with the research program that investigates VR as a design support environment. This has lead to increasing number of innovative student projects. The paper describes the context and history of VR in Eindhoven and presents the current set-UP of the studio. It discusses the impact of the technology on the design process and outlines pedagogical issues in the studio work.
keywords Virtual Reality, Design Studio, Student Projects
series eCAADe
email
last changed 2022/06/07 07:54

_id 0c91
authors Asanowicz, Aleksander
year 1997
title Computer - Tool vs. Medium
doi https://doi.org/10.52842/conf.ecaade.1997.x.b2e
source Challenges of the Future [15th eCAADe Conference Proceedings / ISBN 0-9523687-3-0] Vienna (Austria) 17-20 September 1997
summary We have arrived an important juncture in the history of computing in our profession: This history is long enough to reveal clear trends in the use of computing, but not long to institutionalize them. As computers peremate every area of architecture - from design and construction documents to project administration and site supervision - can “virtual practice” be far behind? In the old days, there were basically two ways of architects working. Under stress. Or under lots more stress. Over time, someone forwarded the radical motion that the job could be easier, you could actually get more work done. Architects still have been looking for ways to produce more work in less time. They need a more productive work environment. The ideal environment would integrate man and machine (computer) in total harmony. As more and more architects and firms invest more and more time, money, and effort into particular ways of using computers, these practices will become resistant to change. Now is the time to decide if computing is developing the way we think it should. Enabled and vastly accelerated by technology, and driven by imperatives for cost efficiency, flexibility, and responsiveness, work in the design sector is changing in every respect. It is stands to reason that architects must change too - on every level - not only by expanding the scope of their design concerns, but by altering design process. Very often we can read, that the recent new technologies, the availability of computers and software, imply that use of CAAD software in design office is growing enormously and computers really have changed the production of contract documents in architectural offices.
keywords Computers, CAAD, Cyberreal, Design, Interactive, Medium, Sketches, Tools, Virtual Reality
series eCAADe
email
more http://info.tuwien.ac.at/ecaade/proc/asan/asanowic.htm
last changed 2022/06/07 07:50

_id sigradi2006_e131c
id sigradi2006_e131c
authors Ataman, Osman
year 2006
title Toward New Wall Systems: Lighter, Stronger, Versatile
source SIGraDi 2006 - [Proceedings of the 10th Iberoamerican Congress of Digital Graphics] Santiago de Chile - Chile 21-23 November 2006, pp. 248-253
summary Recent developments in digital technologies and smart materials have created new opportunities and are suggesting significant changes in the way we design and build architecture. Traditionally, however, there has always been a gap between the new technologies and their applications into other areas. Even though, most technological innovations hold the promise to transform the building industry and the architecture within, and although, there have been some limited attempts in this area recently; to date architecture has failed to utilize the vast amount of accumulated technological knowledge and innovations to significantly transform the industry. Consequently, the applications of new technologies to architecture remain remote and inadequate. One of the main reasons of this problem is economical. Architecture is still seen and operated as a sub-service to the Construction industry and it does not seem to be feasible to apply recent innovations in Building Technology area. Another reason lies at the heart of architectural education. Architectural education does not follow technological innovations (Watson 1997), and that “design and technology issues are trivialized by their segregation from one another” (Fernandez 2004). The final reason is practicality and this one is partially related to the previous reasons. The history of architecture is full of visions for revolutionizing building technology, ideas that failed to achieve commercial practicality. Although, there have been some adaptations in this area recently, the improvements in architecture reflect only incremental progress, not the significant discoveries needed to transform the industry. However, architectural innovations and movements have often been generated by the advances of building materials, such as the impact of steel in the last and reinforced concrete in this century. There have been some scattered attempts of the creation of new materials and systems but currently they are mainly used for limited remote applications and mostly for aesthetic purposes. We believe a new architectural material class is needed which will merge digital and material technologies, embedded in architectural spaces and play a significant role in the way we use and experience architecture. As a principle element of architecture, technology has allowed for the wall to become an increasingly dynamic component of the built environment. The traditional connotations and objectives related to the wall are being redefined: static becomes fluid, opaque becomes transparent, barrier becomes filter and boundary becomes borderless. Combining smart materials, intelligent systems, engineering, and art can create a component that does not just support and define but significantly enhances the architectural space. This paper presents an ongoing research project about the development of new class of architectural wall system by incorporating distributed sensors and macroelectronics directly into the building environment. This type of composite, which is a representative example of an even broader class of smart architectural material, has the potential to change the design and function of an architectural structure or living environment. As of today, this kind of composite does not exist. Once completed, this will be the first technology on its own. We believe this study will lay the fundamental groundwork for a new paradigm in surface engineering that may be of considerable significance in architecture, building and construction industry, and materials science.
keywords Digital; Material; Wall; Electronics
series SIGRADI
email
last changed 2016/03/10 09:47

_id 83a5
authors Bock, Thomas
year 1997
title CAD-So What?
source CAAD Futures 1997 [Conference Proceedings / ISBN 0-7923-4726-9] München (Germany), 4-6 August 1997, pp. 15-43
summary Computers were applied in construction towards the end of the 50s. In the meantime CA-X technologies rapidly evolved in areas such as integration of application software, 3D modelling and simulation, multimedia systems, artificial intelligence, CAD/CAM, robotics, and computer-based integration of design, construction and facility management. The structural changes under way in the construction industry ask for a transition from mere CAD, where "D" stands for design and drafting, towards CAC, where the second "C" represents construction , thus farther processing the previously generated CAD data .
series CAAD Futures
email
last changed 2003/11/21 15:16

_id 88f9
authors Carrara, G., Novembri, G., Zorgno, A.M., Brusasco, P.L.
year 1997
title Virtual Studio of Design and Technology on Internet (I) - Educator's approach
doi https://doi.org/10.52842/conf.ecaade.1997.x.n2w
source Challenges of the Future [15th eCAADe Conference Proceedings / ISBN 0-9523687-3-0] Vienna (Austria) 17-20 September 1997
summary This paper presents a teaching experience involving students and professors from various universities, in Italy and abroad, which began in 1996 and is still on going. The Virtual Studios on the Internet (VSI) have some features in common with the Teaching Studios planned for the new programme of the faculties of Architecture in Italian universities. These are the definition of a common design theme, and the participation of disciplinary teachers. The greatest difference is in the modes of collaboration, which is achieved through information and communication technologies. The chief result of this is that the various work groups in different places can work and collaborate at the same time: the computer networks provide the means to express, communicate and share the design project.
keywords CAAD, Teaching of architectural design, Shared virtual reality, Virtualdesign studio, Collective intelligence.
series eCAADe
email
more http://info.tuwien.ac.at/ecaade/proc/lvi_i&ii/zorgno.html
last changed 2022/06/07 07:50

_id caadria2010_042
id caadria2010_042
authors Celento, David
year 2010
title Open-source, parametric architecture to propagate hyper-dense, sustainable urban communities: parametric urban dwellings for the experience economy
doi https://doi.org/10.52842/conf.caadria.2010.443
source Proceedings of the 15th International Conference on Computer Aided Architectural Design Research in Asia / Hong Kong 7-10 April 2010, pp. 443-452
summary Rapid developments in societal, technological, and natural systems suggest profound changes ahead if research in panarchical systems (Holling, 2001) is to be believed. Panarchy suggests that systems, both natural and man-made, rise to the point of vulnerability then fail due to disruptive forces in a process of ‘creative destruction.’ This sequence allows for radical, and often unpredictable, renewal. Pressing sustainability concerns, burgeoning urban growth, and emergent ‘green manufacturing’ laws, suggest that future urban dwellings are headed toward Gladwell’s ‘tipping point’ (2002). Hyper-dense, sustainable, urban communities that employ open-source standards, parametric software, and web-based configurators are the new frontier for venerable visions. Open-source standards will permit the design, manufacture, and sale of highly diverse, inter-operable components to create compact urban living environments that are technologically sophisticated, sustainable, and mobile. These mass-customised dwellings, akin to branded consumer goods, will address previous shortcomings for prefabricated, mobile dwellings by stimulating consumer desire in ways that extend the arguments of both Joseph Pine (1992) and Anna Klingman (2007). Arguments presented by authors Makimoto and Manners (1997) – which assert that the adoption of digital and mobile technologies will create large-scale societal shifts – will be extended with several solutions proposed.
keywords Mass customisation; urban dwellings; open source standards; parametric design; sustainability
series CAADRIA
email
last changed 2022/06/07 07:55

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