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 628

_id 295d
authors Amor, R.W., Hosking, J.G. and Mugridge, W.B.
year 1999
title ICAtect-II: a framework for the integration of building design tools
source Automation in Construction 8 (3) (1999) pp. 277-289
summary The development of a system capable of integrating a range of building design tools poses many challenges. Our framework for integrating design tools provides a structured approach, allowing individual parts to be developed independently. In this paper, we describe the overall framework and suggest a method for modeling and implementing each portion of the framework. Furthermore, we illustrate how such a system can integrate several design tools and be realized as a functional design system.
series journal paper
more http://www.elsevier.com/locate/autcon
last changed 2003/05/15 21:22

_id c21a
authors Fitzsimons, J. Kent
year 1999
title Net-Based History of Architecture
source III Congreso Iberoamericano de Grafico Digital [SIGRADI Conference Proceedings] Montevideo (Uruguay) September 29th - October 1st 1999, pp. 319-325
summary History sequences in professional architecture programs must meet broad educational objectives. Inherent in an architect’s education is a tension between the rigorous consideration of important ideas in the history of architecture and the inspired implementation of these ideas in the design studio. A digital history course can bridge the education/training divide by making the study of history emulate the methods and strategies used in the architecture studio. Using a relational database and navigation software, we have developed a course in which students move through a digital environment of text, image, audio and video resources pertaining to broad historical categories in architecture. Charged with producing historical genealogies, students must incorporate current architectural and cultural concerns in their distillation of the history presented by the articles, surveys, manifestoes, photographs, drawings and interviews encountered online. The immersive multimedia environment uses hyperlinks as a structure, placing emphasis on the student’s role in navigation while increasing the possibilities for chance encounters in the material. The delivery of basic material having been accomplished independently by the student, class meetings are used for higher-level discussions of the issues that surface. The project is currently being implemented as a half-semester course in 20th century architecture for a small group of sophomore students in the professional Bachelor of Architecture program. The project’s pedagogical and technical aspects will be discussed with respect to this stage of its development.
series SIGRADI
email
last changed 2016/03/10 09:51

_id 1873
authors Ji, Guohua and Feng, Jinlong
year 1999
title Structural Approach to the Organization of Information: A Teaching Experiment at SEU
doi https://doi.org/10.52842/conf.caadria.1999.153
source CAADRIA '99 [Proceedings of The Fourth Conference on Computer Aided Architectural Design Research in Asia / ISBN 7-5439-1233-3] Shanghai (China) 5-7 May 1999, pp. 153-159
summary Design studio still plays a very important role in architectural design education today since teachers and students can exchange their thinking directly. In the whole teaching/learning process, there are a lot of information to be exchanged between the teachers and the students. How to organize the information and record the whole teaching/learning process is very interesting to us. The increasing use of CAD raises some problems with its advantages when the amount of compute-files becomes very big and they are in different formats. In the third year design studio teaching in the academic year 1998/99 at Department of Architecture in Southeast University, we try to use WWW techniques and features to organise the design information. We try to integrate the teaching programme, the project information, the reference material and the students' work together, to record and monitor the teaching process. Since the teaching programme is clearly organised, we could use some strategies and ideas to control the organisation of file storage and presentation. It creates the basis for the further development of applying network to aid the studio teaching.
series CAADRIA
last changed 2022/06/07 07:52

_id ecb2
authors Kalay, Yehuda E.
year 1999
title The Future of CAAD: From Computer-Aided Design to Computer-Aided Collaboration
source Llavaneras S., Gustavo J. and Negrón P., Enssa (eds.), 1ra Conferencia Venezolana sobre Aplicación de Computadores en Arquitectura, Caracas (Venezuela) 1-3 december 1999, pp. 19-28
summary The primary uses of computers in the construction industry have been shifting, over the past four decades, from the evaluation of proposed design solutions, to their graphical (and other) representation, and more recently to facilitating collaboration among the various professionals who are involved in the design process. This paper argues that what may appear to be shifts in emphasis actually represents convergence on a single, original goal: the use of computers to help designers (and others who are involved in the design decision making process) to assess the quality, desirability, and the implications of their creations. Such assistance requires representation, communication, and analysis. The paper goes on to show how these individual parts can be joined into an integrated collaborative design environment, where they build upon and strengthen each other. Moreover, the paper argues that this convergence represents the future of CAAD research and development.
series other
email
last changed 2002/12/23 14:11

_id 0d5b
authors Latch Craig, David and Zimring, Craig
year 1999
title Practical Support for Collaborative Design Involving Divided Interests
doi https://doi.org/10.52842/conf.acadia.1999.126
source Media and Design Process [ACADIA ‘99 / ISBN 1-880250-08-X] Salt Lake City 29-31 October 1999, pp. 126-137
summary Collaboration is common in design, yet relatively little is known about the cognitive reasoning processes that occur during collaboration. This paper discusses collaborative design, emphasizing the elaboration and transformations of the problem search space, and the roles that unstructured verbal communication and graphic communication can play in these processes. The paper discusses a prototype system called the Immersive Discussion Tool (IDT) that supports asynchronous design. IDT allows collaborators to mark-up 3-D models over the Internet using a variety of tools, including diagrammatic marks, dynamic simulations and text annotations. IDT relies on VRML to view the models, with an extensive Java-based interface on the backend powering the interactive construction and playback of graphical annotations, the management of threaded discussions, and the management of file input/output. The development of this tool has revealed the difficulty of constructing complex marks in a virtual 3-D space, and the initial implementation of IDT suggests several strategies for solving these problems.
series ACADIA
email
last changed 2022/06/07 07:51

_id 60a5
authors Oxman, R.E.
year 1999
title Educating the designerly thinker
source Design Studies, Vol 20 No 2
summary This paper presents a hypothesis about design education that is framed within and derived from cognitive theories of learning. The relevance of design thinking and cognitive approaches to the development of pedagogical approaches in design education is presented and discussed. A conceptual model for design education that emphasizes the acquisition of explicit knowledge of design is proposed. The acquisition of knowledge is achieved through the explication of cognitive structures and strategies of design thinking. The explication process is constructed by exploiting a representational formalism, and a computational medium which supports both the learning process as well as the potential re-use of this knowledge. Finally, an argument is presented that the measure of learning, generally equated with the evaluation of the product of designing, can instead be based upon evaluating learning increments of acquired knowledge.
series journal paper
email
last changed 2003/04/23 15:50

_id 9ce0
authors Ozcan, Oguzhan
year 1999
title Education of Interactive Panorama-design in Architecture
doi https://doi.org/10.52842/conf.ecaade.1999.223
source Architectural Computing from Turing to 2000 [eCAADe Conference Proceedings / ISBN 0-9523687-5-7] Liverpool (UK) 15-17 September 1999, pp. 223-229
summary This paper mainly discusses the importance of interactive panorama in design, and its education in the MDes program, which will run at Yildiz Technical University in the year 2000. The first part of the paper summarizes the potentials of current interactive panorama technique, which was "A popular form of the public entertainment" in 19th-century. Then, it compares the real-world experiences with observations in an interactive panorama. This comparison is carried out together with technical aspects i.e. limitations, audio-visual effects, composite techniques, live video input, and conceptual aspects i.e. camera actions, natural phenomenon. The technical discussion in the paper is concentrated on the examples from newly developed tools such as Nodemedia, Electrifier, Wasabi Software, and Skypaint as well as Apple QuickTime VR Authoring Tool. The second part underlines the role of interactive panorama technique in design. In this part, the paper also summarizes how to use the technique at the beginning and, during creation of the design and in its presentation, taking the installation advantages of sound, vision, text and transition effects. The third part concentrates on the interactive panorama design as an individual project, offered in the MDes program. Then it explains how the preliminary courses were planned for this individual project and summarizes the content of the course formulated through the linear and non-linear structures of the media. Finally, considering with the future development of interactive panorama technique, the last part of the paper discusses the possible results of this education method.
keywords Interactive Media, Panoramic Image, Design Education
series eCAADe
email
last changed 2022/06/07 08:00

_id 9eb6
authors Peng C. and Blundell Jones, P.
year 1999
title Hypermedia Authoring and Contextual Modeling in Architecture and Urban Design: Collaborative Reconstructing Historical Sheffield
doi https://doi.org/10.52842/conf.acadia.1999.114
source Media and Design Process [ACADIA ‘99 / ISBN 1-880250-08-X] Salt Lake City 29-31 October 1999, pp. 114-124
summary Studies of historical architecture and urban contexts in preparation for contemporary design interventions are inherently rich in information, demanding versatile and efficient methods of documentation and retrieval. We report on a developing program to establish a hypermedia authoring approach to collaborative contextual modeling in architecture and urban design. The paper begins with a description of a large-scale urban history study project in which 95 students jointly built a physical model of the city center of Sheffield as it stood in 1900, at a scale of 1:500. Continuing work on the Sheffield urban study project, it appears to us desirable to adopt a digital approach to archiving the material and in making it both indexible and accessible via multiple routes. In our review of digital models of cities, some interesting yet unexplored issues were identified. Given the issues and tasks elicited, we investigated hypermedia authoring in HTML and VRML as a designer-centered modeling methodology. Conceptual clarity of the methodology was considered, intending that an individual or members of design groups with reasonable computing skills could learn to operate it quickly. The methodology shows that it is practicable to build a digital contextual databank by a group of architecture/urban designers rather than by specialized modeling teams. Contextual modeling with or without computers can be a research activity on its own. However, we intend to investigate further how hypermedia-based contextual models can be interrelated to design development and communication. We discuss three aspects that can be explored in a design education setting.
series ACADIA
email
last changed 2022/06/07 07:59

_id 3d23
authors Sellgren, Ulf
year 1999
title Simulation-driven Design
source KTH Stockholm
summary Efficiency and innovative problem solving are contradictory requirements for product development (PD), and both requirements must be satisfied in companies that strive to remain or to become competitive. Efficiency is strongly related to ”doing things right”, whereas innovative problem solving and creativity is focused on ”doing the right things”. Engineering design, which is a sub-process within PD, can be viewed as problem solving or a decision-making process. New technologies in computer science and new software tools open the way to new approaches for the solution of mechanical problems. Product data management (PDM) technology and tools can enable concurrent engineering (CE) by managing the formal product data, the relations between the individual data objects, and their relation to the PD process. Many engineering activities deal with the relation between behavior and shape. Modern CAD systems are highly productive tools for concept embodiment and detailing. The finite element (FE) method is a general tool used to study the physical behavior of objects with arbitrary shapes. Since a modern CAD technology enables design modification and change, it can support the innovative dimension of engineering as well as the verification of physical properties and behavior. Concepts and detailed solutions have traditionally been evaluated and verified with physical testing. Numerical modeling and simulation is in many cases a far more time efficient method than testing to verify the properties of an artifact. Numerical modeling can also support the innovative dimension of problem solving by enabling parameter studies and observations of real and synthetic behavior. Simulation-driven design is defined as a design process where decisions related to the behavior and performance of the artifact are significantly supported by computer-based product modeling and simulation. A framework for product modeling, that is based on a modern CAD system with fully integrated FE modeling and simulation functionality provides the engineer with tools capable of supporting a number of engineering steps in all life-cycle phases of a product. Such a conceptual framework, that is based on a moderately coupled approach to integrate commercial PDM, CAD, and FE software, is presented. An object model and a supporting modular modeling methodology are also presented. Two industrial cases are used to illustrate the possibilities and some of the opportunities given by simulation-driven design with the presented methodology and framework.
keywords CAE; FE Method; Metamodel; Object Model; PDM; Physical Behavior, System
series thesis:PhD
email
last changed 2003/02/12 22:37

_id 73e2
authors Tokman, Leyla Y. and Yamacli, Rusen
year 1999
title Imagining the Ideal Design Studio: Technology, People and Environment in Architectural Education
doi https://doi.org/10.52842/conf.acadia.1999.006
source ACADIA Quarterly, vol. 18, no. 2, pp. 6-10
summary Architectural education is strongly related to technology and people-environment. While architecture has its own history and traditions, new knowledge is incorporated from other fields such as the basic sciences and engineering, behavioral sciences and the humanities. This paper refers to an ideal study which aims to integrate a range of computer-based multimedia technologies. This ideal study has the overall goal of enhancing the processes of architectural education in the design studio. In case of the design process, the development of advanced design systems has a twofold role, to provide for design students, with experience and understanding of the role of advanced design systems in the architectural education. Architectural design must meet a wide range of design objectives. Each objective has its own technological, people- environmental, social, economic and other requirements, and each has been the subject of intensive study, and even specialization. These individual objectives, however, are not independent of each other. Our paper asserts that they are combined in an ideal design studio imagination of the built environment and design decisions that are intended to meet one objective in an interactive design studio of the future. As we approach the 21st century, the need for creativity in the design studio becomes more important. The model motivates students achieves results and can also be applied at an individual personal and professional level.
keywords Interactive Architectural Education; Design Studio; Computer Technology and People-environment
series ACADIA
email
last changed 2022/06/07 07:58

_id 44c0
authors Van Leeuwen, Jos P.
year 1999
title Modelling architectural design information by features : an approach to dynamic product modelling for application in architectural design
source Eindhoven University of Technology
summary Architectural design, like many other human activities, benefits more and more from the ongoing development of information and communication technologies. The traditional paper documents for the representation and communication of design are now replaced by digital media. CAD systems have replaced the drawing board and knowledge systems are used to integrate expert knowledge in the design process. Product modelling is one of the most promising approaches in the developments of the last two decades, aiming in the architectural context at the representation and communication of the information related to a building in all its aspects and during its complete life-cycle. However, after studying both the characteristics of the product modelling approach and the characteristics of architectural design, it is concluded in this research project that product modelling does not suffice for support of architectural design. Architectural design is characterised mainly as a problem solving process, involving illdefined problems that require a very dynamic way of dealing with information that concerns both the problem and emerging solutions. Furthermore, architectural design is in many ways an evolutionary process. In short term this is because of the incremental approach to problem solving in design projects; and in long term because of the stylistic development of designers and the continuous developments in the building and construction industry in general. The requirements that are posed by architectural design are concentrated in the keywords extensibility and flexibility of the design informationmodels. Extensibility means that designers can extend conceptual models with definitions that best suit the design concepts they wish to utilise. Flexibility means that information in design models can be structured in a way that accurately represents the design rationale. This includes the modelling of incidental characteristics and relationships of the entities in the model that are not necessarily predefined in a conceptual model. In general, product modelling does not adequately support this dynamic nature of design. Therefore, this research project has studied the concepts developed in the technology of Feature-based modelling, which originates from the area of mechanical engineering. These concepts include the usage of Features as the primitives for defining and reasoning about a product. Features have an autonomous function in the information model, which, as a result, constitutes a flexible network of relationships between Features that are established during the design process. The definition of Features can be specified by designers to formalise new design concepts. This allows the design tools to be adapted to the specific needs of the individual designer, enlarging the library of available resources for design. In addition to these key-concepts in Feature-based modelling as it is developed in the mechanical engineering context, the project has determined the following principles for a Feature-based approach in the architectural context. Features in mechanical engineering are used mainly to describe the lowest level of detail in a product's design, namely the characteristics of its parts. In architecture the design process does not normally follow a strictly hierarchical approach and therefore requires that the building be modelled as a whole. This implies that multiple levels of abstraction are modelled and that Features are used to describe information at the various abstraction levels. Furthermore, architectural design involves concepts that are non-physical as well as physical; Features are to be used for modelling both kinds. The term Feature is defined in this research project to reflect the above key-concepts for this modelling approach. A Feature is an autonomous, coherent collection of information, with semantic meaning to a designer and possibly emerging during design, that is defined to formalise a design concept at any level of abstraction, either physical or non-physical, as part of a building model. Feature models are built up entirely of Features and are structured in the form of a directed graph. The nodes in the graph are the Features, whereas the arcs are the relationships between the Features. Features can be of user-defined types and incidental relationships can be added that are not defined at the typological level. An inventory in this project of what kind of information is involved in the practice of modelling architectural design is based on the analysis of a selection of sources of architectural design information. This inventory is deepened by a case study and results in the proposition of a categorisation of architectural Feature types.
keywords Automated Management Information Systems; Computer Aided Architectural Design; Information Systems; Modelling
series thesis:PhD
email
more http://www.ds.arch.tue.nl/jos/thesis/
last changed 2003/02/12 22:37

_id 5f23
authors Vineeta, Pal
year 1999
title Integrated Computational Analysis of the Visual Environment in Buildings
source Carnegie Mellon University, Pittsburgh
summary Despite significant advances in the area of computational support for lighting design, lighting simulation tools have not been sufficiently integrated into the lighting design process. There is a significant body of designers who rely solely on their individual experience and do not use predictive simulation tools. Even when simulation tools are utilized, it is for design verification or presentation rather than for design support. A number of factors are thought to contribute to this lack of integration of simulation tools into the design process: a) Most existing tools rely on the problematic assumption implying the appropriateness of simplified models for the less complex early design and detailed simulation for the more complex later stages of design; b) They do not support an active exploration of design variables to satisfy desired performance criteria; c) They are not integrated with other building performance simulation models. This thesis addresses the above shortcomings by contributing to the field of visual analysis in the following areas, pertaining to the development of active, integrated design and performance simulation environments: - Implementation of a consistent and coherent, physically-based modeling approach, combining radiosity and ray-tracing methods for the simulation of light propagation. - Provision of design support both in terms of evaluation support for interpreting large amounts of computed data with diverse performance indices, and in terms of active design support to explore the relationships between the design variables and performance indices. - Integration of the lighting simulation module within a larger software environment (SEMPER) for the prediction and evaluation of multiple performance indicators (for energy, light, acoustics, etc.) in buildings.
series thesis:PhD
last changed 2003/02/12 22:37

_id 7a52
authors Wong, Wilson and Kvan, Thomas
year 1999
title Textual support of collaborative design
doi https://doi.org/10.52842/conf.acadia.1999.168
source Media and Design Process [ACADIA ‘99 / ISBN 1-880250-08-X] Salt Lake City 29-31 October 1999, pp. 168-176
summary Discussions of media in architectural design typically revolve around graphical forms, be they digital or analog. For example, much current research addresses the relationship between design sketching and cognitive process affecting the products of individual designers. This emphasis on graphics overshadows the role of text in design. While most CAD tools pursue increasingly realistic computer graphics, the interactions of designing require broader support. In this paper, we consider the importance of text in collaborative architectural design. Text is a common medium to record information in computer technology and has a role to play in an architectural design process. In the collaborative environment, a shared understanding and preserved history are important for communication. In this way, just as graphics can be seen as a cognitive aid, so too can text. Any singular design medium is insufficient to present the design idea thoroughly. Several design media should coexist. This paper outlines the cognitive background graphics in design, then reviews the role of text in design collaboration, drawing upon experimental results from cognitive science and architectural settings. As a conclusion, the paper sets out a direction for future research and development of tools to support collaborative design communication.
series ACADIA
email
last changed 2022/06/07 07:57

_id cf2011_p109
id cf2011_p109
authors Abdelmohsen, Sherif; Lee Jinkook, Eastman Chuck
year 2011
title Automated Cost Analysis of Concept Design BIM Models
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. 403-418.
summary AUTOMATED COST ANALYSIS OF CONCEPT DESIGN BIM MODELS Interoperability: BIM models and cost models This paper introduces the automated cost analysis developed for the General Services Administration (GSA) and the analysis results of a case study involving a concept design courthouse BIM model. The purpose of this study is to investigate interoperability issues related to integrating design and analysis tools; specifically BIM models and cost models. Previous efforts to generate cost estimates from BIM models have focused on developing two necessary but disjoint processes: 1) extracting accurate quantity take off data from BIM models, and 2) manipulating cost analysis results to provide informative feedback. Some recent efforts involve developing detailed definitions, enhanced IFC-based formats and in-house standards for assemblies that encompass building models (e.g. US Corps of Engineers). Some commercial applications enhance the level of detail associated to BIM objects with assembly descriptions to produce lightweight BIM models that can be used by different applications for various purposes (e.g. Autodesk for design review, Navisworks for scheduling, Innovaya for visual estimating, etc.). This study suggests the integration of design and analysis tools by means of managing all building data in one shared repository accessible to multiple domains in the AEC industry (Eastman, 1999; Eastman et al., 2008; authors, 2010). Our approach aims at providing an integrated platform that incorporates a quantity take off extraction method from IFC models, a cost analysis model, and a comprehensive cost reporting scheme, using the Solibri Model Checker (SMC) development environment. Approach As part of the effort to improve the performance of federal buildings, GSA evaluates concept design alternatives based on their compliance with specific requirements, including cost analysis. Two basic challenges emerge in the process of automating cost analysis for BIM models: 1) At this early concept design stage, only minimal information is available to produce a reliable analysis, such as space names and areas, and building gross area, 2) design alternatives share a lot of programmatic requirements such as location, functional spaces and other data. It is thus crucial to integrate other factors that contribute to substantial cost differences such as perimeter, and exterior wall and roof areas. These are extracted from BIM models using IFC data and input through XML into the Parametric Cost Engineering System (PACES, 2010) software to generate cost analysis reports. PACES uses this limited dataset at a conceptual stage and RSMeans (2010) data to infer cost assemblies at different levels of detail. Functionalities Cost model import module The cost model import module has three main functionalities: generating the input dataset necessary for the cost model, performing a semantic mapping between building type specific names and name aggregation structures in PACES known as functional space areas (FSAs), and managing cost data external to the BIM model, such as location and construction duration. The module computes building data such as footprint, gross area, perimeter, external wall and roof area and building space areas. This data is generated through SMC in the form of an XML file and imported into PACES. Reporting module The reporting module uses the cost report generated by PACES to develop a comprehensive report in the form of an excel spreadsheet. This report consists of a systems-elemental estimate that shows the main systems of the building in terms of UniFormat categories, escalation, markups, overhead and conditions, a UniFormat Level III report, and a cost breakdown that provides a summary of material, equipment, labor and total costs. Building parameters are integrated in the report to provide insight on the variations among design alternatives.
keywords building information modeling, interoperability, cost analysis, IFC
series CAAD Futures
email
last changed 2012/02/11 19:21

_id 36d3
authors Af Klercker, Jonas
year 1999
title A CAVE-Interface in CAAD-Education?
doi https://doi.org/10.52842/conf.caadria.1999.313
source CAADRIA '99 [Proceedings of The Fourth Conference on Computer Aided Architectural Design Research in Asia / ISBN 7-5439-1233-3] Shanghai (China) 5-7 May 1999, pp. 313-323
summary The so called "CAVE-interface" is a very interesting and thrilling development for architects! It supports a better illusion of space by exposing almost a 270° view of a computer model than the 60° which can be viewed on an ordinary computer screen. At the Lund University we have got the possibility to experiment with a CAVE-installation, using it in research and the education of CAAD. The technique and three experiments are discribed. The possibilities are discussed and some problems and questions are put forward.
series CAADRIA
email
last changed 2022/06/07 07:54

_id 4d95
authors Alvarado, Rodrigo Garcia and Maver, Tom
year 1999
title Virtual Reality in Architectural Education: Defining Possibilities
doi https://doi.org/10.52842/conf.acadia.1999.007
source ACADIA Quarterly, vol. 18, no. 4, pp. 7-9
summary Introduction: virtual reality in architecture Virtual Reality (VR) is an emergent computer technology for full 3D-simulations, which has a natural application in the architectural work, due that activity involves the complete definition of buildings prior to its construction. Although the profession has a long tradition and expertise in the use of 2D-plans for the design of buildings, the increasing complexity of projects and social participation requires better media of representation. However, the technological promise of Virtual Reality involves many sophisticated software and hardware developments. It is based on techniques of 3D-modelling currently incorporated in the majority of drawing software used in architecture, and also there are several tools for rendering, animation and panoramic views, which provide visual realism. But other capabilities like interactivity and sense of immersion are still complex, expensive and under research. These require stereoscopic helmets, 3D pointers and trackers with complicated configurations and uncomfortable use. Most advanced installations of Virtual-Reality like CAVEs involve much hardware, building space and restrictions for users. Nevertheless, diverse developers are working in Virtual-Reality user-friendly techniques and there are many initial experiences of architectural walk-throughs showing advantages in the communication and development of designs. Then we may expect an increasing use of Virtual Reality in architecture.
series ACADIA
email
last changed 2022/06/07 07:54

_id e78e
authors Anders, Peter
year 1999
title Anthropic Cyberspace: Defining Eletronic Space from First Principles
source III Congreso Iberoamericano de Grafico Digital [SIGRADI Conference Proceedings] Montevideo (Uruguay) September 29th - October 1st 1999, pp. 56-62
summary This paper proposes principles for the design of human-centered, anthropic cyberspaces. Starting with a brief examination of our cognitive use of space, it suggests that we address cyberspace as an extension of our mental space. The paper procedes with twelve concepts based on scientific and cultural observations with respect to individual cognition and social interaction. These concepts are general - not specific to any culture or technology in the accompanying arguments the author expands on these concepts illustrating them with examples taken from conventional and electronic media, space and cyberspace the author hopes with these conjectures to begin a discussion on the anthropology of space and its emulation.
keywords Cognition, Cyberspace, Design, Internet, Simulation, Space
series SIGRADI
email
last changed 2016/03/10 09:47

_id becb
authors Anders, Peter
year 1999
title Electronic Extension: Some implications of cyberspace for the practice of architecture
doi https://doi.org/10.52842/conf.acadia.1999.276
source Media and Design Process [ACADIA ‘99 / ISBN 1-880250-08-X] Salt Lake City 29-31 October 1999, pp. 276-289
summary This white-paper builds upon previous research to present hybrids of electronic and physical spaces as extensions of current design practice. It poses an hypothetical project - a hybrid of physical and cyberspaces - to be developed through an extrapolation of current architectural practice by fully exploiting new information technologies. The hybrid's attributes not only affect the scope of development but the very activities of the design team and client during - and after - deployment. The entire life cycle of the project is affected by its dual material and media presence. The paper concludes by discussing the effect the hybrid - here called a "cybrid" - on the occupant, and its local and global communities. It reviews the economics, administration, marketing, operation, flexibility, and extension of the project to assess its effects on these scales. The conclusions are provisional owing to the youth of the technologies. However, in laying out these issues, the author hopes to begin a discussion on effects computation will have on our built environment.
series ACADIA
email
last changed 2022/06/07 07:54

_id f317
authors Arvin, Scott A. and House, Donald H.
year 1999
title Modeling Architectural Design Objectives in Physically Based Space Planning
doi https://doi.org/10.52842/conf.acadia.1999.212
source Media and Design Process [ACADIA ‘99 / ISBN 1-880250-08-X] Salt Lake City 29-31 October 1999, pp. 212-225
summary Physically based space planning is a means for automating the conceptual design process by applying the physics of motion to space plan elements. This methodology provides for a responsive design process, which allows a designer to easily make decisions whose consequences immediately propagate throughout the design. It combines the speed of automated design methods with the flexibility of manual design methods, while adding a highly interactive quality and a sense of collaboration with the design itself. In our approach, the designer creates a space plan by specifying and modifying graphic design objectives rather than by directly manipulating primitive geometry. The plan adapts to the changing state of objectives by applying the physics of motion to its elements. For design objectives to have an effect on a physically based space plan, they need to be able to apply appropriate forces to space plan elements. Space planning can be separated into two problems, determining topological properties and determining geometric properties. Design objectives can then be categorized as topological or geometric objectives. Topological objectives influence the location of individual spaces, affecting how one space relates to another. Geometric objectives influence the size and shape of space boundaries, affecting the dimensions of individual walls. This paper focuses on how to model a variety of design objectives for use in a physically based space planning system. We describe how topological objectives, such as adjacency and orientation, can be modeled to apply forces to space locations, and how geometric objectives, such as area, proportion, and alignment, can be modeled to apply forces to boundary edges.
series ACADIA
email
last changed 2022/06/07 07:54

_id 1071
authors Asanowicz, Aleksander
year 1999
title Evolution of Computer Aided Design: Three Generations of CAD
doi https://doi.org/10.52842/conf.ecaade.1999.094
source Architectural Computing from Turing to 2000 [eCAADe Conference Proceedings / ISBN 0-9523687-5-7] Liverpool (UK) 15-17 September 1999, pp. 94-100
summary This paper describes the three generations of CAD systems. The first generation of (primarily analytical) computer programmes really aided designing. These programmes were the tools for finding a functional solution in different areas of designing, from flat plans to the space organisation of a hospital. One of the shortcomings of these programmes was the lack of graphic interface. With time, however, this kind of interface was developed. As a result of this second generation of CAD systems the computer was transformed into a drafting machine and CAD meant Computer Aided Drafting. The main thesis of this consideration is that only now we have the chance to return to the idea of Computer Aided Design. One of the examples of these trends is the AVOCAAD programme in which Added Value of CAAD is analysed. The development of the third generation of CAD systems will be possible in the near future. Aiding the process of designing will demand the elaboration of new methods of using the computer at the early stages of this process. The computer should be used not for generating variants of functional solutions only but for also for the creation of 3D forms by 3D sketching. For this, the computer should be transformed from a tool into a medium; only then will designing become true Designing in Cyber Space.
keywords Generations of CAAD, Design Process, Creation, Medium
series eCAADe
email
last changed 2022/06/07 07:54

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