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 572

_id sigradi2004_206
id sigradi2004_206
authors Felipe Carrara Moura Pussente
year 2004
title Interfaces digitais para processo de projeto participativo: Estudo de caso com mutirões [Digital Interfaces for a Participatory Project: The Case Study of mutirões]
source SIGraDi 2004 - [Proceedings of the 8th Iberoamerican Congress of Digital Graphics] Porte Alegre - Brasil 10-12 november 2004
summary This research is applied to self-managed building, objecting housing construction projects and identifying the self-managed particularities to achieve a better quality in the architectural project and a better quality of life for its users. The digital training of a group of homeless people can expanded through the distribution of interfaces over the internet, developing methodological procedures at the process of conception, implementation and enlargement of housing construction in self-managed building. The making of interactive interface is analyzed through experimentation and workshops done with homeless people having the goal to be totally friendly to its user, not letting him become confused or bored.
series SIGRADI
email
last changed 2016/03/10 09:51

_id ecaade2008_081
id ecaade2008_081
authors LaBelle, Guillaum; Nembrini, Julien; Huang , Jeffrey
year 2008
title Simulation-Driven Design System
doi https://doi.org/10.52842/conf.ecaade.2008.469
source Architecture in Computro [26th eCAADe Conference Proceedings / ISBN 978-0-9541183-7-2] Antwerpen (Belgium) 17-20 September 2008, pp. 469-476
summary This paper presents a design process efficiently involving parametric design, realistic physical simulation and rapid-prototyping fabrication for contextual shape adaptation. This case study focuses on lighting simulation for the specific problem of solar energy harvesting. Inspired by the phototropic mechanism, the ability of plants to grow according to the availability of light, an innovative design technique is defined, taking its root in the morphogenetic design school [Hensel, 2004].
keywords Parametric,Simulation, Generative Design, CAD, Phototropism
series eCAADe
email
last changed 2022/06/07 07:52

_id ascaad2006_paper29
id ascaad2006_paper29
authors Bennadji, A. and A. Bellakha
year 2006
title Evaluation of a Higher Education Self-learning Interface
source Computing in Architecture / Re-Thinking the Discourse: The Second International Conference of the Arab Society for Computer Aided Architectural Design (ASCAAD 2006), 25-27 April 2006, Sharjah, United Arab Emirates
summary This paper is a follow-up to a previous paper published in ASCAAD 2004 (A. Bennadji et al 2005). The latter reported on CASD (Computer Aided Sustainable Design) a self-learning educational interface which assists the various building’s actors in their design with a particular attention to the aspect of energy saving. This paper focuses on the importance of software evaluation and how the testing is done to achieve a better human-machine interaction. The paper will go through the summative evaluation of CASD, presents the output of this evaluation and addresses the challenge facing software developers: how to make an interface accessible to all users and specifically students in higher education.
series ASCAAD
email
last changed 2007/04/08 19:47

_id ascaad2004_paper9
id ascaad2004_paper9
authors Bennadji, A.; H. Ahriz, and P. Alastair
year 2004
title Computer Aided Sustainable Design
source eDesign in Architecture: ASCAAD's First International Conference on Computer Aided Architectural Design, 7-9 December 2004, KFUPM, Saudi Arabia
summary One of the most important aspects architects need to consider fairly early on is that of energy saving, cost, thermal comfort and the effect on the environment in terms of CO2 emissions. At present, during the early design stage of a building, different options are assessed using simple tools (tables, graphs and software) that contain a large number of assumptions the very nature of which can bias choice or possibly lead to an inappropriate solution. It can be argued that the only way to provide a rational assessment of options is to use calculation methods that represent in detail the physical processes involved; this usually involves the use of dynamic thermal models. Furthermore if this tool is also used during detailed design it would introduce a consistency that is normally absent from the analytical design process. Many designers are of the opinion that, because not all details are known, then such tools are not suitable for application at early stages in the design. This view can be challenged because, even at the concept stage, a great deal is known about a building. This paper aims to show that a general description of a building can be used to generate sufficient data to drive a valid analysis using a detailed thermal model at the early sketch stage of the design process. The paper describes the philosophy, methodology and the interface developed to achieve this aim. The interface guides the user through the input process using a series of screens giving options for keywords used to describe the building; comprehensive default data built into the software are then attached to these keywords. The resulting data file is a building description that is the best possible interpretation of the design intent. This can then be used to assess options and guide towards a final design.
series ASCAAD
email
last changed 2007/04/08 19:47

_id acadia07_174
id acadia07_174
authors Bontemps, Arnaud; Potvin, André; Demers, Claude
year 2007
title The Dynamics of Physical Ambiences
doi https://doi.org/10.52842/conf.acadia.2007.174
source Expanding Bodies: Art • Cities• Environment [Proceedings of the 27th Annual Conference of the Association for Computer Aided Design in Architecture / ISBN 978-0-9780978-6-8] Halifax (Nova Scotia) 1-7 October 2007, 174-181
summary This research proposes to support the reading of physical ambiences by the development of a representational technique which compiles, in a numerical interface, two types of data: sensory and filmic. These data are recorded through the use of a portable array equipped with sensors (Potvin 1997, 2002, 2004) as well as the acquisition of Video information of the moving environment. The compilation of information is carried out through a multi-media approach, by means of a program converting the environmental data into dynamic diagrams, as well as the creation of an interactive interface allowing a possible diffusion on the Web. This technique, named APMAP/Video, makes it possible to read out simultaneously spatial and environmental diversity. It is demonstrated through surveys taken at various seasons and time of the day at the new Caisse de dépôt et de placement headquarters in Montreal which is also the corpus for a SSHRC (Social Sciences and Humanities Research Council) research grant on Environmental Adaptability in Architecture (Potvin et al. 2003-2007). This case study shows that the technique can prove of great relevance for POEs (Post Occupancy Evaluation) as well as for assistance in a new design project.
series ACADIA
email
last changed 2022/06/07 07:54

_id cf2011_p157
id cf2011_p157
authors Boton, Conrad; Kubicki Sylvain, Halin Gilles
year 2011
title Understanding Pre-Construction Simulation Activities to Adapt Visualization in 4D CAD Collaborative Tools
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. 477-492.
summary Increasing productivity and efficiency is an important issue in the AEC field. This area is mainly characterized by fragmentation, heterogeneous teams with low lifetimes and many uncertainties. 4D CAD is one of the greatest innovations in recent years. It consists in linking a 3D model of the building with the works planning in order to simulate the construction evolution over time. 4D CAD can fill several needs from design to project management through constructivity analysis and tasks planning (Tommelein 2003). The literature shows that several applications have been proposed to improve the 4D CAD use (Chau et al. 2004; Lu et al. 2007; Seok & al. 2009). In addition, studies have shown the real impact of 4D CAD use in construction projects (Staub-French & Khanzode 2007; Dawood & Sika 2007). More recently, Mahalingam et al. (2010) showed that the collaborative use of 4D CAD is particularly useful during the pre-construction phase for comparing the constructability of working methods, for visually identifying conflicts and clashes (overlaps), and as visual tool for practitioners to discuss and to plan project progress. So the advantage of the 4D CAD collaborative use is demonstrated. Moreover, several studies have been conducted both in the scientific community and in the industrial world to improve it (Zhou et al. 2009; Kang et al. 2007). But an important need that remains in collaborative 4D CAD use in construction projects is about the adaptation of visualization to the users business needs. Indeed, construction projects have very specific characteristics (fragmentation, variable team, different roles from one project to another). Moreover, in the AEC field several visualization techniques can represent the same concept and actors choose one or another of these techniques according to their specific needs related to the task they have to perform. For example, the tasks planning may be represented by a Gantt chart or by a PERT network and the building elements can be depicted with a 3D model or a 2D plan. The classical view (3D + Gantt) proposed to all practitioners in the available 4D tools seems therefore not suiting the needs of all. So, our research is based on the hypothesis that adapting the visualization to individual business needs could significantly improve the collaboration. This work relies on previous ones and aim to develop a method 1) to choose the best suited views for performed tasks and 2) to compose adapted multiple views for each actor, that we call “business views”. We propose a 4 steps-method to compose business views. The first step identifies the users’ business needs, defining the individual practices performed by each actor, identifying his business tasks and his information needs. The second step identifies the visualization needs related to the identified business needs. For this purpose, the user’s interactions and visualization tasks are described. This enables choosing the most appropriate visualization techniques for each need (step 3). At this step, it is important to describe the visualization techniques and to be able to compare them. Therefore, we proposed a business view metamodel. The final step (step 4) selects the adapted views, defines the coordination mechanisms and the interaction principles in order to compose coordinated visualizations. A final step consists in a validation work to ensure that the composed views really match to the described business needs. This paper presents the latest version of the method and especially presents our latest works about its first and second steps. These include making more generic the business tasks description in order to be applicable within most of construction projects and enabling to make correspondence with visualization tasks.
keywords Pre-construction, Simulation, 4D CAD, Collaboration, Computer Supported Cooperative Work, Human-Computer Interface, Information visualization, Business view, Model driven engineering
series CAAD Futures
email
last changed 2012/02/11 19:21

_id 2004_050
id 2004_050
authors Chiu, Mao-Lin
year 2004
title Curious Agents in Virtual Exhibitive Environments Simulative Human-Computer Interaction
doi https://doi.org/10.52842/conf.ecaade.2004.050
source Architecture in the Network Society [22nd eCAADe Conference Proceedings / ISBN 0-9541183-2-4] Copenhagen (Denmark) 15-18 September 2004, pp. 50-57
summary The creation of virtual environments is becoming the alternative for spatial design, while what can be expanded from the real environment is often questioned. This paper proposes the agent interface based on curiosity to create human computer interaction in virtual exhibitive environments. From a social and behavioral point of view, this research explores the use of places as metaphors and simulative human-computer interactions in virtual environments by reactive agents and proactive curious agents based on situation detection. The process is demonstrated by a museum exhibition project. Both the physical and the virtual environment are built, and studied the human behaviors and experiences from their presence at both environments. Agent interfaces are adopted in the virtual environment to enhance people-to-people and people-to-place interactions. The development process, the observation, the interface agent, and discussion based on the findings are presented.
keywords Virtual Environment; Digital Design; Agent; Curiosity; Interfaces
series eCAADe
email
last changed 2022/06/07 07:56

_id 2004_148
id 2004_148
authors Fatah gen. Schieck, A., Penn, A., Mottram, C., Strothmann, C., Ohlenburg, J., Broll, W. and Aish, F.
year 2004
title Interactive Space Generation through Play - Exploring Form Creation and the Role of Simulation on the Design Table
doi https://doi.org/10.52842/conf.ecaade.2004.148
source Architecture in the Network Society [22nd eCAADe Conference Proceedings / ISBN 0-9541183-2-4] Copenhagen (Denmark) 15-18 September 2004, pp. 148-158
summary In this paper we report on recent developments in ARTHUR: an approach to support complex design and planning decisions for architects together with the simulation of pedestrian movement and the integration of existing CAD tools on the design table. Following a brief introduction, past and current work that has taken a similar approach will be reviewed. Next we describe a scenario that integrates agent-based simulations of pedestrian movement with space creation, and then give an overview of the system before finally discussing findings related to recent user evaluation studies of the system. This paper suggests that the integration of simulated pedestrian movement on the design table, while going through a cycle of reflection-in-action, plays a vital role in exploring possible design solutions and encourages new and different ways of thinking about design problems.
keywords Tangible User Interface, Pedestrian Simulation, Collaboration, Augmented Reality (AR), CAD Integration
series eCAADe
last changed 2022/06/07 07:55

_id sigradi2004_236
id sigradi2004_236
authors Fernando Rodrigues Lima; Carlos Alberto Nunes Cosenza; Alessandro da Silva
year 2004
title Sistema de representação gráfica para estudo de localização de atividades ligadas ao ciclo de produção do biodiesel no nordeste brasileiro [Graphic Representation System for a Localization Study on Activities Related to the Production Cycle of Biodiesel in the Brazilian Northeast]
source SIGraDi 2004 - [Proceedings of the 8th Iberoamerican Congress of Digital Graphics] Porte Alegre - Brasil 10-12 november 2004
summary This paper presents the development of graphics interface on GIS (Georeferenced Information System) applied to a location model. The model performs an hierarchical analysis to locate activities related to the Biodiesel production cycle, based on castor oil (Ricinus communis L.). The case study is placed in Brazilian Northeast region, and indicates properly selected counties for Biodiesel major stages: planting, crushing and oil processing. The GIS was implemented on Windows with Personal Geodatabase and Feature Class, applied to SAD 69 references, and involves a large set of administrative, economical, social, environmental and agricultural data. Both partial and final results were obtained with graphical and query methods for selecting and editing data. A fuzzy set program imports territorial offer data and exports location indicators to database. Thematic maps are used for hierarchical data organisation and to perform a Biodiesel stages zone classification, based on graphical analysis of generated data.
keywords GIS, location model, digital mapping
series SIGRADI
email
last changed 2016/03/10 09:51

_id 050225_kapellos-a
id 050225_kapellos-a
authors Kapellos, Alexandre
year 2004
title Lightscape - an exploration in interactive lighting
source ETH postgraduate studies final thesis, Zurich
summary The aim was to provide a theoretical approach to the lighting project undertaken for the xCube group work. The nds2004 students had decided to build an interactive, computeroptimised structure as their final project, where lights, sensors and textured surfaces were to create an interactive experience for the visitor. For various reasons the interactive aspect was abandoned. The idea to work on a light(-ing) object came up when I discovered a little device called the Barionet™. This device allows you to control an on/off switch remotely, through a web interface or through programming. That was it! The ip_lamp (…its first name): a small object that has its own IP address, and therefore can be accessed via the internet. Turn it on or off… This evolved into the _lightscape where 2 interacting lights send each other data about the other (distance from a wall or number of people for example). The atmosphere of a room becomes dependant of what is going on in another… This work is also an attempt to develop a pluridisciplinary approach to an architectural project by making use of the many tools available to the postgraduate students: programming a simulation in Flash, experimenting with different hardware interfaces or rapidly manufacturing a light box on the 3-axis mill. A cross-over project in a (modest) way.
series thesis:MSc
last changed 2005/09/09 12:58

_id ddss2004_ra-213
id ddss2004_ra-213
authors Penn, A., C. Mottram, A. Fatah gen. Schieck, M. Wittkämper, M. Störring, O. Romell, A. Strothmann, and F. Aish
year 2004
title AUGMENTED REALITY MEETING TABLE: A NOVEL MULTI-USER INTERFACE FOR ARCHITECTURAL DESIGN
source Van Leeuwen, J.P. and H.J.P. Timmermans (eds.) Recent Advances in Design & Decision Support Systems in Architecture and Urban Planning, Dordrecht: Kluwer Academic Publishers, ISBN: 1-4020-2408-8, p. 213-231
summary Immersive virtual environments have received widespread attention as providing possible replacements for the media and systems that designers traditionally use, as well as, more generally, in providing support for collaborative work. Relatively little attention has been given to date however to the problem of how to merge immersive virtual environments into real world work settings, and so to add to the media at the disposal of the designer and the design team, rather than to replace it. In this paper we report on a research project in which optical see-through augmented reality displays have been developed together with prototype decision support software for architectural and urban design. We suggest that a critical characteristic of multi user augmented reality is its ability to generate visualisations from a first person perspective in which the scale of rendition of the design model follows many of the conventions that designers are used to. Different scales of model appear to allow designers to focus on different aspects of the design under consideration. Augmenting the scene with simulations of pedestrian movement appears to assist both in scale recognition, and in moving from a first person to a third person understanding of the design. This research project is funded by the European Commission IST program (IST-2000-28559).
keywords Design Collaboration, Tangible Interface, Gesture, Agent Simulation, Augmented Reality
series DDSS
type normal paper
last changed 2004/07/03 23:11

_id ddss2004_d-49
id ddss2004_d-49
authors Polidori, M. and R. Krafta
year 2004
title Environment – Urban Interface within Urban Growth
source Van Leeuwen, J.P. and H.J.P. Timmermans (eds.) Developments in Design & Decision Support Systems in Architecture and Urban Planning, Eindhoven: Eindhoven University of Technology, ISBN 90-6814-155-4, p. 49-62
summary This work presents the synthesis of a model of urban growth dedicated to accomplish simulations of urban spatial dynamics, based on integrated urban and environmental factors and promoting simultaneity among external and internal growth. The city and surrounding environment are captured and modeled in computational ambient, by application of the centrality / potential model (Krafta, 1994 and 1999), with support of graph theory, cellular automata, GIS and geocomputation. The model assumes the city as a field of opportunities for obtaining income, mediated by the space, which is composed of urban and environmental attributes, that work as attractors or as resistances for the urban growth. The space configuration and the distribution of those attributes generate tensions that differentiate qualitatively and quantitatively the space, through the centrality measure (built with the support of graphs techniques), coming to provoke growth in places with larger potential of development (built with the help of techniques of CA – cellular automata). Growths above environmental thresholds are considered problems, generated and overcome in the same process of production of the urban space. Iterations of that process offer a dynamic behaviour to the model, allowing to observe the growth process along the time. The model presents several possibilities: a) urban - natural environment integration; b) internal and external growth integration; c) variety in the scale; d) GIS integration and geocomputation; e) user interface; f) calibration; g) theoretical possibilities; and h) practical possibilities.
keywords Environment, Urban Growth, Urban Morphology, Simulation
series DDSS
last changed 2004/07/03 22:13

_id ddss2004_ra-325
id ddss2004_ra-325
authors Rodrigues, D.S., L.C.L. Souza, and J.F.G. Mendes
year 2004
title Enhancing 3DSkyView Extension Performance
source Van Leeuwen, J.P. and H.J.P. Timmermans (eds.) Recent Advances in Design & Decision Support Systems in Architecture and Urban Planning, Dordrecht: Kluwer Academic Publishers, ISBN: 1-4020-24088, p. 325-340
summary This paper presents a second version of the 3DSkyView extension. The purpose of that extension was to implement a calculation algorithm for assessment and visualization of sky view factors (SVF) by means of tools available in a Geographical Information System (GIS). The sky view factor is a thermal and geometric parameter pointed out in the specialized literature as one of the main causes of urban heat islands. A 3D-GIS is a powerful tool for reaching the goal of this research because it allows the storage, treatment and analysis of tri-dimensional urban data, in addition to a high level of flexibility for incorporating calculation algorithms. The objective in the 3DSkyView extension is to optimize the determination of that factor, not only reducing its demanding calculation and graphical representation time, but also generating a simplified tool for replacing expensive photographic equipment usually applied on this matter. Enhancing functions of ArcView GIS 3.2, the first version of that extension showed a very good performance allowing the automatic delineation and determination of SVF. That performance was although limited to a single observer point. The simulation of SVF for several view points in urban canyons was only possible by applying the extension as many times as the number of observers considered. Therefore, this second version was now developed in order to allow simultaneous determination of SVF for many view points. In addition, the 3DSkyView new interface is more flexible, in a way that the user may choose the kind of output wanted (graphical and/or tabular). With this new feature it is then easier to create a continuous SVF map for an entire area.
keywords Sky View Factor, Urban Geometry, GIS Extension, Urban Heat Island
series DDSS
last changed 2004/07/03 22:13

_id caadria2018_016
id caadria2018_016
authors Zahedi, Ata and Petzold, Frank
year 2018
title Utilization of Simulation Tools in Early Design Phases Through Adaptive Detailing Strategies
doi https://doi.org/10.52842/conf.caadria.2018.2.011
source T. Fukuda, W. Huang, P. Janssen, K. Crolla, S. Alhadidi (eds.), Learning, Adapting and Prototyping - Proceedings of the 23rd CAADRIA Conference - Volume 2, Tsinghua University, Beijing, China, 17-19 May 2018, pp. 11-20
summary Decisions taken at early stages of building design have a significant effect on the planning steps for the entire lifetime of the project as well as the performance of the building throughout its lifecycle (MacLeamy 2004). Building Information Modelling (BIM) could bring forward and enhance the planning and decision-making processes by enabling the direct reuse of data hold by the model for diverse analysis and simulation tasks (Borrmann et al. 2015). The architect today besides a couple of simplified simulation tools almost exclusively uses his know-how for evaluating and comparing design variants in the early stages of design. This paper focuses on finding new ways to facilitate the use of analytical and simulation tools during the important early phases of conceptual building design, where the models are partially incomplete. The necessary enrichment and proper detailing of the design model could be achieved by means of dialogue-based interaction concepts with analytical and simulation tools through adaptive detailing strategies. This concept is explained using an example scenario for design process. A generic description of the aimed dialog-based interface to various simulation tools will also be discussed in this paper using an example scenario.
keywords BIM; Early Design Stages; Adaptive Detailing ; Communication Protocols; Design Variants
series CAADRIA
email
last changed 2022/06/07 07:57

_id sigradi2004_043
id sigradi2004_043
authors Celso Pereira Guimarães; Gerson G. Cunha; Luis Landau
year 2004
title Sistema de informação e orientação para ambientes públicos em VR - O caso do hu da ufrj um projeto sinalético [Information and Orientation System for Public Environments in VR - The Case of UFRJ University Hospital, a Communication Design Project]
source SIGraDi 2004 - [Proceedings of the 8th Iberoamerican Congress of Digital Graphics] Porte Alegre - Brasil 10-12 november 2004
summary Considering Levy.s (1996) thought that qualifies the cyberspace as an anbient par excellence and susceptible to be transformed and explored [1], our work intends to introduce through the simulation in VR, the use of that anbient as support of conception projetual and of the analysis and verification of the efficiency of the proposal of the System of Comunication Design implanted at the Hospital Clementino Fraga Filho of the Federal University of Rio de Janeiro (HU). [2]
series SIGRADI
email
last changed 2016/03/10 09:48

_id acadia08_072
id acadia08_072
authors Frumar, Jerome
year 2008
title An Energy Centric Approach to Architecture: Abstracting the material to co-rationalize design and performance
doi https://doi.org/10.52842/conf.acadia.2008.072
source Silicon + Skin: Biological Processes and Computation, [Proceedings of the 28th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA) / ISBN 978-0-9789463-4-0] Minneapolis 16-19 October 2008, 72-81
summary This paper begins by exploring matter as an aggregated system of energy transactions and modulations. With this in mind, it examines the notion of energy driven form finding as a design methodology that can simultaneously negotiate physical, environmental and fabrication considerations. The digital workspace enables this notion of form finding to re-establish itself in the world of architecture through a range of analytic tools that algorithmically encode real world physics. Simulating the spatial and energetic characteristics of reality enables virtual “form generation models that recognize the laws of physics and are able to create ‘minimum’ surfaces for compression, bending [and] tension” (Cook 2004). The language of energy, common in engineering and materials science, enables a renewed trans-disciplinary dialogue that addresses significant historic disjunctions such as the professional divide between architects and engineers. Design becomes a science of exploring abstracted energy states to discover a suitable resonance with which to tune the built environment. ¶ A case study of one particular method of energy driven form finding is presented. Bi-directional Evolutionary Structural Optimization (BESO) is a generative engineering technique developed at RMIT University. It appropriates natural growth strategies to determine optimum forms that respond to structural criteria by reorganizing their topology. This dynamic topology response enables structural optimization to become an integrated component of design exploration. A sequence of investigations illustrates the flexibility and trans-disciplinary benefits of this approach. Using BESO as a tool for design rather than purely for structural optimization fuses the creative approach of the architect with the pragmatic approach of the engineer, enabling outcomes that neither profession could develop in isolation. The BESO case study alludes to future design processes that will facilitate a coherent unfolding of design logic comparable to morphogenesis.
keywords Energy; Form-Finding; Morphogenesis; Optimization; Structure
series ACADIA
last changed 2022/06/07 07:50

_id 2004_500
id 2004_500
authors Hanzl, Malgorzata and Wrona, Stefan
year 2004
title Visual Simulation as a Tool for Planning Education - Computer Aided Participation Support
doi https://doi.org/10.52842/conf.ecaade.2004.500
source Architecture in the Network Society [22nd eCAADe Conference Proceedings / ISBN 0-9541183-2-4] Copenhagen (Denmark) 15-18 September 2004, pp. 500-507
summary Contemporary computer techniques offer many new opportunities to engage citizens into the planning process. There are new possibilities of interaction, introducing an observer into the “game”. The research project presented in the paper assumes the use of a visual 3D language which consists of a series of schematic types of buildings. They form a language which is easy to understand both by professionals and by laymen. Understanding is the very first step towards getting convinced by the ideas presented. The next step is interaction - the user’s action induces the response of the system. The solution proposed by the user meets an evaluation from the part of the system which evokes the user’s interest - in the case presented here the evaluation introduces the simulation of future state of the site. The problem posed is to find out the best way to convince people that some places are less or more suitable for settlement, depending on the media present there, distance from the urban areas and the environment protection. The attempt to create a tool which could be helpful in an educational process is described in the paper. The idea is to prepare a form of a master plan record which uses the visual 3D language and may be accessed via World Wide Web pages. The paper formulates the assessments for the software described above and examines the possibility to create an application. The trial to prepare a web based service using the flash and shockwave technology is presented.
series eCAADe
email
last changed 2022/06/07 07:49

_id 113caadria2004
id 113caadria2004
authors Hong-Sheng Chen
year 2004
title Case-Based Simulation As a Technique for Assisting Architectural Design
doi https://doi.org/10.52842/conf.caadria.2004.189
source CAADRIA 2004 [Proceedings of the 9th International Conference on Computer Aided Architectural Design Research in Asia / ISBN 89-7141-648-3] Seoul Korea 28-30 April 2004, pp. 189-198
summary In this research, I propose a case-based simulation method for experimenting with a set of models aimed at analyzing the behavior of a dynamic system. Owing to the assistance of CBRWorks4 software, this idea is successfully tested and implemented on the Internet. A set of evacuation simulations, which model complex human behavior in a building in certain emergency situations, leads to some discoveries and conclusions.
series CAADRIA
email
last changed 2022/06/07 07:50

_id ijac20032202
id ijac20032202
authors Sarawgi, Tina
year 2004
title Determining the Suitability of Computer-Aided Daylight Simulation Method in the Design Process
source International Journal of Architectural Computing vol. 2 - no. 2
summary The successful use of daylight in a building requiresthat the associated forms and devices be conceived asan integral part of the architectural design. Thepopular methods of simulation for daylighting design:manual methods, physical scale model and computergraphics based rendering do not provide a robustmodel for daylighting decision-making during thedesign process due to their individual limitations. Therecent advances in computer-aided design andrendering compel another look at visually simulatingdaylight. This paper discusses a project undertaken totest a computer-aided daylight simulation program’saccuracy and ability to allow quick iterative daylightexplorations, essential to any design decision-makingprocess. Real buildings with their existing complexitiesare selected as case studies. The outcomes arediscussed and recommendations for future daylightsimulation software programs to be suitable in thedesign process are suggested.
series journal
more http://www.multi-science.co.uk/ijac.htm
last changed 2007/03/04 07:08

_id ijac20032205
id ijac20032205
authors Yi-Luen Do, Ellen; Gross, Mark D.
year 2004
title Let There be Light! Knowledge-Based 3-D Sketching Design Tools
source International Journal of Architectural Computing vol. 2 - no. 2
summary This paper presents a framework for 3D knowledgebasedsketching tools for lighting design and twosoftware prototypes built to illustrate sketch-basedinteraction with intelligent systems in 3-D domains.Spot supports direct sunlight simulation andvisualization in a selected time period and Light Pensupports placement of electric lighting designs to lightan intended area in space. In both examples, a 3-Dsketching front-end is coupled with a back-endknowledge-based system. This enables a designer topose a problem by drawing onto a 3-D model towhich the knowledge-based system offers a solution –in one case by providing quantitative data analysis; inthe other by modifying the 3-D model. Spot and LightPen’s specific domain of architectural lighting designexemplifies a more general class of 3-D interactionwith intelligent systems.
series journal
email
more http://www.multi-science.co.uk/ijac.htm
last changed 2007/03/04 07:08

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