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

PDF papers
References

Hits 1 to 20 of 557

_id ijac20075202
id ijac20075202
authors El-Hakim, Sabry; Gonzo, Lorenzo; Voltolini, Francesca; Girardi, Stefano; Rizzi, Alessandro; Remondino, Fabio; Whiting, Emily
year 2007
title Detailed 3D Modelling of Castles
source International Journal of Architectural Computing vol. 5 - no. 2, pp. 200-220
summary Digitally documenting complex heritage sites such as castles is a desirable yet difficult task with no established framework. Although 3D digitizing and modelling with laser scanners, Photogrammetry, and computer aided architectural design (CAAD) are maturing, each alone is inadequate to model an entire castle in details. We present a sequential approach that combines multiple techniques, each where best suited, to capture and model the fine geometric detail of castles. We provide new contributions in several areas: an effective workflow for castle 3D modelling, increasing the level of automation and the seamless integration of models created independently from different data sets. We tested the approach on various castles in Northern Italy and the results demonstrated that it is effective, accurate, and creates highly detailed models suitable for interactive visualization. It is also equally applicable to other types of large complex architectures.
series journal
last changed 2007/08/29 16:23

_id bsct_fotiadou
id bsct_fotiadou
authors Fotiadou, Angeliki
year 2007
title Analysis of Design Support for Kinetic Structures
source Vienna University of Technology; Building Science & Technology
summary This thesis attempts the formation and systemization of a basis of knowledge and information, which is indispensable to turn a design support for kinetic structures into representation by means of a 3d animating program. Representation of kinetic structures by means of the existing ordinary software sources is possible; Nevertheless, such representation lacks of different important features and functions and results eventually in the total absence of a real model of the construction, which is valuable to the user of the program especially in the field of the kinetics, where everything depends on the movement: design not only requires, but demands for visualisation. A personal interest in kinetic architecture and therefore in the physical movement of structural elements in a building, as well as an attempt to “fathom” the possibility of changing this concept to visualization and modern reality by the use of a software are the main incentives of this master thesis. First, a general research will be performed in order to check the existence of similar or semisimilar proposals. The area in which the research will be held is the Bibliography in kinetic architecture and parametric design. A comparison of animation and 3D prototype software in well-known programs will focus on whether virtual weather conditions are considered as a parameter to the animation of the structure of the programs and case studies of several existing kinetic structures will be performed, in order to point out flaws and/or helpful commands in the programs in connection with the presentation of kinetic architecture. Criteria for the choice of the software: ability to customise and to produce geometric modelling, animation in relation to time (video animation) and the simulation after taking into consideration weather factors. Finally, using the computer and the scripting language, based probably on the theory of parametric design and primitive instancing, a realistic simulation of different elements will be performed in relation to variable measurements of luminance, ventilation and temperature so as to render feasible the construction of a whole structure. The results of the thesis will be used in the future as the basic knowledge in the creation of software for simulation of kinetic architecture. This program will be used as a tool for the architect to present a building, where kinetic architecture will be applied and to create simulation of the kinetic movement through a library of the existing prefabricated elements which will be created with the help of this thesis.
keywords Kinetic architecture, 3D designing software, scripting, programming
series thesis:MSc
email
more http://cec.tuwien.ac.at
last changed 2007/07/16 17:51

_id 9da7
id 9da7
authors Jong, S J, Soon, E H and Rafi, A
year 2007
title Exploring motion sequence of virtual characters: Experimenting motion-capture variables
source Proceedings of the 2nd International Conference on Geometric Modelling and Imaging (GMAI 07), ETH Zurich, Switzerland, 4-6 July, 91-96.
summary The purpose of the research is to study the detail of motion of various subjects with differences in physical attributes. The research outlines how different physique produces different behavioural patterns based upon mass and proportion. This research focuses on ‘walk motion’ to identify the differences in each subject’s physical attributes by sampling subjects of physical differences. This experiment employs Vicon8i® Optical Motion Capture system (MOCAP) to study the detail of human motion by extracting the subjects’ core motions for analysis with pre-defined actions. The research used the findings to establish the relationship between height and weight against motion frequencies in 3D space.
keywords human motion, actor physique, motion capture, motion editing, core motion
series other
type normal paper
email
last changed 2007/09/11 02:31

_id acadia07_074
id acadia07_074
authors Peters, Brady
year 2007
title The Smithsonian Courtyard Enclosure: A Case-Study of Digital Design Processes
doi https://doi.org/10.52842/conf.acadia.2007.074
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, 74-83
summary This paper outlines the processes involved in the design of the Smithsonian Institution’s Patent Office Building’s new courtyard enclosure. In 2004, Foster + Partners won an invited international competition to design the new courtyard enclosure in Washington, D.C. Early in the project, the Specialist Modelling Group (SMG), an internal research and design consultancy, was brought in to advise the project team on computer modelling techniques, develop new digital design tools, and help solve the complex geometric issues involved. Throughout the project, computer programming was used as one of the primary tools to explore design options. The design constraints were encoded within a system of associated geometries. This set-out geometry performed as a mechanism to control the parameters of a generative script. The design evolution involved the use of many different media and techniques and there was an intense dialog between a large team and many consultants. The computer script was a synthesis of the design ideas and was constantly modified and adapted during the design process. The close collaboration between architects, consultants, and fabricators was of key importance to the success of the project. This project, now named The Robert and Arlene Kogod Courtyard, will complete in late 2007.
series ACADIA
email
last changed 2022/06/07 08:00

_id bsct_ahmeti
id bsct_ahmeti
authors Ahmeti, Flamur
year 2007
title Efficiency of Lightweight Structural Forms: The Case of Treelike Structures - A comparative Structural Analysis
source Vienna University of Technology; Building Science & Technology
summary This work addresses the structural efficiency of lightweight tree-like structures for three case studies: Stuttgart Airport, Beaverton Library, and Thermal Bad Oeyenhausen. The case studies are simulated using Build simulation software, to determine the stresses induced in each structure. The material efficiency and shapes areexplored in terms of load bearing structures. Hybrids of the above structures are formed to compare the pattern morphology used by various types of tree-like structure and assess the structural behavior. In addition, (steel, wood and concrete) materials are compared to determine which would have better structural performance. In order to show the resemblance between the growing trees and the tree-like structures, an example of both cases is simulated and stresses evaluated. Results show that, in general, the minimum stress and deformations are obtained for steel. Structures made out of this material also exhibit higher load bearing capability, optimum stability factors and the best geometric efficiency, inspite of higher specific weight (10 times wood, and 3 times concrete).
series thesis:MSc
email
more http://cec.tuwien.ac.at
last changed 2007/07/16 17:51

_id ascaad2007_034b
id ascaad2007_034b
authors Ambrose, M.A.
year 2007
title Body|Form|Space: Geometric translations of the body in motion
source Em‘body’ing Virtual Architecture: The Third International Conference of the Arab Society for Computer Aided Architectural Design (ASCAAD 2007), 28-30 November 2007, Alexandria, Egypt, pp. 431-438
summary This paper presents a novel approach to digital investigation of body, space, form and motion to expose issues of spatial perception. The spatial experience as generated from, and translated by, the human body is the focus of this work. The work explores the representational value of the body’s sense-image, the context and spatial/visual literacy of the learned sense of space-time generated from the study of the human body. Here the body is conceived not just in space but also in time, affording the ability to reinterpret the body and it’s dynamic motion engaged not as a static condition, but as a set of event spaces. Motion here is defined as a multiplicity of continuities that can be subdivided by artificial boundaries that describe space, time and body. The study of a series of bodies and movements is described that explore the human condition as a series of differential lines (form + time) and framed structures (bodies + motion). The intention is to examine the relationship between human form and metaphysical simultaneity as generators of architectural form. The work is structured by a research approach that dissects and isolates the representational concept/image from the body in a way that might offer an alternative description to the traditional historic models.
series ASCAAD
email
last changed 2008/01/21 22:00

_id ijac20075402
id ijac20075402
authors Burry, Jane R.
year 2007
title Mindful Spaces: Computational Geometry and the Conceptual Spaces in which Designers Operate
source International Journal of Architectural Computing vol. 5 - no. 4, pp. 611-624
summary Combinatorial computational geometry, while dealing with geometric objects as discrete entities, provides the means both to analyse and to construct relationships between these objects and relate them to other non-geometrical entities. This paper explores some ways in which this may be used in design through a review of six, one-semester-long design explorations by undergraduate and postgraduate students in the Flexible Modeling for Design and Prototyping course between 2004 and 2007. The course focuses on using computational geometry firstly to construct topologically defined design models based on graphs of relationships between objects (parametric design,) and concurrently to output physical prototypes from these "flexible models"(an application of numerical computational geometry). It supports students to make early design explorations. Many have built flexible models to explore design iterations for a static spatial outcome. Some have built models of real time responsive dynamic systems. In this educational context, computational geometry has enabled a range of design iterations that would have been challenging to uncover through physical analogue means alone. It has, perhaps more significantly, extended the students' own concept of the space in which they design.
series journal
email
last changed 2008/02/25 20:30

_id acadia07_104
id acadia07_104
authors Chen, Chien-Lin; Johnson, Brian R.
year 2007
title DVIN: A Dual View Information Navigation System
doi https://doi.org/10.52842/conf.acadia.2007.104
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, 104-109
summary Differences in the preferred modes of representation of architects and their clients create challenges to their collaboration in the design process. Traditional two-dimensional drawings such as plans, sections and elevations form the backbone of architectural representation, anchoring text labels to record relevant non-graphical information. Nominally geometric “slices” through the proposed building volume, these drawings employ abstractions and conventions unique to professional practice. In contrast, non-architects think about building configuration largely through experiential or photographic perspective. This challenge increases over the life of the project. Simple drawings, such as those used in schematic design, are easily understood by all parties. However, as the building design develops the architects encode more and more design detail through the drawing conventions of construction documents, inadvertently making this detail less and less accessible to non-architects. We present DVIN, a prototype system that uses coordinated plan and perspective views for navigation of building information models, linking the information to an individual’s spatial navigation skills rather than their document navigation skills. This web-based application was developed using Java and VRML. The prototype makes it easier for naive users to locate and query building information, whether they are a client, a facility manager, or possibly an emergency responder.

*** NOTE: two pages missing from the printed proceedings have been appended to the PDF version of this paper and numbered 'erratum page 1' and 'erratum page 2' ***

series ACADIA
type normal paper
email
last changed 2022/06/07 07:55

_id ecaade2007_217
id ecaade2007_217
authors Duarte, José
year 2007
title Inserting New Technologies in Undergraduate Architectural Curricula
doi https://doi.org/10.52842/conf.ecaade.2007.423
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 423-430
summary This paper describes a set of curricular tools devised to insert new technologies in an undergraduate architectural curriculum. These tools encompass three courses and laboratories with advanced geometric modeling, rapid prototyping, virtual reality, and remote collaboration facilities. The immediate goal was to set up the virtual design studio and enable creative design thinking. The ultimate goal was to fulfill the criteria of intellectual satisfaction, acquisition of specialized professional skills, and contribution for the economic development of society that should underlie university education.
keywords Architecture, education, fabrication, digital media
series eCAADe
email
last changed 2022/06/07 07:55

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

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

_id ecaade2007_004
id ecaade2007_004
authors Hofer, Michael; Asperl, Andreas
year 2007
title Geometry in the CAAD Curriculum
doi https://doi.org/10.52842/conf.ecaade.2007.385
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 385-392
summary Modern architecture takes advantage of the greatly increasing design possibilities. Yet, architects are not just a new group of CAD users. Scale and construction technologies pose new challenges to engineering and design. We are convinced that those can be met more effectively with a solid understanding of geometry. Thus, an academic CAAD curriculum has to meet these requirements. We introduce our approach taken at TU Vienna and focus on the first-term mandatory course on geometry for architecture.
keywords Geometry, CAAD curriculum, geometric design
series eCAADe
email
last changed 2022/06/07 07:50

_id ijac20075201
id ijac20075201
authors Ioannidis, Charalabos; Georgopoulos, Andreas
year 2007
title Innovative Techniques for the Acquisition and Processing of Multisource Data for the Geometric Documentation of Monuments
source International Journal of Architectural Computing vol. 5 - no. 2, pp. 180-197
summary Documenting the past of mankind comprises, among other activities, the survey of monuments and cultural artefacts, for long provided by archaeologists and architects using traditional methods. However, due to the recent major technological advances in surveying, photogrammetric and laser scanning methods, surveyors are enabled to produce recording materials and end products, which surpass by far the traditional line drawings in terms of accuracy and completeness. These methodologies are able to offer products like orthophotos, raster developments, 3D representations and realistic visualizations as well as augmented reality tours. This paper investigates the principles and capabilities of contemporary and technologically advanced methods in: capturing huge amount of detailed, accurate and reliable 3D data; modeling of existing and virtual reality; management of 3D or image-based databases. Several examples covering a broad variety of cases, regarding the historical era, the size and the complexity of the monument and also the final products are presented.
series journal
last changed 2007/08/29 16:23

_id caadria2007_475
id caadria2007_475
authors Koutamanis, Alexander; Gilles Halin and Thomas Kvan
year 2007
title Information Standardization from a Design Perspective
doi https://doi.org/10.52842/conf.caadria.2007.x.j8j
source CAADRIA 2007 [Proceedings of the 12th International Conference on Computer Aided Architectural Design Research in Asia] Nanjing (China) 19-21 April 2007
summary One common assumption concerning the digitization of architectural processes and products is that it should be supported by extensive standardization of design and building information. This standardization should extend beyond pre-existing conventions of the analogue period in terms of scope, integration, continuity, flexibility and adaptability. From a design perspective standardization refers to three distinct information types with different origins: geometric, categorical and project-specific information. Such information is accommodated in standards and building models either top-down or bottom-up, resulting into different possibilities and limitations.
series CAADRIA
email
last changed 2022/06/07 07:50

_id ecaade2007_166
id ecaade2007_166
authors Liapi, Katherine A.
year 2007
title An Integrative Design and Spatial Visualization System for Cable Strut Self-tensioned Structures
doi https://doi.org/10.52842/conf.ecaade.2007.027
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 27-34
summary Novel conceptions of structures consisting of spatial formations of struts and cables present a uniquely defined morphology and structural performance, and offer opportunities for innovative applications in building design. A common feature of these structures is that their spatial geometry is not “a priori” given. This paper is focused on a specific type of cable-strut structure that occurs from the assembly of self tensioned cable-strut modules The spatial configuration of these structures is very complex and necessitated the development of elaborate geometric algorithms that permit the generation of their formal geometry in a virtual 3D environment. To facilitate both the design and the construction of such structures, a spatial visualization system, which integrates a) algorithms for initial form generation, b) geometric parameters that simulate construction stiffening processes, and c) appropriate structural analysis methods, has been developed. The structural organization and parts of this system are presented in this paper. The system renders feasible the exploration of alternate geometries with various levels of pre-stress and displays initial and final configuration of the structure. It also allows for structural analysis data visualization. Examples of projects designed with the assistance of this system are included and discussed.
keywords Cable-strut structures, tensegrity structures, modeling
series eCAADe
email
last changed 2022/06/07 07:59

_id 4643
id 4643
authors Loemker, Thorsten Michael
year 2007
title Preservation of existing buildings through methods of Operations Research
source DACH 2007, International Conference on Digital Applications in Cultural Heritage, P. 157-175
summary The revitalization of existing buildings is getting more and more important. We are facing a situation where in many cases there is no need to design new buildings because an increasing number of existing buildings is not used anymore. The most ecological procedure to revitalize these buildings would be through a continuous usage and by making few or no alterations to the stock. Thus, the modus operandi could be named a “non-destructive” approach. From the architects’ point of view, non-destructive redesign of existing buildings is time-consuming and complex. The methodology we developed to aid architects in solving such tasks is based on exchanging or swapping utilization of specific rooms to converge in a design solution. In this regard, it was examined whether solutions for reuse tasks can be produced automatically by the use of optimization processes in floor plan design. These solutions shall be produced by swapping of existing areas. The objective is to obtain feasible planning solutions by means of these computer-based processes, which will serve the architect as a basis for the further editing of the plans. The methodical basis for this procedure is formed by models from Operations Research. The design of the model developed relates to problems in logistics, for example, the loading in trans-shipment centers. It also has analogies to board games like Chess or Go. These games are based on a specific number of fields or crosses of grid lines which are occupied by various tokens. Occupation is subject to a variety of conditions or rules. Compliance to conditions and objectives is clearly defined by the use of these rules. The analogy to our model is the fixed grid, the limited possibility to occupy fields and the fulfillment of an overall goal, i.e., to win the game. Therefore the model does not alter geometric proportions or locations of rooms but changes their occupancy such that a new usage could be applied to the building.
keywords Operations Research, Revitalization, Optimization
series other
type normal paper
email
last changed 2008/10/13 13:49

_id caadria2007_585
id caadria2007_585
authors Menegotto, José Luis
year 2007
title The Nazca Lines and their Digital Architectural Representation
doi https://doi.org/10.52842/conf.caadria.2007.x.r9m
source CAADRIA 2007 [Proceedings of the 12th International Conference on Computer Aided Architectural Design Research in Asia] Nanjing (China) 19-21 April 2007
summary This paper relates to a digital architectural design experience in 2005 for the Nazca Competition. Nazca is an archaeological site situated about 400 kilometers south of Lima, Peru. It is a large desert with gigantic millenary geoglyphs carved on the surface, which can only be seen clearly from above. The Nazca geoglyphs are made up of hundreds of lines, spirals and triangular plazas, as well as zoomorphic figures like birds, fish, spider, etc. The Nazca Competition asked for an observatory-lodge of approximately 1.000m2 with 20 rooms, communal bathrooms, supporting areas and an observatory tower of at least 100 meters. The observatory-lodge was designed using a digital representation technique called "Genetically Constructed Structures". The structure was created using the geometric principle of the affinity of two conic sections: circle and ellipse. The form was produced transforming the circle and the ellipse by performing basic geometric transformations (translation, rotation, reflection and scaling). According to this technique, the sequence of transformations was codified in the form of an alphanumerical string, metaphorically named the "DNA structure". The code was inserted as extended data into the entities which shaped the structure profiles. The algorithms were programmed with AutoLISP language. The "DNA code" allowed the structure to be constructed and deconstructed from any point, generating many different forms, to be studied and compared. One year later, the same 3D model was used to test another digital technology called "musical box" where their geometrical points are captured, read and translated into musical parameters, generating music. In this paper we will present the graphical form of the tower as well as the music associated.
series CAADRIA
last changed 2022/06/07 07:50

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

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

_id ecaade2007_028
id ecaade2007_028
authors Narahara, Taro
year 2007
title The Space Re-Actor
doi https://doi.org/10.52842/conf.ecaade.2007.195
source Predicting the Future [25th eCAADe Conference Proceedings / ISBN 978-0-9541183-6-5] Frankfurt am Main (Germany) 26-29 September 2007, pp. 195-202
summary This paper proposes a computational method for visualizing animated human reactions to physical conditions that are described in a synthetic architectural model. Its goal is to add a sense of place to the geometry, and augment the representation of its spatial quality for designers and audience. Spatial qualities in architectural design cannot be fully evaluated solely by observing geometrical constructs without reference to inhabitants placed inside. However, imagining what happens to those inhabitants and appreciating their movement is difficult even for trained architects. The proposed method introduces a walking scale figure in a geometric model. Through agent-based computation, it moves inside the model and displays various behaviors in reaction to spatial characteristics such as transparent surface, opaque surface, perforation and furniture. This method lays a foundation for developing a new kind of software that overcomes the shortcomings of current design tools.
keywords Architectural visualization, agent-based computation
series eCAADe
email
last changed 2022/06/07 07:59

For more results click below:

this is page 0show page 1show page 2show page 3show page 4show page 5... show page 27HOMELOGIN (you are user _anon_333863 from group guest) CUMINCAD Papers Powered by SciX Open Publishing Services 1.002