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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_id sigradi2010_236
id sigradi2010_236
authors Vincent, Charles C; Sampaio Nardelli Eduardo; Nardin Lia Raquel
year 2010
title Parametrics in Mass Customization
source SIGraDi 2010_Proceedings of the 14th Congress of the Iberoamerican Society of Digital Graphics, pp. Bogotá, Colombia, November 17-19, 2010, pp. 236-239
summary The imminent disruption of the modern paradigms of serialization, repetition and standardization, poses us a myriad of new questions regarding both the emerging aesthetics and the upcoming production means for a new architecture. Despite the canonic approach in which architects tend to invest, the public and private demand for mass housing production is increasing at an astonishing rate, requiring architects to rethink traditional— modern—strategies and to gain control over contemporary—digital—tools. This paper describes an academic research project focused on the implementation of such tools. Some related work is presented, emphasizing some of the approaches in parametric plan layout generation. And a case study is formulated in which the mass design of serially customized layouts is prepared to be solved through a beta plugin for Rhino – Grasshopper.
keywords mass customization, facade, digital architecture, aesthetics, production means
series SIGRADI
email
last changed 2016/03/10 10:02

_id ecaade2010_148
id ecaade2010_148
authors Joyce, Sam; Tabak, Vincent; Sharma, Shrikant; Williams, Chris
year 2010
title Applied Multi-Scale Design and Optimization for People Flow
doi https://doi.org/10.52842/conf.ecaade.2010.633
source FUTURE CITIES [28th eCAADe Conference Proceedings / ISBN 978-0-9541183-9-6] ETH Zurich (Switzerland) 15-18 September 2010, pp.633-639
summary This paper presents an overview of the current developments in people flow analysis in Buro Happold’s analytical group SMART Solutions. The role of people flow analysis has become an established one, within many leading consultancy firms with their own specialist groups supporting the architects and planners in the design of buildings and urban spaces. This paper proposes that the key development in the progression of this work is a due to a change in emphasis, away from a passive analysis task where its key role is to validate assumptions of flow and alleviate areas of high concern to using the process as a design instigator/driver. The new paradigm emerging, involves calculating people flow at the conceptual stage of a project in collaboration with the respective architectural firm, and using this information as a primary design input. This paper describes and analyses the two objectives set out by Buro Happold’s SMART group in order to improve the process of design; firstly to make it more prominent in the design environment and secondly to see if it has the potential to work as a design driver. These objectives create a design methodology defined by people flow and suggest value in innovating and conceiving of robust simple methods of improving designs.
wos WOS:000340629400068
keywords People flow; Pedestrian flow; Multi-objective optimization; Masterplanning; Network analysis
series eCAADe
email
last changed 2022/06/07 07:52

_id ecaade2010_149
id ecaade2010_149
authors Salim, Flora Dilys; Burry, Jane; Taniar, David; Lee, Vincent Cheong; Burrow, Andrew
year 2010
title The Digital Emerging and Converging Bits of Urbanism: Crowddesigning a live knowledge network for sustainable urban living
doi https://doi.org/10.52842/conf.ecaade.2010.883
source FUTURE CITIES [28th eCAADe Conference Proceedings / ISBN 978-0-9541183-9-6] ETH Zurich (Switzerland) 15-18 September 2010, pp.883-891
summary Data is ubiquitous in our cities. However, designing a knowledge network about our cities is an arduous task, given that data sensed cannot be used directly, human significance must be added. Adding human significance can be achieved via an automated “expert system (ES)” in which domain expert knowledge are stored in a knowledge-based repository. The domain expert knowledge is matched with the corresponding data to derive specific inference which can aid decision making for urban stakeholders.This requires amalgamation of various interdisciplinary techniques. This paper presents a survey of existing technologies in order to investigate the emerging issues surrounding the design of a live knowledge network for sustainable urban living. The maps and models of the existing infrastructure of our cities that include a wealth of information such as topography, layout, zoning, land use, transportation networks, public facilities, and resource network grids need to be integrated with real-time spatiotemporal information about the city. Public data in forms of archives and data streams as well as online data from the social network and the Web can be analyzed using data mining techniques. The domain experts need to interpret the results of data mining into knowledge that will augment the existing knowledge base and models of our cities. In addition to the analysis of archived and streamed data sources from the built environment, the emerging state-of-the-art Web 2.0 and mobile technologies are presented as the potential techniques to crowddesign a live urban knowledge network. Data modeling, data mining, crowdsourcing, and social intervention techniques are reviewed in this paper with examples from the related work and our own experiments.
wos WOS:000340629400094
keywords Crowdsourcing; Knowledge discovery; Mobile and ubiquitous computing; Urban modeling; Spatial interaction; Social networking; Web 2.0
series eCAADe
email
last changed 2022/06/07 07:56

_id ijac20108406
id ijac20108406
authors Tourre, Vincent; Francis Miguet
year 2010
title Lighting Intention Materialization with a Light-Based Parametric Design Model
source International Journal of Architectural Computing vol. 8 - no. 4, p. 507
summary How the inverse lighting methods could help the architectural design? We address this issue with an original light-based parametric design model dedicated to the architectural design. This model associates the parametric design approach with the lighting intentions expressed by the architects. It has been implemented thanks to an inverse lighting technique in a tool intended to aid the design of the windows and the shading devices in the early stages of architectural design. This model is used in a performative design approach onto the dome of the Louvre Abu Dhabi museum in order to define the transparency property of the dome.
series journal
last changed 2019/05/24 09:55

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