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 acadia12_127
id acadia12_127
authors Burry, Jane ; Burry, Mark ; Tamke, Martin ; Thomsen, Mette Ramsgard ; Ayres, Phil ; Leon, Alex Pena de ; Davis, Daniel ; Deleuran, Abders ; Nielson, Stig ; Riiber, Jacob
year 2012
title Process Through Practice: Synthesizing a Novel Design and Production Ecology
doi https://doi.org/10.52842/conf.acadia.2012.127
source ACADIA 12: Synthetic Digital Ecologies [Proceedings of the 32nd Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA) ISBN 978-1-62407-267-3] San Francisco 18-21 October, 2012), pp. 127-138
summary This paper describes the development of a design and prototype production system for novel structural use of networked small components of wood deploying elastic and plastic bending. The design process engaged with a significant number of different overlapping and interrelated design criteria and parameters, a high level of complexity, custom component geometry and the development of digital tools and procedures for real time feedback and productivity. The aims were to maximize learning in the second order cybernetic sense through empirical experience from analogue modeling, measurement and digital visual feedback and to capture new knowledge specifically regarding intrinsic material behavior applied and tested in a heterogeneous networked context. The outcome was a prototype system of design ideation, conceptualization, development and production that integrated real time material performance simulation and feedback. The outcome was amplified through carrying out the research over a series of workshops with distinct foci and participation. Two full scale demonstrators have so far been constructed and exhibited as outputs of the process.
keywords Material behavior , Complex modeling feedback , progressive synthetic learning
series ACADIA
type normal paper
email
last changed 2022/06/07 07:54

_id ecaade2012_127
id ecaade2012_127
authors Burry, Jane; Goscinski, Wojec; Aranda-Mena, Guillermo; Alhadidi, Suleiman; Pena de Leon, Alex; Williams, Mani
year 2012
title Trade Off and Real Time Analysis Feedback for Designers: Sailing as a Research Vehicle for Developing Systems and Skills
doi https://doi.org/10.52842/conf.ecaade.2012.2.543
source Achten, Henri; Pavlicek, Jiri; Hulin, Jaroslav; Matejovska, Dana (eds.), Digital Physicality - Proceedings of the 30th eCAADe Conference - Volume 2 / ISBN 978-9-4912070-3-7, Czech Technical University in Prague, Faculty of Architecture (Czech Republic) 12-14 September 2012, pp. 543-550
summary This paper describes the investigation and outcomes of a workshop aiming to answer the dual questions of how best to link technologies and how best to harness expert knowledge to capture and integrate dynamic performance feedback in the design process. In order to focus on these intrinsic questions, the workshop moved outside the domain most familiar to most of the participants, the built environment, and introduced the participants to design and performance feedback for what, to most, was the new domain of sailing and sail design. It resulted in novel and valuable prototypical systems for analysis and feedback to inform immediate design iteration. It achieved this through problem decomposition and synthetic design activity engaging integrated models and prototypes with components from multiple players and sources of informed or expert knowledge or knowing.
wos WOS:000330320600057
keywords Design feedback; nested systems; sailing; interaction design
series eCAADe
email
last changed 2022/06/07 07:54

_id ijac201210207
id ijac201210207
authors Salim, Flora D.; Jane R. Burry, Juliette Peers and Jenny Underwood
year 2012
title Augmented Spatiality
source International Journal of Architectural Computing vol. 10 - no. 2, 275-300
summary Designers have long been concerned with new and visionary types of public space.With the advent of ubiquitous computing, architects and designers have become increasingly aware of the opportunities and challenges in designing spaces and everyday objects to support socially- oriented human interactions whether through spatial or technological means.This paper presents a novel transdiscplinary method for designing new interactive architectural prototypes that promote connectivity and social interactions in the public space in order to address specific agendas of urban interventions.The proposed method was evaluated in a pilot studio, in which students across various design and technical disciplines were invited to propose utopian socio- technological visions for a particular site and to develop their ideas into working architectural prototypes that could be installed at the chosen site and tested by the public.The open brief generated various responses and outcomes in eight projects, of which two are discussed in this paper.
series journal
last changed 2019/05/24 09:55

_id ecaade2012_275
id ecaade2012_275
authors Sharaidin, Kamil; Burry, Jane; Salim, Flora
year 2012
title Integration of Digital Simulation Tools With Parametric Designs to Evaluate Kinetic Façades for Daylight Performance
doi https://doi.org/10.52842/conf.ecaade.2012.2.701
source Achten, Henri; Pavlicek, Jiri; Hulin, Jaroslav; Matejovska, Dana (eds.), Digital Physicality - Proceedings of the 30th eCAADe Conference - Volume 2 / ISBN 978-9-4912070-3-7, Czech Technical University in Prague, Faculty of Architecture (Czech Republic) 12-14 September 2012, pp. 701-709
summary This research presents a solution for evaluation of kinetic façades system performance via experiences and lessons learnt from experiments. We bridge between architects and engineers to address limitations associated with incorporating performance criteria in the design of kinetic façades by integrating different simulation tools. The experiments focus on optimization of the daylight performance through the design and motion of kinetic façades using various integrated software. The research is developed using real time data feedback processed through various digital tools from three domains: (1) Architectural design, (2) day-lighting performance and (3) parametric design computation. From the evaluations, the paper demonstrates the analysis of kinetic motion for daylight optimization at the early design stage and suggests possible configurations for daylight performance.
wos WOS:000330320600075
keywords Kinetic façades; digital simulations; design considerations; early design stage
series eCAADe
email
last changed 2022/06/07 07:56

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