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 cf2015_397
id cf2015_397
authors Blonder, Arielle and Grobman, Yasha Jacob
year 2015
title Alternative Fabrication Process for Free-Form FRP Architectural Elements Relying on Fabric Materiality Towards Freedom from Molds and Surface Articulation
source The next city - New technologies and the future of the built environment [16th International Conference CAAD Futures 2015. Sao Paulo, July 8-10, 2015. Electronic Proceedings/ ISBN 978-85-85783-53-2] Sao Paulo, Brazil, July 8-10, 2015, pp. 397-410.
summary FRP (fiber reinforced polymers) is a family of composite materials combining fibers and polymers to offer exceptional mechanical properties. Its unique material properties have led to its wide application across industries. Although we witness a growing interest in the material in the architectural field in recent years, a significant barrier to its application lies in the need for a mold. The paper describes a new alternative fabrication process for architectural FRP elements that relies on fabric materiality. It suggests a mold free process, combining form finding and garment making techniques, to allow for complex morphologies, surface articulation and variation. The paper describes both the fabrication process through physical experiments, as well as the design process through the use of two design software tools. It demonstrates the potential for sustainable variation of large component facade system.
keywords FRP, Fabrication, Architecture, Mold, Materiality, Variation
series CAAD Futures
email
last changed 2015/06/29 07:55

_id caadria2015_081
id caadria2015_081
authors Shemesh, Avishag; Moshe Bar and Yasha Jacob Grobman
year 2015
title Space and Human Perception
doi https://doi.org/10.52842/conf.caadria.2015.541
source Emerging Experience in Past, Present and Future of Digital Architecture, Proceedings of the 20th International Conference of the Association for Computer-Aided Architectural Design Research in Asia (CAADRIA 2015) / Daegu 20-22 May 2015, pp. 541-550
summary In the aspiration to design the built environment, architects and designers are continuously trying to create spaces that positively affect users. Both aspects of rational and emotional combined simultaneously with technological advancement are essential to implement in a comprehensive architectural design process. While our ability to create complex architectural forms through computation is in the state of a continuous improvement, our knowledge about their emotional effects over users remain ambiguous. Recent developments in simulation of virtual spaces, along with advancement in neuroscience may enable us to conduct an empirical research on the way we perceive space and the way space affects us emotionally. This paper presents initial results from an ongoing research that examines the connection between human feelings and architectural space. We discuss the first stage of the research in which as we examine the emotional reaction of designers and non-designers to various spatial geometries in an immersive 3D virtual environment inside a visualization laboratory. We then present the methodology for the second stage of the research, in which we repeat the experiment while using Electroencephalography (EEG) device together with a wireless eye tracker and emotional engagement measurements (EEM) system.
keywords Virtual reality; computational design; human-computer interaction; space perception; Space geometry; Feelings; aesthetic judgment; neuroaesthetics.
series CAADRIA
email
last changed 2022/06/07 07:56

_id caadria2015_023
id caadria2015_023
authors Weizmann, Michael; Oded Amir and Yasha Jacob Grobman
year 2015
title Topological Interlocking in Architectural Design
doi https://doi.org/10.52842/conf.caadria.2015.107
source Emerging Experience in Past, Present and Future of Digital Architecture, Proceedings of the 20th International Conference of the Association for Computer-Aided Architectural Design Research in Asia (CAADRIA 2015) / Daegu 20-22 May 2015, pp. 107-116
summary The paper presents the initial results of a study that examines the potential of using the concept of topological interlocking as a structural and organizational mechanism for architecture in general, and for building façades in particular. The paper opens with a review of existing research on the notion of topological interlocking. It then presents a catalogue that characterizes the various types of topological interlocking systems and compares the potential of these types to be employed in architectural design. This is followed by a discussion regarding the results of fabrication experiments that examine the specific types, which appear to have the best potential for architectural design.
keywords Structural fragmentation, building facade, parametric design, surface tessellation, complex geometry.
series CAADRIA
email
last changed 2022/06/07 07:58

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