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Full-Text Articles in Art and Design

Lightweight Material Prototypes Using Dense Bundled Systems To Emulate An Ambient Environment, Chris Knapp, Jonathan Nelson, Andrew Kudless, Sascha Bohnenberger Nov 2016

Lightweight Material Prototypes Using Dense Bundled Systems To Emulate An Ambient Environment, Chris Knapp, Jonathan Nelson, Andrew Kudless, Sascha Bohnenberger

Jonathan J Nelson

This paper describes and reflects upon a computational design and digital fabrication research project that was developed and implemented over 2014-2015, with subsequent development continuing for applications at present. The aim of the research was to develop methods of modelling, analysis, and fabrication that facilitate integrative approaches to architectural design and construction. In this context, the development of material prototypes, digital simulations, and parametric frameworks were pursued in parallel in order to inform and reform successive iterations throughout the process, leading to a refined workflow for engineering, production, and speculation upon future directions of the work.


Lightweight Material Prototypes Using Dense Bundled Systems To Emulate An Ambient Environment, Chris Knapp, Jonathan Nelson, Andrew Kudless, Sascha Bohnenberger Nov 2016

Lightweight Material Prototypes Using Dense Bundled Systems To Emulate An Ambient Environment, Chris Knapp, Jonathan Nelson, Andrew Kudless, Sascha Bohnenberger

Chris Knapp

This paper describes and reflects upon a computational design and digital fabrication research project that was developed and implemented over 2014-2015, with subsequent development continuing for applications at present. The aim of the research was to develop methods of modelling, analysis, and fabrication that facilitate integrative approaches to architectural design and construction. In this context, the development of material prototypes, digital simulations, and parametric frameworks were pursued in parallel in order to inform and reform successive iterations throughout the process, leading to a refined workflow for engineering, production, and speculation upon future directions of the work.