id |
acadia22_574 |
authors |
Cupkova,, Dana; Meng,, Han; Rhee, Jinmo |
year |
2022 |
title |
Lithopic House |
source |
ACADIA 2022: Hybrids and Haecceities [Proceedings of the 42nd Annual Conference of the Association of Computer Aided Design in Architecture (ACADIA) ISBN 979-8-9860805-8-1]. University of Pennsylvania Stuart Weitzman School of Design. 27-29 October 2022. edited by M. Akbarzadeh, D. Aviv, H. Jamelle, and R. Stuart-Smith. 574-585. |
summary |
The ambition of this design study, executed within an architectural design studio framework, is to examine architecture that probes embodied energy as a primary inspiration for matter formation. The goal is to resituate design within a hyperlocal framework of material resources / life cycle that positions architecture as a vehicle for ecological and communal restoration. |
series |
ACADIA |
type |
paper |
email |
|
full text |
file.pdf (17,938,150 bytes) |
references |
Content-type: text/plain
|
Adam Marcus, Margaret Ikeda, Evan Jones, Taylor Metcalf, John Oliver, Kamille Hammerstrom, and Daniel Gossard (2018)
Buoyant Ecologies Float Lab. Optimized Upside-down Benthos for Sea Level Rise Adaptation
, ACADIA ‘18: Recalibration, On Imprecision and Infidelity;Project Catalog of the 38th Annual Conference of the Association ofComputer Aided Design in Architecture (ACADIA). 414–423
|
|
|
|
D Cupkova. and C. Clifford (2018)
MOSS REGIMES: Embedded Biomass in Porous Ceramics
, ACADIA ‘18: Recalibration, OnImprecision and Infidelity; Project Catalog of the 38th AnnualConference of the Association of Computer Aided Design in Architecture(ACADIA)
|
|
|
|
Dana Cupkova, and Patcharapit Promoppatum (2017)
Modulating Thermal Mass Behavior Through Surface Figuration
, ACADIA 2017: Discipline & Disruption; Proceedings of the 37th Annual Conference ofthe Association for Computer Aided Design in Architecture. Cambridge,November 2-4, 2017. 202–211
|
|
|
|
Dana Cupkova, Nicolas Azel, and Christine Mondor (2015)
EPIFLOW: Adaptive Analytical Design Framework for Resilient Urban Water Systems
, Modelling Behaviour. Cham: Springer. 419–31
|
|
|
|
Daniel C. Dunn and Patrick N. Halpin (2009)
Rugosity-Based Regional Modeling of Hard-Bottom Habitat
, Marine Ecology Progress Series 377(February): 1–11
|
|
|
|
F. Craveiro, H. Almeida, H. Bártolo, P. J. Bártolo, and J. P. Duarte (2017)
Topology and Material Optimization of Architectural Components
, Challenges for Technology Innovation: An Agenda for the Future. Boca Raton: CRC Press
|
|
|
|
Hao Zheng, and Philip F. Yuan (2021)
A generative architectural and urban design method through artificial neural networks
, Buildingand Environment 205 (Nov): 108178.
|
|
|
|
Ian Goodfellow, Jean Pouget-Abadie, Mehdi Mirza, Bing Xu, David Warde-Farley, Sherjil Ozair, Aaron Courville, and Yoshua Bengio (2014)
Generative Adversarial Nets
, Advances in Neural Information Processing Systems, vol. 27
|
|
|
|
Jeremy Faludi, Corrie M. Van Sice, Yuan Shi, Justin Bower, and Owen M. K. Brooks (2019)
Novel Materials Can Radically Improve Whole- System Environmental Impacts of Additive Manufacturing
, Journal of Cleaner Production 212 (March): 1580–90.
|
|
|
|
Jun-Yan Zhu, Taesung Park, Phillip Isola, and Alexei A. Efros (2017)
Unpaired Image-to-Image Translation Using Cycle-Consistent Adversarial Networks
, 2017 IEEE International Conference onComputer Vision (ICCV). 2223–2232
|
|
|
|
L. L. Beghini, A. Beghini, N. Katz, W. F. Baker, and G. H. Paulino (2014)
Connecting architecture and engineering through structural topology optimization
, Engineering Structures 59 (Feb): 716–726
|
|
|
|
Leon A. Gatys, Alexander S. Ecker, and Matthias Bethge (2015)
Texture Synthesis Using Convolutional Neural Networks
, arXiv
|
|
|
|
Leon A. Gatys, Alexander S. Ecker, and Matthias Bethge (2016)
Image Style Transfer Using Convolutional Neural Networks
, 2016 IEEE Conference on Computer Vision and Pattern Recognition (CVPR). 2414–23
|
|
|
|
X. Li, Y. Dong, P. Peers, and X. Tong (2017)
Modeling Surface Appearance from a Single Photograph Using Self-Augmented Convolutional Neural Networks
, ACM Transactions on Graphics 36 (4): 1–11
|
|
|
|
last changed |
2024/02/06 14:04 |
|