id |
acadia22_378 |
authors |
Duong, Colleen; Cupkova, Dana; Sawyer, Azadeh; Dawkins, Marantha |
year |
2022 |
title |
Tactical Sedimentation of Architectural Reef System |
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. 378-391. |
summary |
This study proposes a novel simulation framework that expands the existing analytical modeling methods, allowing us to visualize and test underwater eco-spatial phenomena within dynamic systems to better identify a design space for intervention with the goal of mitigating the conventional human-reef relationship through tactically choreographing sedimentation. This paper focuses on developing a method of modeling and analysis linked to the ecological characterization of coral species and simulation sequences allowing us to: 1) study diverse, underwater landscapes that are not easily visible or accessible, and 2) project complex environmental change and sedimentation over time. This method works across tools, scales, and media to develop a computational ecological approach to designing sensitive habitats. |
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references |
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|
Bernard Riegl, Carlton Heine, and George M. Branch (1996)
Function of funnel-shaped coral growth in a high-sedimentation environment
, Marine Ecology Progress Series 145: 87–93
|
|
|
|
Bradley Cantrell (2019)
Choreographing Topography
, Dumbarton Oaks
|
|
|
|
C. T. Perry, S. G. Smithers, P. Gulliver, N. K. Browne (2012)
Evidence of very rapid reef accretion and reef growth under high turbidity and terrigenous sedimentation
, Geology 40 (8): 719
|
|
|
|
Faridah Sahari (2015)
Cockle Shell As An Alternative Construction Material For Artificial Reef
, International Conference on Creativityand Innovation for Sustainable Development
|
|
|
|
J. A. Kleypas, R. W. Buddemeier, and J. P. Gattuso (2001)
The future of Coral reefs in an age of global change
, International Journal of EarthSciences 90 (2): 426–437
|
|
|
|
K.S Rodgers, et al (2017)
Patterns of bleaching and mortality following widespread warming events in 2014 and 2015 at the Hanauma Bay Nature Preserve, Hawai‘i
, PeerJ 5 (May): e3355
|
|
|
|
Kelsey L. Sanborn et al (2017)
New evidence of Hawaiian coral reef drowning in response to meltwater pulse-1A
, QuaternaryScience Reviews 175 (Nov.): 60–72.
|
|
|
|
Lucy V. Fisher and Andrew R. Barron (2019)
The recycling and reuse of steelmaking slags—A Review
, Resources Conservation and Recycling146 (July): 244–255
|
|
|
|
P Wang (2005)
Nearshore Sediment Transport Measurement
, Encyclopedia of Coastal Science. Dordrecht: Springer
|
|
|
|
R. Van Woeik, Y. Golbuu, and R. Roff (2015)
Keep up or drown: Adjustment of western Pacific coral reefs to sea-level rise in the 21st century
, Royal Society Open Science 2 (7): 150181
|
|
|
|
Richard E. Brock (1994)
Beyond Fisheries Enhancement: Artificial Reefs and Ecotourism
, Bulletin of Marine Sciences (55): 1181–1188
|
|
|
|
Robert B. Moffitt, Frank A. Parrish, and Jeffrey J. Polovina (1989)
Community structure, biomass and productivity of deepwater artificial reefs in Hawaii
, Bulletin of Marine Science 44 (2): 616–630
|
|
|
|
S. Severino and K. Rodgers (2019)
Hanauma Bay Biological Carrying Capacity Survey 1st Annual Report: May 2018 - May 2019
, University of Hawai‘i: Hawai‘i Institute of Marine Biology, Coral Reef EcologyLaboratory/Coral Reef Assessment and Monitoring Program
|
|
|
|
S.J.L. Severino, K.S. Rodgers, A. Graham, A. Tsang, Y. Stender, and M. Stefanak (2021)
Hanauma Bay Biological Carrying Capacity Survey 2020/21 Annual Report
, University of Hawai‘i, Hawai‘i Institute ofMarine Biology: Coral Reef Ecology Laboratory/Coral Reef Assessmentand Monitoring Program. Honolulu: Parks and Recreation
|
|
|
|
W Piller. and B. Rigl (2003)
Vertical versus horizontal growth strategies of coral framework (Tulamben, Bali, Indonesia)
, International Journalof Earth Sciences 92 (4): 511–519
|
|
|
|
last changed |
2024/02/06 14:00 |
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