Citation: | Claire McConnell, Chiara Bertolin. Quantifying Environmental Impacts of Temporary Housing at the Urban Scale: Intersection of Vulnerability and PostHurricane Relief in New Orleans[J]. International Journal of Disaster Risk Science, 2019, 10(4): 478-492. doi: 10.1007/s13753-019-00244-y |
Arslan, H. 2007. Re-design, re-use and recycle of temporary houses. Building and Environment 42(1):400-406.
|
Arslan, H., and N. Cosgun. 2008. Reuse and recycle potentials of the temporary houses after occupancy:Example of Duzce, Turkey. Building and Environment 43(5):702-709.
|
Atmaca, N. 2017. Life-cycle assessment of post-disaster temporary housing. Building Research & Information 45(5):524-538.
|
Atmaca, A., and N. Atmaca. 2016. Comparative life cycle energy and cost analysis of post-disaster temporary housings. Applied Energy 171:429-443.
|
Blake, E.S., C.W. Landsea, and E.J. Gibney. 2011. The deadliest, costliest, and most intense United States tropical cyclones from 1851 to 2010 (and other frequently requested hurricane facts). NOAA Technical Memorandum NWS NHC-6. Miami, FL:National Weather Service and National Hurricane Center.
|
Burton, C.G. 2010. Social vulnerability and hurricane impact modeling. Natural Hazards Review 11(2):58-68.
|
Christensen, P., and E. Worzala. 2010. Teaching sustainability:Applying studio pedagogy to develop an alternative post-hurricane housing solution using surplus shipping containers. Journal of Sustainable Real Estate 2(1):335-360.
|
CIBSE (Chartered Institute of Building Service Engineers). 2006. Degree days:Theory and application. Technical Memorandum 41. London:CIBSE.
|
City-data. 2017. New Orleans, Louisiana neighborhood map-Income, house prices, occupations, boundaries. http://www.city-data.com/nbmaps/neigh-New-Orleans-Louisiana.html Accessed 12 Mar 2017.
|
Colten, C.E., R.W. Kates, and S.B. Laska. 2008. Three years after Katrina:Lessons for community resilience. Environment 50(5):36-47.
|
Cutter, S.L., B.J. Boruff, and W.L. Shirley. 2003. Social vulnerability to environmental hazards. Social Science Quarterly 84(2):242-261.
|
Data Center. 2017. Neighborhood statistical area data profiles. http://www.datacenterresearch.org/data-resources/neighborhood-data/. Accessed 12 Mar 2017.
|
EIA (Energy Information Administration). 2018. Louisiana State energy profile. US states:State profiles and energy estimates. https://www.eia.gov/state/print.php?sid=LA. Accessed 18 Apr 2017.
|
Elliott, J.R., and J. Pais. 2006. Race, class, and Hurricane Katrina:Social differences in human responses to disaster. Social Science Research 35(2):295-321.
|
Esri (Environmental Systems Research Institute). 2015. Katrina 10:A decade of change in New Orleans. Story maps. https://story.maps.arcgis.com/apps/MapSeries/index.html?appid=597d573e58514bdbbeb53ba2179d2359. Accessed 10 Feb 2017.
|
Finch, C., C.T. Emrich, and S.L. Cutter. 2010. Disaster disparities and differential recovery in New Orleans. Population and Environment 31(4):179-202.
|
Fuller, M. 2006. Strong, affordable storm-ready housing project:Building with steel shipping containers and Super Therm. http://www.eaglecoatings.net/content/supertherm/pdfs/Container_Homes_Bob_Vila.pdf. Accessed 10 Feb 2017.
|
Gotham, K.F., and R. Campanella. 2013. Constructions of resilience:Ethnoracial diversity, inequality, and post-Katrina recovery, the case of New Orleans. Social Sciences 2(4):298-317.
|
Gotham, K.F., and R. Campanella. 2011. Coupled vulnerability and resilience:The dynamics of cross-scale interactions in post-Katrina New Orleans. Ecology and Society 16(3):25-31.
|
Hennequin, T., H.J.D. Sørup, Y. Dong, and K. Arnbjerg-Nielsen. 2018. A framework for performing comparative LCA between repairing flooded houses and construction of dikes in non-stationary climate with changing risk of flooding. Science of The Total Environment 642:473-484.
|
Hosseini, S.M.A., A. de la Fuente, and O. Pons. 2016. Multicriteria decision-making method for sustainable site location of post-disaster temporary housing in urban areas. Journal of Construction Engineering and Management 142(9):Article 04016036.
|
ICE (Inventory of Carbon and Energy). 2011. ICE database version 2.0. https://www.carbonsolutions.com/Resources/ICE%20V2.0%20-%20Jan%202011.xls. Accessed 27 Mar 2017.
|
IEA (International Energy Agency). 2012. CO 2emissions from fuel combustion 2012. Paris:OECD Publishing.
|
IOS (International Organization for Standardization). 2006. Environmental management-Life cycle assessment-Principles and framework (ISO14040:2006). Geneva, Switzerland:International Organization for Standardization.
|
IPCC (Intergovernmental Panel on Climate Change). 2014. Climate change 2014:Impacts, adaptation, and vulnerability. Part B:Regional aspects. Contribution of working group II to the fifth assessment report of the Intergovernmental Panel on Climate Change. New York:Cambridge University Press.
|
Islam, H., G. Zhang, S. Setunge, and M.A. Bhuiyan. 2016. Life cycle assessment of shipping container home:A sustainable construction. Energy and Buildings 128:673-685.
|
Ismail, F.Z., A. Halog, and C. Smith. 2017. How sustainable is disaster resilience? An overview of sustainable construction approach in post-disaster housing reconstruction. International Journal of Disaster Resilience in the Built Environment 8(5):555-572.
|
Johnson, C., G. Lizarralde, and C.H. Davidson. 2006. A systems view of temporary housing projects in post-disaster reconstruction. Construction Management and Economics 24(4):367-378.
|
Jordan, E., A. Javernick-Will, and B. Amadei. 2014. A qualitative comparative analysis of neighborhood recovery following Hurricane Katrina. International Journal of Disaster Resilience in the Built Environment 5(4):391-412.
|
Myers, C.A., T. Slack, and J. Singelmann. 2008. Social vulnerability and migration in the wake of disaster:The case of Hurricanes Katrina and Rita. Population and Environment 29(6):271-291.
|
NASA/GISS (The National Aeronautics and Space Administration/Goddard Institute for Space Studies). 2014. NASA-GISS:GISS-E2-H model output prepared for CMIP5 historicalMisc, served by ESGF. WDCC at DKRZ. https://doi.org/10.1594/wdcc/cmip5.gighhm.
|
Nigg, J.M., J. Barnshaw, and M.R. Torres. 2006. Hurricane Katrina and the flooding of New Orleans:Emergent issues in sheltering and temporary housing. The ANNALS of the American Academy of Political and Social Science 604(1):113-128.
|
Peña, J. A., and K. Schuzer. 2012. Design of reusable emergency housing relief units using general purpose (GP) shipping containers. International Journal of Engineering Research and Innovation 4(2):55-64.
|
Quarantelli, E.L. 1995. Patterns of sheltering and housing in US disasters. Disaster Prevention and Management:An International Journal 4(3):43-53.
|
Song, Y., N. Mithraratne, and H. Zhang. 2016. Life-time performance of post-disaster temporary housing:A case study in Nanjing. Energy and Buildings 128:394-404.
|
Tucker, S., A. Gamage, and C. Wijeyesekera. 2014. Some design aspects of sustainable post-disaster housing. International Journal of Disaster Resilience in the Built Environment 5(2):163-181.
|
US DHS (United States Department of Homeland Security) and FEMA (Federal Emergency Management Agency). 2009. National disaster housing strategy. Washington, DC:Federal Emergency Management Agency.
|
US DHS (United States Department of Homeland Security) and FEMA (Federal Emergency Management Agency, Mitigation Division). 2015. Hurricane model Hazus-MH 2.1 technical manual. Washington, DC:Federal Emergency Management Agency. https://www.fema.gov/media-library/assets/documents/24609. Accessed 12 Mar 2017.
|
Zhang, G., S. Setunge, and S. van Elmpt. 2014. Using shipping containers to provide temporary housing in post-disaster recovery:Social case studies. Procedia Economics and Finance 18:618-625.
|