INFRASTRUCTURE ANALYSIS FOR SEA LEVEL RISE IN MIAMI, FLORIDA ERI STERN DIGITAL TERRAIN ANALYSIS FALL 2017

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INFRASTRUCTURE ANALYSIS FOR SEA LEVEL RISE IN MIAMI, FLORIDA ERI STERN DIGITAL TERRAIN ANALYSIS FALL 2017 http://www.bbc.com/future/story/20170403-miamis-fight-against-sea-level-rise

ABSTRACT Sea level rises due to melting glaciers and ice sheets, the expansion of the ocean as water warms, and to a lesser degree, because groundwater pumping has shifted water storage from aquifers, lakes, and reservoirs to the ocean. There has been a consistent rise in sea level since the later 1800s, and we have, in recent years, seen a more dramatic increase. While global sea level is rising, it is rising at different rates in some locations. The study area I focused on, which is the coastline along Miami, Florida, is experiencing a rapid sea level rise, and is vulnerable to environmental hazards such as storm surges. The purpose of this study was to compare two different estimates for sea level rise in 2100, and how they affect the infrastructure of Miami. To calculate the area of Miami that would be submerged with a sea level rise of 1 or 2 meters, I obtained a 5m DEM of the area which I subtracted to symbolize the submerged area. I also utilized some features such as evacuation routes, hospitals, schools, and Superfund sites to assess how significant the damage would be at 1 or 2 meters of sea level rise. Based on my results, I concluded that there would be significant infrastructural damage in Miami with the predicted level of sea level rise by 2100. Furthermore, when using the higher of the two estimates, the level of damage increased exponentially. I concluded that planners must begin working now to target these sites that fall in the flood zone, particularly when considering other causes of floods such as hurricanes and storm surges that are becoming increasingly prevalent in the area. To improve this project in the future, I would like to include models for storm surges and hurricanes to more accurately predict the effects of flooding in Miami.

SEA LEVEL RISE: WHY IT IS OCCURRING AND WHO IS AFFECTED Graph from NOAA, (https://www.climate.gov/newsfeatures/understanding-climate/climate-change-global-sea-level) Why sea level rise occurs 1. Melting glaciers and ice sheets 2. Ocean expands as water warms 3. Groundwater pumping shifts water storage from aquifers, lakes, and reservoirs to the ocean

RESEARCH QUESTIONS How much land in Miami will be inundated by 2100 due sea level rise according to different predictions? How is infrastructure (such as roads and hospitals) affected by sea level rise based on different predictions? How much do the different predictions for SLR vary? What lessons can be learned for planners when considering different predictions?

CREATE STUDY AREA 5m DEM from University of Florida

CURRENT AREA AT OR BELOW SEA LEVEL http://www.bbc.com/future/story/20170403-miamis-fight-against-sea-level-rise

LOW ESTIMATE FLOOD: SEA LEVEL RISE OF 1 METER

HIGH ESTIMATE FLOOD: SEA LEVEL RISE OF 2 METERS

COMPARISON OF SEA LEVEL RISE Original sea level: 15% 1m SLR: 30.27%,(15.27% increase) 2 m SLR: 77.06% (62.06% increase)

INFRASTRUCTURE ANALYSIS: PRIMARY EVACUATION ROUTES http://www.bbc.com/future/story/20170403-miamis-fight-against-sea-level-rise

1 meter sea level rise

2 meter sea level rise

INFRASTRUCTURE ANALYSIS: HOSPITALS

http://ak4.picdn.net/shutterstock/videos/5596124/thumb/1.jpg?i1 0c=img.resize(height:160) According to The Washington Post, Mt Sinai Hospital, Mercy Hospital, and Sister Immanuel Hospital were evacuated prior to Hurricane Irma. These are all in the 2m SLR flood zone, and Mt. Sinai is also in the 1m SLR flood zone.

INFRASTRUCTURE ANALYSIS: PUBLIC SCHOOLS

INFRASTRUCTURE ANALYSIS: SUPERFUND SITES Superfund sites are areas identified as containing hazardous toxic waste. They are targeted for remediation by the EPA. After Hurricane Sandy, the Gowanus Canal overflowed into people s homes, resulting in massive contamination and cleanup. After Hurricane Katrina, increased chemical exposure in the groundwater and soil were traced back to the flooding of Superfund sites. (Atkin, 2017) Photo from a flooded Superfund site during Hurricane Harvey in Texas. https://media.nbcdfw.com/images/1200*675/toxicwastewaterepaharvey_1200x675.jpg

Barrels of IDW Investigation Derived Waste at Miami Drum Service, one of the Superfund Sites located at 1m SLR. This site is located over a drinking-water aquifer. (Kennedy, 2017) http://www.chicagotribune.com/news/nationworld/ct-irma-toxic-waste-sites-20170909-story.html

LIMITATIONS AND IMPROVEMENTS DEM resolution Storm surges SLOSH Model (Sea, Lake, and Overland Surges from Hurricanes) Accounts for physical factors like coastal area, bay, river shape, water depth, bridges, canals, etc. http://mdc.maps.arcgis.com/apps/webappviewer/index.html?id=4919c85a439f40c68d7b3c81c3f44b58 http://gis-mdc.opendata.arcgis.com/datasets?q=hydrology&sort_by=name&sort_order=asc

WORKS CITED Atkin, E. (2017, September 8). America Has a Toxic Waste Hurricane Problem. The New Republic. Retrieved December 7, 2017, from https://newrepublic.com/article/144737/america-toxic-waste-hurricane-problem Biesecker, M., & Dearen, J. (2017, September 9). Flooding threatens toxic waste sites as Hurricane Irma nears. Chicago Tribune. Retrieved December 7, 2017, from http://www.chicagotribune.com/news/nationworld/ct-irma-toxic-waste-sites-20170909-story.html FGDL Metadata Explorer. (n.d.). Retrieved December 07, 2017, from https://www.fgdl.org/metadataexplorer/explorer.jsp Lindsey, R. (2017, September 11). Climate Change: Global Sea Level. Retrieved December 04, 2017, from https://www.climate.gov/newsfeatures/understanding-climate/climate-change-global-sea-level Miami-Dade County GIS Open Data. (n.d.). Retrieved December 07, 2017, from http://gis-mdc.opendata.arcgis.com/ Southeast Florida Regional Climate Change Compact Sea Level Rise Work Group (Compact). October 2015. Unified Sea Level Rise Projection for Southeast Florida. A document prepared for the Southeast Florida Regional Climate Change Compact Steering Committee. 35 p.