Sea Level Rise: Impacts, Adaptation and Information Gaps

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University of New Orleans ScholarWorks@UNO Coastal Resilience Workshop Coastal Resilience Workshop 2015 Oct 28th, 10:00 AM - 12:00 PM Sea Level Rise: Impacts, Adaptation and Information Gaps Jeffrey R. Kivett South Florida Water Management District Follow this and additional works at: http://scholarworks.uno.edu/resilience Jeffrey R. Kivett, "Sea Level Rise: Impacts, Adaptation and Information Gaps" (October 28, 2015). Coastal Resilience Workshop. Paper 1. http://scholarworks.uno.edu/resilience/2015/day3/1 This Event is brought to you for free and open access by ScholarWorks@UNO. It has been accepted for inclusion in Coastal Resilience Workshop by an authorized administrator of ScholarWorks@UNO. For more information, please contact scholarworks@uno.edu.

Sea Level Rise: Impacts, Adaptation and Information Gaps Jeffrey R. Kivett, P.E. Director, Operations, Engineering and Construction Division South Florida Water Management District

Central and Southern Florida Project for Flood Control and Other Purposes Authorized in 1948 Designed for multiple purposes Flood Control; Water Supply; Navigation; Prevention of Saltwater Intrusion; Protection of Fish & Wildlife Constructed by the U.S. Army Corps of Engineers between 1950 and 1970 Operated by the South Florida Water Management District

Three-Tiered System Primary USACE SFWMD Secondary Local Governments Special Districts Tertiary Home Owners Associations Private Land Owners secondary system /canals tertiary system primary system /canals

Regional Sea Level Projections (update to 2011 projections) 61 31

Potential Impacts on Water Management from Rising Sea Level Flood protection (flooding, storm surge, hurricanes, coastal structures, groundwater) Drinking water supply (saltwater intrusion, freshwater wells) Natural environment (southern Everglades, coastal wetlands)

Coastal Water Control Structures Regional Coastal Water Control Structures

Broward County

Flood Protection: Areas of Concern Island communities (tidal flooding) Areas downstream of primary coastal structures Areas served by coastal structures (western communities)

Example: Storm of October 28-31, 2011, C-13 Basin, S-36 Structure Rainfall Upstream downstream Flow Gate Oakland Park area is an urbanized area east of the S-36 structure. October 28-31, 2011, storm resulted in flooding some communities S-36 Oakland Park

Flood in communities in Oakland Park area during the October 2011 storm Oct 28-31, 2011 Oct 28-31, 2011

Potential changes in Rainfall Extremes : Do we have actionable science? 50-Year Location: West Palm Beach International Airport Climate model predictions Uncertainty due to significant model spread (General Circulation Model & Regional Climate Model Combinations)

SFWMD Level of Service Program Overview Science Input (e.g. Florida Climate Institute) Scenarios for Sea Level Rise & Climate Trends Level of Service (LOS) Program Strategic Basin Prioritization Level of Service Assessment (Phase 1) Informed by infrastructure life cycle, condition & planned maintenance and basin risk assessment; cover all of SFWMD within 5 to 10 year cycle SFWMD Infrastructure design and function emphasis Flood control emphasis Issue identification Relative importance Update Basin Atlases and Structure Books Local Governments Possible SFWMD Roles: Provide technical assistance Collaborate on projects As Needed Level of Service Basin Study (Phase 2) SFWMD Infrastructure design, function and operational emphasis Multiple scenarios Flood control emphasis with expanded consideration of water supply and other objectives Identify potential improvements and opportunities. Economic optimization Capital Program Including Structures and Canals Operations Vegetation Management Planning (e.g. Water Supply)

Adaptation Everglades restoration impoundments and pumps green infrastructure water conservation water storage forward pumps revised stormwater permitting criteria pre-storm drawdown wellfield relocation/ interconnect/alternative water supply (reuse) seawalls/natural barriers

Information Gaps Resolution of climate models is not adequate to capture hydro-meteorology of Florida peninsula (grid is too coarse) Skills of models for regional climate information may not be adequate, yet. More work is needed to verify and improve the methods/models. Future magnitude of extreme rainfall is uncertain. Need to work together on a unified set of climate scenarios for Florida (perhaps through collaboration with the academic community) Extremes sea levels under various sea level rise scenarios are needed

Questions

Backup slides

Water Supply Impacts & Adaptation Potential acceleration of saltwater intrusion towards coast wellfields Mapping of saltwater fronts (2009 and 2014 complete). Five year updates Work with Utilities of Concern and Utilities at Risk on adaptation Added emphasis on Water Conservation, Use of reclaimed waste water, and alternative water supply Inclusion of sea level rise and potential changes in rainfall into water supply planning

Natural Systems-Impacts & Adaptation Concerns: Inundation, peat collapse, and migration of mangroves in the southern Everglades Added emphasis on Everglades Restoration as an adaptation to sea level rise Multiagency study on mechanisms of peat collapse-with FIU, ENP, funded by Florida Sea Grant Studies to determine mangrove peat deposition) Monitoring of Southern Coastal Habitats

Using Climate Change Information (Lessons from California s Experience!) General Circulation Models (GCMs) Observed Climate Data Simulation of Late 20 th Century 21 st Century Climate Projections Is there evidence that climate is changing in Florida? Downscale (Statistical & Dynamical) global information to regional information How well are south Florida s climate and teleconnections represented by climate models? How do climate projections affect water resources management?

GCM Resolution in Florida Uncertainties in GCM predictions due to: Poor resolution South Florida not even modeled in some GCMs; greater errors at smaller scales From IPCC AR4-WG1, Ch. 8 - Simulation of tropical precipitation, ENSO, clouds and their response to climate change, etc.

Miami-Dade County Canal (HW) Ocean (TW)

Neighborhood System (Tertiary) Tertiary to Secondary Secondary to Primary Primary to Ocean or Everglades Local Drainage District (Secondary) SFWMD Canals (Primary) Every drainage system flows into a larger system

Lake Okeechobee & The Herbert Hoover Dike Everglades Agricultural Area Water Conservation Areas Big Cypress Everglades National Park Pre-Development Post-Development

C&SF System: 1950s Planning Assumptions versus now! This area was assumed to remain agricultural (& dairy) Only area assumed to be urban