AN OVERVIEW OF RECENT PROJECTS RELATED TO SAND BUDGETS, SOUTHERN CALIFORNIA BEACHES

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AN OVERVIEW OF RECENT PROJECTS RELATED TO SAND BUDGETS, SAND SUPPLY, COASTAL ARMORING, MANAGEMENT, AND VALUING SOUTHERN CALIFORNIA BEACHES Dr. Kiki Patsch California State University Channel Islands Environmental Science and Resource Management www.sandshed.org

California s Beaches: A natural resource that is in need of our research and protection Beaches have intrinsic value Cultural Recreational Ecological Geomorphic natural buffer zone flood and storm surge protection Economic 2

Keep SAND on our BEACHES Key Questions: How does sand move on the beach? Where does the sand come from? Are we reducing or increasing the amount of sand on beaches? What can we do to reduce the long-term erosion of beaches in light of climate change and the associated sea level rise? Goleta beach, California Pacifica, California Are we putting our dollars to good use? What are our priorities and values as a society? 3

Sandsheds Beach Compartments Littoral cells Form the framework for our understanding of the Sources Sinks Transport Storage of sand in the nearshore zone

Sediment Budgets aka Sediment Accounting Sources: River Transport (70-90% in CA) Seacliff Erosion Onshore transport Beach nourishment Wind transport onto the beach Longshore transport into the area Sinks: Loss to submarine canyons Loss to dune fields Offshore movement Sand mining Longshore transport out of the area In an ideal situation, each cell exists as a distinct entity with little to no transport of sand between cells.

Balancing the Budget Sources = Sinks Equilibrium Sources > Sinks Accretion Sources < Sinks Long-term Erosion

Sand Sources Eroding bluffs in Santa Barbara Santa Clara River Mouth, south of Ventura Harbor

3D Coastal Mapping with Drones Increased precision and accuracy with UAVs and photogrammetry software Ventura Beach, Shoreline Cliffs Park, Monitoring select beaches in Ventura, Santa Barbara, and Los Angeles counties with our drones for 3 years

Drone Monitoring of Coastal Zone Barrier Beach Breaching Documenting breaching patterns of the Ventura River barrier beach February 9 th 2018 February 18 th 2018 February 28 th 2018 March 7 th 2018

Drone Monitoring of Coastal Zone Sea Cliff Erosion Drone speed & flexibility = quickly access bluff loss North Del Mar Bluff Cerezo Bluffs Block Failure South Ponto State Beach

Updating Sediment Budgets Zuma & Santa Monica Littoral Cells Broad Beach 1972 Broad Beach 2006 Broad Beach 2015

Hueneme Submarine Canyon Mugu Submarine Canyon Broad Beach Dume Submarine Canyon Hueneme and Mugu submarine canyons capture over a million cubic yards of beach sand each year and transport it offshore.

REDUCTIONS TO SAND SUPPLY

Update the Coastal Armoring Inventory Structure Type 2003 (Length mi.) 2015 (Length mi.) County % Armored Rock Revetment 69 65 Seawall or Retaining Wall 69 63 Other 1 1 TOTAL: 155 141 % of 1100 miles of coastline 14% 13% San Luis Obispo 52% Santa Barbara 11% Ventura 56% Los Angeles 28% Orange 40% San Diego (excluding bay) 39%

ADDITIONS TO THE SAND SUPPLY

Dam Removal Matilija Dam, Ventura River CA 480 major dams have been built in California s coastal watersheds, primarily for water supply, irrigation, and flood control 38% of coastal watershed area impounded by dams (area equal to Massachusetts and New Hampshire combined) Average annual sand supply has been reduced by 26% (or 3.7 million yd 3 /yr) Rindge Dam, Malibu CA

Beach Nourishment

Hueneme Beach and the dredging of Channel Islands Harbor (2014)

Stop Mining Sand from the Beaches and Rivers

Drone Monitoring of the Coastal Zone Post Thomas Fire Additional sediment sources?

BALANCING THE SAND BUDGET

Update Dredging Histories of Harbors to look at trends (proxy for littoral drift) 1,000,000 800,000 600,000 400,000 200,000 0 Santa Barbara Ventura Channel Islands Port Hueneme cu yds per year 300,000 600,000 1,000,000 35,000

rapidly assess the condition and value of our sandy beach ecosystem

Beach Sustainability Assessment Rapidly assess the condition of sandy beach ecosystems using standardized metrics. We must address the issues facing our coastline with interdisciplinary science with scientists and city managers/planners at the table

Conclusion: Our Beaches are Threatened Sand supply is reduced. Armoring of seacliffs, damming rivers Channelizing streams Drought USGS study predicts that 67% of southern California beaches will disappear by 2100 Loss of tourism economy Loss of storm buffer protecting critical development Loss of an important habitat Human management efforts must increase in order to preserve the beaches (Credit: Daniel Hoover, U.S. Geological Survey. Public domain.)

Beaches on the Edge Beaches on the Edge Understanding the importance of California s beaches from a variety of perspectives.

Recap/ Where am I going from here? Sand Accounting Updating sediment budgets with new stream flows, armoring, harbor dredging database Reassessing littoral cell boundaries Leaky cells Transport around headlands Beach Sustainability Assessment: Rapidly assessing the condition and value of the beach Monitoring the shoreline in preparation for the removal of the Matilija Dam on the Ventura River and Rindge Dam on Malibu Creek (Drones) Assessing Coastal Change (Drones) Opportunistic beach nourishment Thomas Fire (281,893 acres burned) Montecito Mudslides Debris International perspective on sand mining SAND WARS! Barrier beach breaching mechanics Seacliff erosion Legacy sediment