Widespread landslide activity in an extreme wet season and implications for regional sediment management, eastern San Francisco Bay area, California
Watershed sediment production is expected to increase in a warmer future with more extreme rain, with cascading effects throughout drainage and sediment-transport networks. This study investigated landscape-scale sediment movement in the eastern San Francisco Bay area, California, USA, during the extreme 2016–2017 wet season that brought major rainfall, landslides, and flooding. Mapping 8,928 landslides across a 1,050-km2 study area revealed new sediment yield of 510–956 t/km2, equivalent to denudation of 193–361 mm/ky. These results correspond closely to long-term denudation rates in the northern and central California Coast Ranges, indicating that mass wasting in very wet years dominates long-term sediment mobilization. However, due to long residence times in drainage networks, the 2017 landslides contributed at most ∼1%–2% of the estimated locally derived fluvial sediment transport to San Francisco Bay. Although the amount of sediment mobilized did not threaten municipal water supplies, small rangeland impoundments in this mixed-use landscape lost storage capacity to new sedimentation. Considering regional sediment supply and demand, even the exceptionally large sediment delivery in an extreme wet year cannot meet the need for sediment to accrete tidal wetlands in the bay. To keep pace with rising sea levels, this abnormally high terrestrial sediment input would need to occur in 50 of the next 75 years, an unlikely occurrence due to the prevalence of recent drought years. Shoreline protection and restoration in the bay would need additional sources of sediment, such as through management of dredged sediment through beneficial-reuse programs.
Citation Information
| Publication Year | 2026 |
|---|---|
| Title | Widespread landslide activity in an extreme wet season and implications for regional sediment management, eastern San Francisco Bay area, California |
| DOI | 10.1029/2026EA005227 |
| Authors | Amy E. East, Amy Foxgrover, Skye C. Corbett, Brian D. Collins, Andrew C. Ritchie |
| Publication Type | Article |
| Publication Subtype | Journal Article |
| Series Title | Earth and Space Science |
| Index ID | 70279208 |
| Record Source | USGS Publications Warehouse |
| USGS Organization | Pacific Coastal and Marine Science Center; Geology, Energy & Minerals Science Center |