Li Erikson
Research Oceanographer at the USGS Pacific Coastal and Marine Science Center
Science and Products
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The performance of nearshore dredge disposal at Ocean Beach, San Francisco, California, 2005-2007 The performance of nearshore dredge disposal at Ocean Beach, San Francisco, California, 2005-2007
Ocean Beach, California, contains an erosion hot spot in the shadow of the San Francisco ebb tidal delta that threatens valuable public infrastructure as well as the safe recreational use of the beach. In an effort to reduce the erosion at this location a new plan for the management of sediment dredged annually from the main shipping channel at the mouth of San Francisco Bay was...
Authors
Patrick L. Barnard, Li H. Erikson, Jeff E. Hansen, Edwin Elias
Monitoring and modeling shoreline response due to shoreface nourishment on a high-energy coast Monitoring and modeling shoreline response due to shoreface nourishment on a high-energy coast
Shoreface nourishment can be an efficient technique to feed sediment into the littoral zone without the order of magnitude cost increase incurred by directly nourishing the beach. An erosion hot spot at Ocean Beach in San Francisco, California, USA, threatens valuable public infrastructure as well as safe recreational use of the beach. In an effort to reduce the erosion at this location...
Authors
P. Barnard, Li H. Erikson, J. Hansen
Coastal processes study at Ocean Beach, San Francisco, CA: Summary of data collection 2004-2006 Coastal processes study at Ocean Beach, San Francisco, CA: Summary of data collection 2004-2006
Ocean Beach in San Francisco, California, contains a persistent erosional section in the shadow of the San Francisco ebb tidal delta and south of Sloat Boulevard that threatens valuable public infrastructure as well as the safe recreational use of the beach. Coastal managers have been discussing potential mediation measures for over a decade, with little scientific research available to...
Authors
Patrick L. Barnard, Jodi Eshleman, Li H. Erikson, Daniel Hanes
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Science and Products
Filter Total Items: 21
Filter Total Items: 31
No Result Found
Filter Total Items: 87
The performance of nearshore dredge disposal at Ocean Beach, San Francisco, California, 2005-2007 The performance of nearshore dredge disposal at Ocean Beach, San Francisco, California, 2005-2007
Ocean Beach, California, contains an erosion hot spot in the shadow of the San Francisco ebb tidal delta that threatens valuable public infrastructure as well as the safe recreational use of the beach. In an effort to reduce the erosion at this location a new plan for the management of sediment dredged annually from the main shipping channel at the mouth of San Francisco Bay was...
Authors
Patrick L. Barnard, Li H. Erikson, Jeff E. Hansen, Edwin Elias
Monitoring and modeling shoreline response due to shoreface nourishment on a high-energy coast Monitoring and modeling shoreline response due to shoreface nourishment on a high-energy coast
Shoreface nourishment can be an efficient technique to feed sediment into the littoral zone without the order of magnitude cost increase incurred by directly nourishing the beach. An erosion hot spot at Ocean Beach in San Francisco, California, USA, threatens valuable public infrastructure as well as safe recreational use of the beach. In an effort to reduce the erosion at this location...
Authors
P. Barnard, Li H. Erikson, J. Hansen
Coastal processes study at Ocean Beach, San Francisco, CA: Summary of data collection 2004-2006 Coastal processes study at Ocean Beach, San Francisco, CA: Summary of data collection 2004-2006
Ocean Beach in San Francisco, California, contains a persistent erosional section in the shadow of the San Francisco ebb tidal delta and south of Sloat Boulevard that threatens valuable public infrastructure as well as the safe recreational use of the beach. Coastal managers have been discussing potential mediation measures for over a decade, with little scientific research available to...
Authors
Patrick L. Barnard, Jodi Eshleman, Li H. Erikson, Daniel Hanes
Filter Total Items: 20