HR: 1340h
AN: OS53A-0984 [Abstracts]
TI: Transgressive shoreline deposits seaward of coastal ponds along northeastern South Carolina coastline.
AU: * Wright, E
EM: ewright@coastal.edu
AF: Coastal Carolina University, 1270 Atlantic Avenue, Conway, SC 29526, United States
AU: Harris, M S
EM: msharris@coastal.edu
AF: Coastal Carolina University, 1270 Atlantic Avenue, Conway, SC 29526, United States
AU: Pender, R
EM: rrpender@boothcompanyinc.com
AF: Coastal Carolina University, 1270 Atlantic Avenue, Conway, SC 29526, United States
AU: Ball, M
EM: msball@coastal.edu
AF: Coastal Carolina University, 1270 Atlantic Avenue, Conway, SC 29526, United States
AB:
The arcuate Long Bay coastline of northeastern South Carolina is dominated by the 75 km long Grand Strand,
which is the result of landward retreat of the shoreline intersecting the paleo Myrtle Beach barrier system. As the
shoreline transgresses, three stages of development have been recognized in this large coastal embayment: (1)
coastal barrier island landforms north and south of the central Grand Strand that are migrating across an
irregular Pleistocene paleolandscape and have not intersected emergent Quaternary paralic terraces; (2) an
intermediate stage where the transgressing shoreline has created shore parallel coastal lakes and vegetated
wetlands between the transgressive sediment mass and the emergent terraces; and (3) coastal segments
where the transgressive shoreline is actively eroding into the emergent Pleistocene core. This study uses ground
penetrating radar (GPR) and vibracore data to study the intermediate stage lake coastline. The GPR data reveals
landward dipping reflectors infilling uneven topography and channels formed in the low between the irregular
paleo barrier high and retreating shoreline. Study of the transgressive architecture and intersection with paleo-
shoreface is important for understanding future shoreline retreat and for understanding potential storm records
preserved in the infill.
DE: 3000 MARINE GEOLOGY AND GEOPHYSICS
DE: 3020 Littoral processes
DE: 4200 OCEANOGRAPHY: GENERAL
SC: Ocean Sciences [OS]
MN: 2007 Fall Meeting