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GeoRef Categories
Era and Period
Epoch and Age
Date
Availability
Hydrogeologic controls on barrier island geomorphology: Insights from electromagnetic surveys
Age and provenance of the Middle Jurassic Norphlet Formation of south Texas: stratigraphic relationship to the Louann Salt and regional significance
Constructing a geophysical test site for a coastal community's research and education activities
Automatic Selection of Dispersion Curves Based on a Weighted Probability Scheme
A HOLOCENE RECORD OF FLUX OF ALLUVIAL SEDIMENT RELATED TO CLIMATE: CASE STUDIES FROM THE NORTHERN GULF OF MEXICO
Differentiating tidal and groundwater dynamics from barrier island framework geology: Testing the utility of portable multifrequency electromagnetic induction profilers
Record of Historical Gulf of Mexico Storms Preserved In the Stratigraphy of Gum Hollow Delta, Nueces Bay, Texas, U.S.A.: An Example of Tropical-Cyclone-Induced Hyperpycnal Deposition
Location and Felt Reports for the 25 April 2010 m b Lg 3.9 Earthquake near Alice, Texas: Was it Induced by Petroleum Production?
Rapid Mud Accumulation On the Central Texas Shelf Linked To Climate Change and Sea-Level Rise
Ground-Penetrating Radar Study of North Padre Island: Implications for Barrier Island Internal Architecture, Model for Growth of Progradational Microtidal Barrier Islands, and Gulf of Mexico Sea-Level Cyclicity—Discussion
FORAMINIFERAL POPULATION RESPONSE TO FLUCTUATING INFLOW INTO NUECES BAY, TEXAS
Characterization of the sedimentary thermal regime along the Corsair growth-fault zone, Texas continental shelf, using corrected bottomhole temperatures
Evidence of similar probablility of intense hurricane strikes for the Gulf of Mexico over the late Holocene
Ground-Penetrating Radar Study of North Padre Island: Implications for Barrier Island Internal Architecture, Model for Growth of Progradational Microtidal Barrier Islands, and Gulf of Mexico Sea-Level Cyclicity
STRUCTURAL INTERPRETATION OF THE MIDDLE FRIO FORMATION USING 3D SEISMIC AND WELL LOGS : AN EXAMPLE FROM THE TEXAS GULF COAST OF THE UNITED STATES
Mechanisms controlling environmental change within an estuary: Corpus Christi Bay, Texas, USA
Over 400 km of high-resolution seismic data and 53 sediment cores up to 30 m in length were collected from Corpus Christi Bay along the central Texas coast in order to study the impact of sea-level and climate change on coastal environments over the last 10 k.y. Although coastal environments experienced a general landward migration as relative sea level rose over the last 10 k.y., this retreat was punctuated by three, possibly four, major flooding events. These flooding events are marked by abrupt changes in lithologic and seismic facies interpreted to represent rapid landward shifts of bay environments. Such changes include the back stepping of bayhead deltas, tidal deltas, oyster reefs, and other bay environments. Flooding events occurred at 8.0, 4.8, 2.6 ka, and possibly at 9.6 ka, and lasted only a few hundred years. The 9.6 ka flooding surface represents the initial drowning of the ancestral Nueces River valley and may or may not have been rapid in nature. The flooding surface that formed around 8.0 ka is interpreted to record either an increase in the rate of relative sea-level rise or the flooding of relict fluvial terraces that formed by the Nueces River during the stepped fall in sea level since marine isotope stage (MIS) 5e (120 ka). The 4.8 ka flooding event is thought to have formed as a result of either a climatic change during the mid-Holocene, characterized by warmer and drier conditions compared to present, and/or the flooding of another fluvial terrace. The most recent flooding event (2.6 ka) is thought to have resulted from a decrease in sediment delivery to the bay associated with a return to more mesic conditions similar to those of the present climatic regime.