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Recent projections of global climate change necessitate improved methodologies that quantify shoreline variability. Updated analyses of shoreline movement provide important information that can aid and inform likely intervention policies. This paper uses the Analyzing Moving Boundaries Using R (AMBUR) technique to evaluate shoreline change trends over the time period 1856 to 2015. Special emphasis...
The hypoxic zone on the Louisiana-Texas shelf varies in its area, volume, and vertical distribution. Vertical movement to avoid hypoxia (dissolved oxygen (DO) concentration < 2 mg/L) can be important to understanding fish exposure to low DO. Fish movement was simulated in 2-D (bottom layer) and 3-D with movement algorithms that depended on DO fields generated by a 3-D coupled hydrodynamic-water...
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