Pond fractals in a tidal flat

Studies over the past decade have reported power-law distributions for the areas of terrestrial lakes and Arctic melt ponds, as well as fractal relationships between their areas and coastlines. Here we report similar fractal structure of ponds in a tidal flat, thereby extending the spatial and tempo...

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Bibliographic Details
Published in:Physical Review E
Main Authors: Cael, B. B., Bisson, Kelsey, Lambert, Bennett Spencer
Other Authors: Massachusetts Institute of Technology. Department of Civil and Environmental Engineering, Woods Hole Oceanographic Institution
Format: Article in Journal/Newspaper
Language:English
Published: American Physical Society 2015
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Online Access:http://hdl.handle.net/1721.1/100021
Description
Summary:Studies over the past decade have reported power-law distributions for the areas of terrestrial lakes and Arctic melt ponds, as well as fractal relationships between their areas and coastlines. Here we report similar fractal structure of ponds in a tidal flat, thereby extending the spatial and temporal scales on which such phenomena have been observed in geophysical systems. Images taken during low tide of a tidal flat in Damariscotta, Maine, reveal a well-resolved power-law distribution of pond sizes over three orders of magnitude with a consistent fractal area-perimeter relationship. The data are consistent with the predictions of percolation theory for unscreened perimeters and scale-free cluster size distributions and are robust to alterations of the image processing procedure. The small spatial and temporal scales of these data suggest this easily observable system may serve as a useful model for investigating the evolution of pond geometries, while emphasizing the generality of fractal behavior in geophysical surfaces. National Science Foundation (U.S.). Graduate Research Fellowship (Grant 2388357) Gordon and Betty Moore Foundation National Science Foundation (U.S.) (Award OCE-1315201)