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How River Rocks Round: Resolving the Shape-Size Paradox
by
Domokos, Gabor
, Török, Ákos
, Jerolmack, Douglas J.
, Sipos, Andras Á.
in
Abrasion
/ Abrasion resistance
/ Algorithms
/ Analysis
/ Computer Science
/ Creeks & streams
/ Curvature
/ Downstream
/ Earth Sciences
/ Ellipsoids
/ Experiments
/ Fluvial sediments
/ Geologic Sediments
/ Geology
/ Geology - methods
/ Imaging, Three-Dimensional
/ Laboratories
/ Laboratory experiments
/ Mathematical models
/ Mathematics
/ Minerals - chemistry
/ Models, Theoretical
/ Normal Distribution
/ Partial differential equations
/ Probability
/ Rivers
/ Rocks
/ Rounding
/ Science
/ Sediments
/ Sediments (Geology)
/ Studies
/ Transport
/ Trends
2014
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How River Rocks Round: Resolving the Shape-Size Paradox
by
Domokos, Gabor
, Török, Ákos
, Jerolmack, Douglas J.
, Sipos, Andras Á.
in
Abrasion
/ Abrasion resistance
/ Algorithms
/ Analysis
/ Computer Science
/ Creeks & streams
/ Curvature
/ Downstream
/ Earth Sciences
/ Ellipsoids
/ Experiments
/ Fluvial sediments
/ Geologic Sediments
/ Geology
/ Geology - methods
/ Imaging, Three-Dimensional
/ Laboratories
/ Laboratory experiments
/ Mathematical models
/ Mathematics
/ Minerals - chemistry
/ Models, Theoretical
/ Normal Distribution
/ Partial differential equations
/ Probability
/ Rivers
/ Rocks
/ Rounding
/ Science
/ Sediments
/ Sediments (Geology)
/ Studies
/ Transport
/ Trends
2014
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How River Rocks Round: Resolving the Shape-Size Paradox
by
Domokos, Gabor
, Török, Ákos
, Jerolmack, Douglas J.
, Sipos, Andras Á.
in
Abrasion
/ Abrasion resistance
/ Algorithms
/ Analysis
/ Computer Science
/ Creeks & streams
/ Curvature
/ Downstream
/ Earth Sciences
/ Ellipsoids
/ Experiments
/ Fluvial sediments
/ Geologic Sediments
/ Geology
/ Geology - methods
/ Imaging, Three-Dimensional
/ Laboratories
/ Laboratory experiments
/ Mathematical models
/ Mathematics
/ Minerals - chemistry
/ Models, Theoretical
/ Normal Distribution
/ Partial differential equations
/ Probability
/ Rivers
/ Rocks
/ Rounding
/ Science
/ Sediments
/ Sediments (Geology)
/ Studies
/ Transport
/ Trends
2014
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Journal Article
How River Rocks Round: Resolving the Shape-Size Paradox
2014
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Overview
River-bed sediments display two universal downstream trends: fining, in which particle size decreases; and rounding, where pebble shapes evolve toward ellipsoids. Rounding is known to result from transport-induced abrasion; however many researchers argue that the contribution of abrasion to downstream fining is negligible. This presents a paradox: downstream shape change indicates substantial abrasion, while size change apparently rules it out. Here we use laboratory experiments and numerical modeling to show quantitatively that pebble abrasion is a curvature-driven flow problem. As a consequence, abrasion occurs in two well-separated phases: first, pebble edges rapidly round without any change in axis dimensions until the shape becomes entirely convex; and second, axis dimensions are then slowly reduced while the particle remains convex. Explicit study of pebble shape evolution helps resolve the shape-size paradox by reconciling discrepancies between laboratory and field studies, and enhances our ability to decipher the transport history of a river rock.
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