HR: 0800h
AN: H51C-1132 [Abstracts]
TI: A Numerical Study of the Factors Controlling Valley Spacing in Landscapes
AU: * Perron, J T
EM: perron@eps.berkeley.edu
AF: Department of Earth and Planetary Science, University of California, Berkeley, 307 McCone Hall,
Berkeley, CA 94720
United States
AU: Kirchner, J W
EM: kirchner@eps.berkeley.edu
AF: Department of Earth and Planetary Science, University of California, Berkeley, 307 McCone Hall,
Berkeley, CA 94720
United States
AU: Dietrich, W E
EM: bill@eps.berkeley.edu
AF: Department of Earth and Planetary Science, University of California, Berkeley, 307 McCone Hall,
Berkeley, CA 94720
United States
AB:
Landscapes often exhibit a characteristic spatial scale of dissection, which is most apparent as the spacing between adjacent
valleys (or the intervening ridges). Simple physical and geometrical arguments imply that valley spacing could be determined
by erosion thresholds and/or by the relative rates of advective (e.g., stream incision) and diffusive (e.g., soil creep)
sediment transport processes. We solve a simplified, nonlinear advection-diffusion equation numerically to investigate the
factors controlling valley spacing. Using dimensional analysis, we infer the form of a relationship between valley spacing,
the rates of the advective and diffusive processes, and spatial and temporal boundary conditions. Numerical solutions of the
advection-diffusion equation confirm the general form of this relationship. We show that a similar relationship should hold
for more complicated expressions that are more realistic representations of sediment transport processes in nature. Our
results also provide insight into the factors controlling local relief, the causes of transitions from rill-like drainage
networks to branching networks, and the upper and lower bounds on the length-to-width ratios of first-order drainage basins.
DE: 3210 Modeling
DE: 3220 Nonlinear dynamics
DE: 3230 Numerical solutions
DE: 1815 Erosion and sedimentation
DE: 1824 Geomorphology (1625)
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting