HR: 0800h
AN: H51A-1102 [Abstracts]
TI: Optical dating of arroyo-system deposits: Insights into cut-fill cycles in the southern Colorado
piedmont
AU: * Arnold, L
EM: lee.arnold@st-peters.oxford.ac.uk
AF: Oxford Luminescence Rersearch Group, School of Geography & the Environment
University of Oxford, Oxford, OX1 3TB
United Kingdom
AU: Tucker, G E
EM: gtucker@cires.colorado.edu
AF: CIRES & Dept of Geological Sciences, University of Colorado
2200 Colorado Ave 399 UCB, Boulder, CO 80309-0399
United States
AU: Stokes, S
EM: stephen.stokes@geog.ox.ac.uk
AF: Oxford Luminescence Rersearch Group, School of Geography & the Environment
University of Oxford, Oxford, OX1 3TB
United Kingdom
AB:
Optical ages are presented from a range of small-scale arroyo systems found across Fort Carson and Pinon Canyon Maneuver Site
in southern Colorado. Recent developments in both single-aliquot and single-grain techniques combined with more rigorous
statistical methods for analysing paleodose estimates now mean that optical dating is able to provide much more accurate and
precise constraints on the timing of major depositional changes in these fluvial systems. The arroyos of the region display
distinct and multiple paleochannels along their side walls. Optical dating of infill deposits from within these paleochannels
and from intervening alluvial fill units provides the first detailed and accurate chronology of past and present arroyo
epicycle histories in the region. Resulting ages suggest that cut-fill behaviour has been active to varying degrees over much
of the Holocene, particularly from the mid-Holocene onwards. Evidence also points towards a strongly episodic pattern of
arroyo incision, separated by more protracted periods of stability and/or aggradation. Correlation of arroyo incision and
subsequent infilling around the mid-Holocene Altithermal event in several paleochannel sequences from one arroyo system (the
"Little Grand Canyon", Fort Carson) provides evidence for external climatic control on major Holocene cut-fill cycles in the
region. Dating sequences from different locations within the same systems, and from different systems within the area,
enables an intercomparison of arroyo epicycles at a multitude of spatial scales. The complex spatio-temporal dynamics
emerging suggest that time-transgressive responses may be common both within and between the arroyos of this region. These
findings imply either that basin response times to external forcing vary significantly with basin size, or that local-scale
forcing mechanisms have been dominant controls on past arroyo dynamics in this region.
DE: 1815 Erosion and sedimentation
DE: 1824 Geomorphology (1625)
DE: 1848 Networks
DE: 1869 Stochastic processes
DE: 1894 Instruments and techniques
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting