Brook, Martin S. et al. (2006): Quantified time scale for glacial valley cross-profile evolution in Alpine mountains

Leg/Site/Hole:
DSDP 90
DSDP 90 594
Identifier:
2006-062580
georefid

10.1130/G22700.1
doi

Creator:
Brook, Martin S.
University of Dundee, Department of Geography, Dundee, United Kingdom
author

Kirkbride, Martin P.
author

Brock, Ben W.
author

Identification:
Quantified time scale for glacial valley cross-profile evolution in Alpine mountains
2006
Geology (Boulder)
Geological Society of America (GSA), Boulder, CO, United States
34
8
637-640
Space is used as a proxy for time in determining the role of glaciation in shaping valley cross profiles in the Two Thumb Range (Southern Alps), New Zealand. The range is undergoing rapid tectonic transport and uplift as it is advected toward the Alpine fault. Repeated cycles of glacial erosion during the Quaternary have fashioned U-shaped valleys in the north of the range, close to the Main Divide, while valleys in the less glaciated south of the range have rounded divides and convex fluvial cross profiles. Tectonic transport and uplift rates, coupled with an offshore oxygen isotope (delta (super 18) O) record and glacial- geological reconstructions, allow time constraints to be applied to valley development along the range. Valley width and depth measurements and power-law equations were used to quantify the shape of cross-profile transects in 37 valleys. Valleys evolved into a characteristic U-shaped cross profile formed over > or =400 k.y. of glacial occupancy. This, regardless of other models of glacial flattening of valley long profiles, suggests that alpine glaciation excavates greater volumes of rock, indicating that glaciers are a more effective erosional agent than fluvial activity in alpine mountain belts.
English
Serial
Coverage:Geographic coordinates:
North:-43.0000
West:170.0000East: 174.5653
South:-45.3129

Quaternary geology; Australasia; Cenozoic; Deep Sea Drilling Project; DSDP Site 594; erosion; geomorphology; glacial erosion; glacial extent; glacial features; glaciation; IPOD; landform evolution; landscapes; Leg 90; morphometry; New Zealand; Pacific Ocean; quantitative geomorphology; Quaternary; reconstruction; regression analysis; South Island; South Pacific; Southern Alps; Southwest Pacific; statistical analysis; theoretical models; time scales; Two Thumb Range; U-shaped valleys; valleys; West Pacific;

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