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University of New Mexico

Neotectonic evolution of Grand Canyon : interaction between volcanism, river incision, epeirogenic uplift, and faulting

Abstract

dc:description.abstract

<p>This thesis focuses on the effects of volcanism, river incision, epeirogenic uplift, and faulting on the landscape evolution of the Grand Canyon region. In the first chapter the migration of increasingly asthenospheric basaltic volcanism is used to constrain lithospheric modification of the Colorado Plateau margins. Buoyancy modification of the upper mantle, driven by the upwelling, is a likely driver for recent uplift of the area. In the second chapter, correlation between oversteepened rivers and areas of high-velocity upper mantle is used to show that recent and ongoing mantle-driven uplift is modulating the surface along the western margin of the Colorado Plateau. Differential oversteepening of rivers in the Zion National Park area can't be explained by climatic or bedrock-hardness differences and are best explained by localized uplift of the area, which explains the area's high relief and dramatic slot canyons. In the third chapter, new geochronology and geochemistry are used to reconstruct the timing, sequence, and structure of Grand Canyon's lava dams. Associated gravel deposits, internal cooling structures, and a general lack of lacustrine deposits suggests that the dams were removed in multiple stages and probably did not last for more than a few hundred to thousand years. Perched gravels under lava dams show steady incision rates indicating that the blockages were ephemeral and did not significantly affect long-term bedrock incision. In the final chapter, new Grand Canyon incision rates are used to quantify the spatial and temporal variations in incision. Results show temporally steady incision at any one location and a spatial pattern of increasing incision towards the east. This spatial pattern is most consistent with differential uplift of the area. Temporally steady incision suggests a lack of transient incision most consistent with sustained uplift. These studies suggest at the landscape of the region is young and actively being modified by deep forcing. Recent mantle-driven uplift associated with the convective modification of the lithosphere has steepened rivers and driven incision of deep canyons. Repeated lava damming of the Colorado River by comparison had a much smaller effect on the geomorphology or incision history of Grand Canyon.</p>

Degree

thesis:*
Name thesis:degree_name
Earth and Planetary Sciences
Level thesis:degree_level
Doctoral
Discipline thesis:degree_discipline
Department of Earth and Planetary Sciences
Year dc:date.available
2013

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Crow, Ryan
Contributors dc:contributor
  • Karlstrom, Karl
  • Laura, Crossey
  • Yemane, Asmerom
  • William, McIntosh

Subjects

dc:subject × 14

Rights

Language dc:language
English

Identifiers

dc:identifier.*
OAI identifier oai:identifier
oai:digitalrepository.unm.edu:eps_etds-1013

Chain of custody

source
Harvested from
University of New Mexico
Base URL
digitalrepository.unm.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Crow, Ryan. Neotectonic evolution of Grand Canyon : interaction between volcanism, river incision, epeirogenic uplift, and faulting. Doctoral thesis, 2013. http://hdl.handle.net/1928/22035