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Pace of Landscape Change and Pediment Development in the Northeastern Sonoran Desert, United States

Datos Bibliográficos

ID4752256
AutoresPhillip H Larson (0000-0001-6556-1640, Minnesota State Colleges and Universities System, autor de correspondencia), Scott B Kelley, Scott Kelley (0000-0002-4860-9590, Arizona State University), Ronald I Dorn (0000-0003-1343-4556, Arizona State University), Y B Seong (0000-0001-6605-3912, Korean Council for University Education)
Año2016
Volumen106
Número6
Páginas1195-1216
Fecha de publicación2016-11-01
Peer ReviewedSí
Open AccessNo
TipoARTICLE
RevistaAnnals of the American Association of Geographers (JOURNAL)
Identificadores de la revistaISSN: 2469-4452 • E-ISSN: 2469-4460
EditorialInforma UK Limited (PUBLISHER • GB)
DOI10.1080/24694452.2016.1201420
OpenAlexW2502028098
IdiomaEN
Citas recibidas2
Referencias citadas103

Pediments of the Sonoran Desert in the United States have intrigued physical geographers and geomorphologists for nearly a century. These gently sloping bedrock landforms are a staple of the desert landscape that millions visit each year. Despite the long-lived scientific curiosity, an understanding of the processes operating on the pediment has remained elusive. In this study we revisit the extensive history of pediment research. We then apply geospatial, field, and laboratory cosmogenic 10Be nuclide dating and back-scattered electron microscopy methods to assess the pace and processes of landscape change on pediment systems abutting the Salt River in Arizona. Our study focuses on the Usery pediments linked to base-level fluctuations (river terraces) of the Salt River. Relict pediment surfaces were reconstructed with dGPS data and kriging methodologies utilized in ArcGIS—based on preserved evidence of ancient pediment surfaces. 10Be ages of Salt River terraces established a chronology of incision events, where calculating the volume between the reconstructed relict pediment and modern surface topography established minimum erosion rates (∼41 mm/ka to ∼415 mm/ka). Pediment area and length appear to have a positive correlation to erosion rate and development of planar pediment surfaces. Field and laboratory observations reveal that pediment systems adjust and stabilize at each Salt River terrace. Relief reduction across the pediment begins with pediment channel incision via headward erosion. Next, tributary drainage capture begins and collapses interfluves. Lateral stream erosion promotes planation where the porosity of decayed granite along channel banks exceeds the bedrock underneath ephemeral channels

Archaeology · Climate change · Desert (philosophy · Geography · Pace · Political science · Archaeology and Natural History · Geology and Paleoclimatology Research · Tree-ring climate responses · Geology

  • How Rivers Get Across Mountains

    Phillip H Larson, Norman Meek et al.•Annals of the American…•2017

  • Asymmetric Hillslope Retreat Revealed from Talus Flatirons on Rock Peak, San Tan Mountains, Arizona, United States

    Jung Sun Oh, Y B Seong et al.•Annals of the American…•2020

  • An Alluvial Surface Chronology Based on Cosmogenic 36 Cl Dating, Ajo Mountains (Organ Pipe Cactus National Monument), Southern Arizona

    Open Access•Beiling Liu, Fred M Phillips et al.•Quaternary Research•1996

  • Exploration of the Colorado River of the West and its tributaries Explored in 1869, 1870, 1871, and 1872, under the direction of the secretary of the Smithsonian institution

    Elliott Coues, George Brown Goode et al.•1875

  • A complete and easily accessible means of calculating surface exposure ages or erosion rates from 10Be and 26Al measurements

    Open Access•Greg Balco, John O Stone et al.•Quaternary Geochronology•2008

  • Air pressure and cosmogenic isotope production

    Open Access•John O Stone•Journal of Geophysical Research:…•2000

  • Cosmic ray labeling of erosion surfaces

    Open Access•D Lal•Earth and Planetary Science Letters•1991

  • Kriging

    M A OLIVER, R Webster•International Journal of…•1990

  • Pediment Characteristics and Terminology

    Ben A Tator•Annals of the Association of…•1952

  • Late Quaternary erosion in southeastern Australia

    Open Access•Arjun M Heimsath, John Chappell et al.•Quaternary International•2001

  • Landscape Morphology and Alluvial Deposits in Southern New Mexico 1

    ROBERT V RUHE•Annals of the Association of…•1964

  • Geographic Evaluation of Climatic and Climato-Genetic Geomorphology

    Lutz Holzner, GLEN D WEAVER•Annals of the Association of…•1965

  • Fluvial Morphometry on the Cobar Pediplain∗

    Edwin D Ongley•Annals of the Association of…•1974

  • Sheetfloods, Streamfloods, and the Formation of Pediments

    PERRY H RAHN•Annals of the Association of…•1967

  • Aspect‐related Differences in Badlands Slope Morphology

    Open Access•Robert R Churchill•Annals of the Association of…•1981

  • Structure, Climate, and Basin Land Forms in Arizona and New Mexico 1

    Yi-Fu Tuan•Annals of the Association of…•1962

  • Stone Pavements in Deserts 1

    Ronald U Cooke•Annals of the Association of…•1970

  • The Retreat of Slopes

    Kirk Bryan•Annals of the Association of…•1940

  • Climatic Influences on the African Hoggar During the Quaternary, Based on Geomorphologic Observations

    Pierre Rognon•Annals of the Association of…•1967

  • Desert Landforms at the Kurkur Oasis, Egypt

    Karl W Butzer•Annals of the Association of…•1965

  • Rock Planes of Arid Regions

    Open Access•Douglas Johnson, Douglas A Johnson•Geographical Review•1932

  • Geomorphology in Arid Regions

    Andrew Goudie, A S Goudie et al.•Geographical Journal•1982

  • Landform Studies from Australia and New Guinea

    Open Access•Ronald L Ives, J N Jennings et al.•Geographical Review•1968

Obras citantes distintas2
Citas por año0,22
Intervalo de citas2017 - 2020 (4)
Velocidad de citaciónhistorical
Altamente citadoNo
Tipos de citaNeutras: 1
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