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Recent bright gully deposits on Mars; wet or dry flow?

Jon D. Pelletier, Kelly J. Kolb, Alfred S. McEwen and Randy L. Kirk
Recent bright gully deposits on Mars; wet or dry flow?
Geology (Boulder) (March 2008) 36 (3): 211-214

Abstract

Bright gully sediments attributed to liquid water flow have been deposited on Mars within the past several years. To test the liquid water flow hypothesis, we constructed a high-resolution (1 m/pixel) photogrammetric digital elevation model of a crater in the Centauri Montes region, where a bright gully deposit formed between 2001 and 2005. We conducted one-dimensional (1-D) and 2-D numerical flow modeling to test whether the deposit morphology is most consistent with liquid water or dry granular flow. Liquid water flow models that incorporate freezing can match the runout distance of the flow for certain freezing rates but fail to reconstruct the distributary lobe morphology of the distal end of the deposit. Dry granular flow models can match both the observed runout distance and the distal morphology. Wet debris flows with high sediment concentrations are also consistent with the observed morphology because their rheologies are often similar to that of dry granular flows. As such, the presence of liquid water in this flow event cannot be ruled out, but the available evidence is consistent with dry landsliding.


ISSN: 0091-7613
EISSN: 1943-2682
Coden: GLGYBA
Serial Title: Geology (Boulder)
Serial Volume: 36
Serial Issue: 3
Title: Recent bright gully deposits on Mars; wet or dry flow?
Affiliation: University of Arizona, Department of Geosciences, Tucson, AZ, United States
Pages: 211-214
Published: 200803
Text Language: English
Publisher: Geological Society of America (GSA), Boulder, CO, United States
References: 23
Accession Number: 2008-072107
Categories: Extraterrestrial geology
Document Type: Serial
Bibliographic Level: Analytic
Annotation: With GSA Data Repository Item 2008055
Illustration Description: illus.
Secondary Affiliation: U. S. Geological Survey, USA, United States
Country of Publication: United States
Secondary Affiliation: GeoRef, Copyright 2017, American Geosciences Institute. Reference includes data from GeoScienceWorld, Alexandria, VA, United States. Reference includes data supplied by the Geological Society of America, Boulder, CO, United States
Update Code: 200819
Program Name: USGSOPNon-USGS publications with USGS authors
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