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A Comparison of Crater-Size Scaling and Ejection-Speed Scaling During Experimental Impacts in SandNon‐dimensional scaling relationships are used to understand various cratering processes including final crater sizes and the excavation of material from a growing crater. The principal assumption behind these scaling relationships is that these processes depend on a combination of the projectile's characteristics, namely its diameter, density, and impact speed. This simplifies the impact event into a single point‐source. So long as the process of interest is beyond a few projectile radii from the impact point, the point‐source assumption holds. These assumptions can be tested through laboratory experiments in which the initial conditions of the impact are controlled and resulting processes measured directly. In this contribution, we continue our exploration of the congruence between crater‐size scaling and ejection‐speed scaling relationships. In particular, we examine a series of experimental suites in which the projectile diameter and average grain size of the target are varied.
Document ID
20140012875
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Anderson, J. L. B.
(Winona State Univ. Winona, MN, United States)
Cintala, M. J.
(NASA Johnson Space Center Houston, TX, United States)
Johnson, M. K.
(Winona State Univ. Winona, MN, United States)
Date Acquired
October 7, 2014
Publication Date
March 17, 2014
Subject Category
Lunar And Planetary Science And Exploration
Report/Patent Number
LPI-Contrib-2668
JSC-CN-30525
Report Number: LPI-Contrib-2668
Report Number: JSC-CN-30525
Meeting Information
Meeting: Lunar and Planetary Science Conference
Location: The Woodlands, TX
Country: United States
Start Date: March 17, 2014
End Date: March 21, 2014
Sponsors: Lunar and Planetary Inst., Universities Space Research Association, NASA Johnson Space Center
Distribution Limits
Public
Copyright
Public Use Permitted.
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