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Impact ejecta on the moonThe partitioning of energy and the distribution of the resultant ejecta on the moon is numerically modeled using a Eulerian finite difference grid. The impact of an iron meteoroid at 15 km/sec on a gabbroic anorthosite lunar crust is examined. The high speed impact induced flow is described over the entire hydrodynamic regime from a time where the peak pressures are 6 Mbar until the stresses everywhere in the flow are linearly elastic, and less than 5 kbar. Shock-induced polymorphic phase changes, (plagioclase and pyroxene to hollandite and perovskite), and the subsequent reversion to low pressure phases are demonstrated to enhance shock wave attenuation. A rate-dependent equation of state is used for describing the hysteretic effect of the phase change. Ballistic equations for a spherical planet are then applied to material with net velocity away from the moon.
Document ID
19760020054
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Okeefe, J. D.
(California Univ. Los Angeles, CA, United States)
Date Acquired
September 3, 2013
Publication Date
June 11, 1976
Subject Category
Lunar And Planetary Exploration
Report/Patent Number
CONTRIB-2763
NASA-CR-148290
Report Number: CONTRIB-2763
Report Number: NASA-CR-148290
Accession Number
76N27142
Funding Number(s)
CONTRACT_GRANT: NSG-7129
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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