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Modeling the detection of impact ejecta on the lunar surface.

Authors :
Li, Yanwei
Srama, Ralf
Wu, Yiyong
Grün, Eberhard
Source :
Planetary & Space Science. Dec2015, Vol. 119, p185-193. 9p.
Publication Year :
2015

Abstract

The lunar surface is continuously exposed to the micrometeoroid environment. Hypervelocity impacts of interplanetary dust particles with speeds around 17 km s − 1 generate secondary ejecta on the lunar surface. A dust detector placed on the moon is capable of characterizing the secondary ejecta population. The purpose of this paper is to study the speed and trajectory information of ejecta by impact simulations and its implications for the location of a dust sensor on the surface. AUTODYN15.0/2D software was used to simulate the velocity and angular distributions of ejecta created by the primary impacts of interplanetary dust particles. We considered projectiles with sizes of 10 μ m spheres in diameter with speeds of 17 km s − 1 . We used impact angles of 15°, 30°, 45°, 60°, 75°, and 90° with respect to the surface. A significant percentage of the impact ejecta are created in the early-time stage of the impact process. This population can be captured by a sensor placed on the lunar surface (e.g. Lunar Ejecta and Meteorites (LEAM) experiment) or by a sensor mounted directly on a lander (e.g. Lunar Dust eXplorer (LDX)). The secondary ejecta population above the lunar surface is considered to explain the results of the LEAM experiment. A sensor directly placed on the surface like LEAM is not very well suited to measure the high-speed ejecta component – a sensor located at a few meters height (e.g. on top of a lunar lander) would measure higher fluxes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00320633
Volume :
119
Database :
Academic Search Index
Journal :
Planetary & Space Science
Publication Type :
Academic Journal
Accession number :
111185230
Full Text :
https://doi.org/10.1016/j.pss.2015.09.019