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3D-Laser-Scanning Technique Applied to Bulk Density Measurements of Apollo Lunar SamplesIn order to better interpret gravimetric data from orbiters such as GRAIL and LRO to understand the subsurface composition and structure of the lunar crust, it is import to have a reliable database of the density and porosity of lunar materials. To this end, we have been surveying these physical properties in both lunar meteorites and Apollo lunar samples. To measure porosity, both grain density and bulk density are required. For bulk density, our group has historically utilized sub-mm bead immersion techniques extensively, though several factors have made this technique problematic for our work with Apollo samples. Samples allocated for measurement are often smaller than optimal for the technique, leading to large error bars. Also, for some samples we were required to use pure alumina beads instead of our usual glass beads. The alumina beads were subject to undesirable static effects, producing unreliable results. Other investigators have tested the use of 3d laser scanners on meteorites for measuring bulk volumes. Early work, though promising, was plagued with difficulties including poor response on dark or reflective surfaces, difficulty reproducing sharp edges, and large processing time for producing shape models. Due to progress in technology, however, laser scanners have improved considerably in recent years. We tested this technique on 27 lunar samples in the Apollo collection using a scanner at NASA Johnson Space Center. We found it to be reliable and more precise than beads, with the added benefit that it involves no direct contact with the sample, enabling the study of particularly friable samples for which bead immersion is not possible
Document ID
20150001956
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Macke, R. J.
(Vatican Observatory Vatican City State (Holy See))
Kent, J. J.
(Jacobs Technology, Inc. Houston, TX, United States)
Kiefer, W. S.
(Lunar and Planetary Inst. Houston, TX, United States)
Britt, D. T.
(University of Central Florida Orlando, FL, United States)
Date Acquired
February 23, 2015
Publication Date
March 16, 2015
Subject Category
Lunar And Planetary Science And Exploration
Instrumentation And Photography
Report/Patent Number
JSC-CN-32845
Meeting Information
Meeting: Lunar and Planetary Science Conference
Location: The Woodlands, TX
Country: United States
Start Date: March 16, 2015
End Date: March 20, 2015
Sponsors: Lunar and Planetary Inst., Universities Space Research Association
Distribution Limits
Public
Copyright
Public Use Permitted.
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