Identifying wrinkle ridges structures from Mars MOLA and Viking mission data using GRASS in.pdf
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Identifying wrinkle ridges structures from Mars MOLA and Viking mission data using GRASS in
Proceedings of the Open source GIS - GRASS users conference 2002 - Trento, Italy, 11-13 September 2002
Identifying wrinkle ridges structures from Mars MGS
and Viking mission data: using Grass in planetary
geology.
Alessandro Frigeri*, Costanzo Federico*, Giorgio Minelli*, Cristina Pauselli*, Cristina
Caldarella
* Dipartimento di Scienze della Terra, Geologia Strutturale e Geofisica, Universita? degli Studi di
Perugia,
P.zza Universita? 1, 06100 Perugia, ITALY, tel. ++39 0755852623, Fax ++39 0755852603,
e-mail afrigeri@unipg.it
Abstract
The numerous missions to Mars have sent information about the red planet during
last decades. Recently it has been shown that Mars has ice on its poles and that ice could
be probably present all over the planet subsurface. The presence of ice on subsurface
could drive particular geological structures. The so called ’wrinkle ridges’ structures
could be related to this. Grass GIS has been used to import and store in a common
geospatial database Viking image data and the latest Mars Global Surveyor (MGS) data.
GRASS raster based analysis at different resolution has been used to identify wrinkle
structures. The image modules are used to align Viking data with Mars Orbiter Laser
Altimeter (MOLA) DEM.
1 Introduction
The large quantity of data coming from missions to Mars made necessary to deal with
an efficient system of storage/retrieval of these data. Planetary Data System (PDS)
represents a good example of distributed archiving system. The analysis of the data
is thereafter difficult due to different reference systems and data heterogeneity. In this
work GRASS GIS has been used to import and analyse dataset from MGS and Viking
PDS archives.
The case study is the morpho-geological analysis of wrinkle ridges structures present
in different zones of the planet. Along with the working activity, the possible use of
GRASS with planetary data has been studied, underlying the extra feature needed to
embed in GRASS GIS to use it as efficient anal
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