Regional Lithological Mapping Using ASTER-TIR Data: Case Study for the Tibetan Plateau and the Surrounding Area

The mineralogical indices the Quartz Index (QI), Carbonate Index (CI) and Mafic Index (MI) for ASTER multispectral thermal infrared (TIR) data were applied to various geological materials for regional lithological mapping on the Tibetan Plateau. Many lithological and structural features are not curr...

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Main Authors: Yoshiki Ninomiya, Bihong Fu
Format: Article
Language:English
Published: MDPI AG 2016-09-01
Series:Geosciences
Subjects:
TIR
Online Access:http://www.mdpi.com/2076-3263/6/3/39
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spelling doaj-be0e8ac5cf6b42a3aa843032f7ade8e82020-11-24T23:03:49ZengMDPI AGGeosciences2076-32632016-09-01633910.3390/geosciences6030039geosciences6030039Regional Lithological Mapping Using ASTER-TIR Data: Case Study for the Tibetan Plateau and the Surrounding AreaYoshiki Ninomiya0Bihong Fu1Geological Survey of Japan, National Institute of Advanced Industrial Science and Technology, Tsukuba 3058567, JapanInstitute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, Beijing 100094, ChinaThe mineralogical indices the Quartz Index (QI), Carbonate Index (CI) and Mafic Index (MI) for ASTER multispectral thermal infrared (TIR) data were applied to various geological materials for regional lithological mapping on the Tibetan Plateau. Many lithological and structural features are not currently well understood in the central Tibetan Plateau, including the distribution of mafic-ultramafic rocks related to the suture zones, the quartzose and carbonate sedimentary rocks accreted to the Eurasian continent, and sulfate layers related to the Tethys and neo-Tethys geological setting. These rock types can now be mapped with the interpretation of the processed ASTER TIR images described in this paper. A methodology is described for the processing of ASTER TIR data applied to a very wide region of the Tibetan Plateau. The geometrical and radiometric performance of the processed images is discussed, and the advantages of using ortho-rectified data are shown. The challenges of using ASTER data with a small footprint in addition to selecting an appropriate subset of scenes are also examined. ASTER scenes possess a narrow swath width when compared to LANDSAT data (60 km vs. 185 km, respectively). Furthermore, the ASTER data archive is vast, consisting of approximately three million images. These details can present an added level of complexity during an image processing workflow. Finally, geological interpretations made on the maps of the indices are compared with prior geological field studies. The results from the investigations suggest that the indices perform well in the classification of quartzose rocks based on the carbonate and mafic mineral content, in addition to the granitic rocks based on the feldspar content.http://www.mdpi.com/2076-3263/6/3/39ASTERTIRgeologymineralogysuture zonequartzfeldsparssilicatescarbonatessulfatesgranitic rocksfelsicultramaficmapping
collection DOAJ
language English
format Article
sources DOAJ
author Yoshiki Ninomiya
Bihong Fu
spellingShingle Yoshiki Ninomiya
Bihong Fu
Regional Lithological Mapping Using ASTER-TIR Data: Case Study for the Tibetan Plateau and the Surrounding Area
Geosciences
ASTER
TIR
geology
mineralogy
suture zone
quartz
feldspars
silicates
carbonates
sulfates
granitic rocks
felsic
ultramafic
mapping
author_facet Yoshiki Ninomiya
Bihong Fu
author_sort Yoshiki Ninomiya
title Regional Lithological Mapping Using ASTER-TIR Data: Case Study for the Tibetan Plateau and the Surrounding Area
title_short Regional Lithological Mapping Using ASTER-TIR Data: Case Study for the Tibetan Plateau and the Surrounding Area
title_full Regional Lithological Mapping Using ASTER-TIR Data: Case Study for the Tibetan Plateau and the Surrounding Area
title_fullStr Regional Lithological Mapping Using ASTER-TIR Data: Case Study for the Tibetan Plateau and the Surrounding Area
title_full_unstemmed Regional Lithological Mapping Using ASTER-TIR Data: Case Study for the Tibetan Plateau and the Surrounding Area
title_sort regional lithological mapping using aster-tir data: case study for the tibetan plateau and the surrounding area
publisher MDPI AG
series Geosciences
issn 2076-3263
publishDate 2016-09-01
description The mineralogical indices the Quartz Index (QI), Carbonate Index (CI) and Mafic Index (MI) for ASTER multispectral thermal infrared (TIR) data were applied to various geological materials for regional lithological mapping on the Tibetan Plateau. Many lithological and structural features are not currently well understood in the central Tibetan Plateau, including the distribution of mafic-ultramafic rocks related to the suture zones, the quartzose and carbonate sedimentary rocks accreted to the Eurasian continent, and sulfate layers related to the Tethys and neo-Tethys geological setting. These rock types can now be mapped with the interpretation of the processed ASTER TIR images described in this paper. A methodology is described for the processing of ASTER TIR data applied to a very wide region of the Tibetan Plateau. The geometrical and radiometric performance of the processed images is discussed, and the advantages of using ortho-rectified data are shown. The challenges of using ASTER data with a small footprint in addition to selecting an appropriate subset of scenes are also examined. ASTER scenes possess a narrow swath width when compared to LANDSAT data (60 km vs. 185 km, respectively). Furthermore, the ASTER data archive is vast, consisting of approximately three million images. These details can present an added level of complexity during an image processing workflow. Finally, geological interpretations made on the maps of the indices are compared with prior geological field studies. The results from the investigations suggest that the indices perform well in the classification of quartzose rocks based on the carbonate and mafic mineral content, in addition to the granitic rocks based on the feldspar content.
topic ASTER
TIR
geology
mineralogy
suture zone
quartz
feldspars
silicates
carbonates
sulfates
granitic rocks
felsic
ultramafic
mapping
url http://www.mdpi.com/2076-3263/6/3/39
work_keys_str_mv AT yoshikininomiya regionallithologicalmappingusingastertirdatacasestudyforthetibetanplateauandthesurroundingarea
AT bihongfu regionallithologicalmappingusingastertirdatacasestudyforthetibetanplateauandthesurroundingarea
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