Arid
DOI10.1071/RJ0000105
An investigation of the geological and geomorphological features of fowlers gap using thermal infrared, radar and airborne geophysical remote sensing techniques
Hewson, RD; Taylor, GR
通讯作者Hewson, RD
来源期刊RANGELAND JOURNAL
ISSN1036-9872
出版年2000
卷号22期号:1页码:105-123
英文摘要

This study summarises the application of several remote sensing techniques to investigate various components of a land surface in the semi-arid environment of Fowlers Gap. These remote sensing techniques included NASA’s Thermal Infrared Multispectral Scanner (TIMS) and CSIRO’s Mid-Infrared Airborne CO2 Laser Spectrometer (MIRACO(2)LAS), NASA’s AIRSAR radar and geophysical airborne radiometrics. Linear spectral unmixing of extracted emissivities from the TIMS data produced four endmembers: quartz, clay minerals, dry vegetation (cellulose) in fine soils, and green vegetation/moisture. MIRACO(2)LAS data identified spectral signatures similar to the spectra of endmembers derived from TIMS data. The sensitivity of both thermal infrared remote sensing techniques to the quartz/clay contents and textures of the soils and sediments was confirmed by detailed laboratory spectral measurements. Surface roughness information from AIRSAR’s band C radar backscatter assisted the discrimination of alluvial and colluvial quartz and clay-rich deposits from the outcropping geological units. In particular the C band AIRSAR radar discriminated the coarse grained sandstone and quartzite scree within the colluvial pediments, from the finer grained quartz-rich ’radar smooth’ alluvium in the scalds. Airborne radiometrics were also found useful for further discriminating potassium and thorium-bearing phyllosilicate/clay minerals, within shales and phyllites, from the kaolinite and montmorillonite-rich alluvium.


This study found that TIMS data could identify some of the geomorphological features at Fowlers Gap, such as colluvial pediments, depositional scalds and gilgai landforms, that characterise some of the land systems in the Lowlands and Plains relief class of the Fowlers Gap land system classification. Thermal infrared remote sensing techniques also proved capable of discriminating areas of cellulose-rich dry vegetation and fine grained soils within the Plains relief class. The sensitivity of AIRSAR radar for topographic relief and surface roughness suggests that it is useful for distinguishing land systems in the Ranges relief class. Radiometrics appeared useful for land system definition when outcropping argillaceous units and alluvium assisted their classification.


英文关键词remote sensing Fowlers Gap thermal infrared land system spectral unmixing
类型Article
语种英语
国家Australia
收录类别SCI-E
WOS记录号WOS:000088201500008
WOS关键词NEW-SOUTH-WALES ; MULTISPECTRAL SCANNER ; EMISSIVITY ; INFORMATION ; IMAGES
WOS类目Ecology
WOS研究方向Environmental Sciences & Ecology
来源机构Commonwealth Scientific and Industrial Research Organisation
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/139894
作者单位(1)CSIRO, Div Explorat & Min, Floreat Pk Labs, Floreat, WA 6014, Australia;(2)Univ New S Wales, Dept Geol, Sydney, NSW 2052, Australia;(3)Univ New S Wales, Dept Appl Geol, Sydney, NSW 2052, Australia
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Hewson, RD,Taylor, GR. An investigation of the geological and geomorphological features of fowlers gap using thermal infrared, radar and airborne geophysical remote sensing techniques[J]. Commonwealth Scientific and Industrial Research Organisation,2000,22(1):105-123.
APA Hewson, RD,&Taylor, GR.(2000).An investigation of the geological and geomorphological features of fowlers gap using thermal infrared, radar and airborne geophysical remote sensing techniques.RANGELAND JOURNAL,22(1),105-123.
MLA Hewson, RD,et al."An investigation of the geological and geomorphological features of fowlers gap using thermal infrared, radar and airborne geophysical remote sensing techniques".RANGELAND JOURNAL 22.1(2000):105-123.
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