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Remote sensing for resources development and environmental management (Volume 1)

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CC BY: Attribution 4.0 International. You can find more information here.

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fullscreen: Remote sensing for resources development and environmental management (Volume 1)

Multivolume work

Persistent identifier:
856342815
Title:
Remote sensing for resources development and environmental management
Sub title:
proceedings of the 7th international Symposium, Enschede, 25 - 29 August 1986
Year of publication:
1986
Place of publication:
Rotterdam
Boston
Publisher of the original:
A. A. Balkema
Identifier (digital):
856342815
Language:
English
Additional Notes:
Volume 1-3 erschienen von 1986-1988
Editor:
Damen, M. C. J.
Document type:
Multivolume work

Volume

Persistent identifier:
856343064
Title:
Remote sensing for resources development and environmental management
Sub title:
proceedings of the 7th international Symposium, Enschede, 25 - 29 August 1986
Scope:
XV, 547 Seiten
Year of publication:
1986
Place of publication:
Rotterdam
Boston
Publisher of the original:
A. A. Balkema
Identifier (digital):
856343064
Illustration:
Illustrationen, Diagramme
Signature of the source:
ZS 312(26,7,1)
Language:
English
Usage licence:
Attribution 4.0 International (CC BY 4.0)
Editor:
Damen, M. C. J.
Publisher of the digital copy:
Technische Informationsbibliothek Hannover
Place of publication of the digital copy:
Hannover
Year of publication of the original:
2016
Document type:
Volume
Collection:
Earth sciences

Chapter

Title:
2 Microwave data. Chairman: N. Lannelongue, Liaison: L. Krul
Document type:
Multivolume work
Structure type:
Chapter

Chapter

Title:
Evaluation of digitally processed Landsat imagery and SIR-A imagery for geological analysis of West Java region, Indonesia. Indroyono Soesilo & Richard A. Hoppin
Document type:
Multivolume work
Structure type:
Chapter

Contents

Table of contents

  • Remote sensing for resources development and environmental management
  • Remote sensing for resources development and environmental management (Volume 1)
  • Cover
  • Title page
  • Title page
  • Title page
  • Preface
  • Organization of the Symposium
  • Working Groups
  • Table of contents
  • 1 Visible and infrared data. Chairman: F. Quiel, Liaison: N J. Mulder
  • 2 Microwave data. Chairman: N. Lannelongue, Liaison: L. Krul
  • Spatial feature extraction from radar imagery. G. Bellavia, J. Elgy
  • Synthetic geological map obtained by remote sensing An application to Palawan Island. F. Bénard & C. Muller
  • The determination of optimum parameters for identification of agricultural crops with airborne SLAR data. P. Binnenkade
  • SLAR as a research tool. G. P. de Loor & P. Hoogeboom
  • Developing tools for digital radar image data evaluation. G. Domik & F. Leberl, J. Raggam
  • Measurements of the backscatter and attenuation properties of forest stands at X-, C- and L-band. D. H. Hoekman
  • Identifying agricultural crops in radar images. P. Hoogeboom
  • Shuttle imaging radar response from sand dunes and subsurface rocks of Alashan Plateau in north-central China. Guo Huadong, G. G. Schaber & C. S. Breed, A. J. Lewis
  • Oil drums as resolution targets for quality control of radar survey data. B. N. Koopmans
  • Detection by side-looking radar of geological structures under thin cover sands in arid areas. B. N. Koopmans
  • Geological analysis of Seasat SAR and SIR-B data in Haiti. Ph. Rebillard, B. Mercier de l'Epinay
  • Digital elevation modeling with stereo SIR-B image data. R. Simard, F. Plourde & T. Toutin
  • EARTHSCAN - A range of remote sensing systems. D. R. Sloggett & C. McGeachy
  • Evaluation of digitally processed Landsat imagery and SIR-A imagery for geological analysis of West Java region, Indonesia. Indroyono Soesilo & Richard A. Hoppin
  • Relating L-band scatterometer data with soil moisture content and roughness. P. J. F. Swart
  • Shuttle Imaging Radar (SIR-A) interpretation of the Kashgar region in western Xinjiang, China. Dirk Werle
  • 3 Spectral signatures of objects. Chairman: G. Guyot, Liaison: N. J. J. Bunnik
  • 4 Renewable resources in rural areas: Vegetation, forestry, agriculture, soil survey, land and water use. Chairman: J. Besenicar, Liaisons: M. Molenaar, Th. A. de Boer
  • Cover

Full text

such as the discrimination of four physiographic zones 
and the delineation of two drainage system terrains, 
were extracted from the standard Landsat MSS imagery. 
Detail geologic information, particularly about 
lithologic variations and structural geologic features 
were extracted from digitally processed imagery - the 
Principal Conponent imagery, the Band Ratio imagery 
and the Edge Enhanced imagery - concentrated in two 
test sites, the Sukabumi and Lembang area. 'Thirteen 
different lithologic terrains in the Sukabumi area and 
eleven different lithologic terrains from the Lerrbang 
area were discriminated and extracted from the 
Principal Component imagery and the Band Ratio 
imagery, while the Edge Enhanced imagery of these two 
sites provide additional understanding of the 
Cimandiri fault zone, the Lenbang fault and the N-S 
maximum principal stress responsible for the 
development of structural patterns in this region. 
Topographic details, such as the continuation of 
ridges of Cimandiri fault zone, the radial drainage 
pattern around the volcanoes, the south dipping 
sedimentary rocks of the Southern Mountain zone and 
the sharpness of the drainage system disected by the 
Lenbang fault, were particularly prominent on the 
SIR-A imagery of West Java area. 
The importance of Landsat MSS data and SIR-A imagery 
as sources of information for geological investigation 
in tropical region should never be overlooked. 
However, to interpret lithologies and structural 
features one must follow a "multi-step interpretation" 
approach taking into considerations the image 
characteristics (band selections, type of processings, 
look directions, etc.) and the terrain characteristics 
(rock resistance, the degree of weathering, vegetation 
density and water contents). 
ACKNOWLEDGEMENTS 
The authors wish to express their appreciation to the 
Indonesia's National Institute of Aeronautic and 
Space (LAPAN), particulary to Mr.Nasril Hadjar of 
S3A-LAPAN, for providing the Landsat MSS data and for 
assisting the field investigations. Appreciation 
also goes to Dr.G.B.Bailey of EROS Data Center, Sioux 
Falls, South Dakota - USA, for his advices on 
selecting types of image processing system and his 
assistances to gain access to conduct digital image 
processing using EROS facilities. This investigation 
was also funded through grants from the Indonesian 
Cultural Foundation, Inc.,1985. 
REFERENCES 
Asmoro, P. 1978. The application of remote sensing in 
support of the national program for the inventory 
and evaluation of Indonesia's natural resources. 
12th International Symposium on Remote Sensing of 
Environment, Manila, the Phillipine. Proceedings: 
Environmental Research Institute of Michigan, 
p.27-33. 
Bailey, G.B.1982. Extraction of geologic information 
from Landsat multispectral scanner and thematic 
mapper simulator data from the Uinta and Piceance 
basin, Utah and Colorado. 2nd Thematic Conference 
Remote Sensing for Exploration Geology, the Inter 
national Synposium on Remote Seising on Remote 
Sensing of Environment, Ft.Wbrth, Texas, p.43-69. 
Benmelen, van.1949. The Geology of Indonesia. 
Government Printing Office, The Hague, 2 volume. 
Billings, M.P.1972. Structural Geology, 3rd ed., 
Prentice-Hall, Inc., Ehglewood Cliffs, N.J., 606 p. 
Colwell,R.N.1983. Manual of Remote Sensing, 2nd 
edition. American Soceity of Photogranmetry, Falls 
Church, Virginia. 2 volume. 
Effendi, A.C.1974. The Geologic Map of Bogor 
Quadrangle, 1:100,000 scale. Geological Survey 
of Indonesia, Bandung. 
Hobbs,B.E., Means W.D., Williams, P.1976. An outline 
of structural geology. John Wiley & Sons, New- 
York, 571 pp. 
Jenson,S.K., WSaltz,F.1979. Principal conponent and 
canonical analysis in remote seising. ASP-ACSM 
Annual Meeting, Washington D.C. March 18-23,1979. 
Sabins,F,F.1983. Geological interpretation of space 
shuttle radar images of Indonesia. American Assoc 
iation of Petrolium Geologist Bulletin, v.67, 
p.1011-1042. 
Silitonga, P.H.1973. The Geologic Map of Bandung 
Area, 1:100,000 scale. Geological Survey of Indo 
nesia, Bandung. 
Sukamto, R.1967. Dyke swarm, quartz vein and fracture 
analyses of Janpang area, west Java. MS-Thesis, 
Department of Geology, University of Padjadjaran 
(unpublished). Bandung, Indonesia. 
,1975. The Geologic Map of Janpang and 
Balekanbang, 1:100,000 scale. Geological Survey 
of Indonesia, Bandung. 
Tjia, H.D.1972. Fault movement, reoriented stress 
field and subsidiary structures. Pacific Geology 
v.5, pp.49-70. 
Tresnahadi, D.1981. The geology and sulphide mineral 
ization of Cikondang - South Cianjur, West Java. 
Sarjana Thesis, Department of Geology, the Bandung 
Institute of Technology (unpublished). 
Bark,R.G.1983. Foundations of Structural Geology. 
Blackie & Son Ltd.,Glasgow, New Zealand. 135 pp.
	        

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