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Remote sensing for resources development and environmental management (Volume 2)

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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 2)

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:
856641294
Title:
Remote sensing for resources development and environmental management
Sub title:
proceedings of the 7th international Symposium, Enschede, 25 - 29 August 1986
Scope:
IX Seiten, Seiten 551-956
Year of publication:
1986
Place of publication:
Rotterdam
Boston
Publisher of the original:
A,. A. Balkema
Identifier (digital):
856641294
Illustration:
Illustrationen, Diagramme
Signature of the source:
ZS 312(26,7,2)
Language:
English
Usage licence:
Attribution 4.0 International (CC BY 4.0)
Editor:
Damen, M. C. J.
Editor:
International Society for Photogrammetry and Remote Sensing, Commission of Photographic and Remote Sensing Data
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:
5 Non-renewable resources: Geology, geomorphology and engineering projects. Chairman: J. V. Taranik, Liaison: B. N. Koopmans
Write comment:
Wegen zu enger Bindung kommt es teilweise im Original zu Textverlust.
Document type:
Multivolume work
Structure type:
Chapter

Chapter

Title:
Remote sensing assessment of environmental impacts caused by phosphat industry destructive influence. S. C. Mularz
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 2)
  • Cover
  • Title page
  • Title page
  • Title page
  • Table of contents
  • 5 Non-renewable resources: Geology, geomorphology and engineering projects. Chairman: J. V. Taranik, Liaison: B. N. Koopmans
  • Application of stereo-terrestrial photogrammetric technique to varied geoscientific investigations. N. K. Agarwal
  • Regional geologic mapping of digitally enhanced Landsat imagery in the southcentral Alborz mountains of northern Iran. Sima Bagheri, Ralph W. Kiefer
  • Operational satellite data assessment for drought/disaster early warning in Africa: Comments on GIS requirements. Hubertus L. Bloemer & Scott E. Needham, Louis T. Steyaert
  • Comparison between interpretations of images of different nature. G. Bollettinari, F. Montovani
  • Global distributive computer processing systems for environmental monitoring, analysis and trend modeling in early warning and natural disaster mitigation. J. O. Brumfield, H. H. L. Bloemer
  • Geological analysis of the satellite lineaments of the Vistula Delta Plain, Zulawy Wislane, Poland. Barbara Daniel Danielska & Stanislaw Kibitlewski, Andrzej Sadurski
  • Analysis of lineaments and major fractures in Xichang-Dukou area, Sichuan province as interpreted from Landsat images. Lu Defu, Zhang Wenhua & Liu Bingguang, Xu Ruisong & Jang Baolin
  • Application of remote sensing in the field of experimental tectonics. J. Dehandschutter
  • Thematic mapping from aerial photographs for Kandi Watershed and Area Development Project, Punjab (India). B. Didar Singh & Kanwarjit Singh
  • Assessment of desertification in the lower Nile Valley (Egypt) by an interpretation of Landsat MSS colour composites and aerial photographs. A. Gad & L. Daels
  • Spring mound and aioun mapping from Landsat TM imagery in south-central Tunisia. Arwyn Rhys Jones & Andrew Millington
  • Application of MEIS-II multispectral airborne data and CIR photography for the mapping of surficial geology and geomorphology in the Chatham area, Southwest Ontario, Canada. A. B. Kesik, H. George & M. M. Dusseault
  • Remote sensing methods in geological research of the Lublin coal basin, SE Poland. Stanislaw Kibitlewski & Barbara Daniel Danielska
  • Photo-interpretation of landforms and the hydrogeologic bearing in highly deformed areas, NW of the gulf of Suez, Egypt. E. A. Korany, L. L. Iskandar
  • Monitoring geomorphological processes in desert marginal environments using multitemporal satellite imagery. A. C. Millington & A. R. Jones, N. Quarmby & J. R. G. Townshend
  • Remote sensing assessment of environmental impacts caused by phosphat industry destructive influence. S. C. Mularz
  • Remote sensing for survey of material resources of highway engineering projects in developing countries. R. L. Nanda
  • Remote Sensing applications in the Eastern Bolivia Mineral Exploration Project (Proyecto Precambrico): Techniques and prospects. E. O'Connor & J. P. Berrange
  • Detecting and mapping of different volcanic stages and other geomorphic features by Landsat images in 'Katakekaumene', Western Turkey. F. Sancar Ozaner
  • A remote sensing methodological approach for applied geomorphology mapping in plain areas. Elíseo Popolizio, Carlos Canoba
  • Use of (stereo-) orthophotography prepared from aerial and terrestrial photographs for engineering geological maps and plans. Niek Rengers
  • Small scale erosion hazard mapping using landsat information in the northwest of Argentina. Jose Manuel Sayago
  • The study of mass movement from aerial photographs. Varoujan Kh. Sissakian
  • An evaluation of potential uranium deposit area by Landsat data analysis in Officer basin, South-Western part of Australia. H. Wada & K. Koide, Y. Maruyama & M. Nasu
  • Digital analysis of stereo pairs for the detection of anomalous signatures in geothermal fields. E. Zilioli, P. A. Brivio, M. A. Gomarasca & R. Tomasoni
  • 6 Hydrology: Surface water, oceanography, coastal zone, ice and snow. Chairman: K. A. Ulbricht, Co-chairman: Mikio Takagi, Liaison: R. Spanhoff
  • 7 Human settlements: Urban surveys, human settlement analysis and archaeology. Chairman: W. G. Collins, Co-chairman: B. C. Forster, Liaison: P. Hofstee
  • 8 Geo-information systems. Chairman: J. J. Nossin
  • Cover

Full text

Sympo 
re distribution can be seen, which corres 
pond to the sucoesive stages of dumping. 
The multispectral technique is very use 
ful for the detection of the degree of wa 
ter pollution, as well as, the determina 
tion of the ranges and directions of polu- 
tion propagation. 
The evaluation of the damage to the vege 
tation cover in the dump surroundings can 
be succesfully made by use of multispectral 
photos see (Figures 6 and 7) • The colour 
composits of green, red and infrared bads 
make it possible to distinquuish different 
types of vegetation, as well as differen 
tiating lifeless vegetation from stiil li 
ving vegetation. 
Remo 
engin< 
R.L.Nan 
Nigerian b 
4 CONCLUSIONS 
The remote sensing techniques are very 
useful for the assesment of environmental 
changes in the phosphogypsum waste dumping 
areas. Based on the analog and digital da 
ta processing of a series of successively 
taken aerophothos, the quantitative nature 
of the toe-failure process was given. Dump 
forming on an unstable ground base can cau 
se, not only technological problems connect- 
ted with the method of dumping but, what is 
also very important, have a significant de 
structive impact on the natural environment 
The surface and underground waters, as 
well as, vegetation are under the greatest 
stress. The results of the interpretation 
of remotly sensed data have shown that the 
phosphogypsum dump, considered from a engi 
neering-geological, hydrological and hydro- 
geological point of view, can cause serious 
damage to the natural environment. 
The results of the conducted research 
might be used for the creation of an envi 
ronmental monitoring system for such areas, 
which can be effective and complete only if 
based on remote sensing techniques. This 
system can also satisfy many different de 
sign and documentation needs. 
REFERENCES 
Blanchard M.B., Greeley R., Goettelman R., 
1974. Use of visible near infrared, and 
thermal infrared sensing to study soil 
moisture.NASA Tech. Mem. X-62, 343:8. 
Idso,S.B.,Jacson,R.D.,Reginato,R.J.,1976. 
Compensating for environmental variabili 
ty in the thermal inertia approach to re 
mote sensing of soil moisture. J.Appl. 
Met.,15:811-817. 
Mularz,S.C.,1973 * Toe-failure processes on 
an open-cast mine waste-dump. Studia Geo 
tech .4 (1) :23-3 4. 
Mularz,S.C.,Rybicki,S.,1977• Subgrade and 
dump deformations caused by dumping of 
mine waste. Engineering Geology,11:189- 
200. 
Mularz,S,C.,1985• Thermovisional observa 
tion of the slopes in a strip mine. Foto- 
interpretacja w Geografii, T.8 (18):104— 
112. 
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