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INFORMATION SYSTEM REGARDING THE ENVIRONMENT CHANGES IN THE CASE OF LANDSLIDES

Didulescu, Caius, Savu, Adrian, Cosarca, Constantin, Dumitru, Paul, Calin, Alexandru

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b21/s08.089View metrics

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Title
INFORMATION SYSTEM REGARDING THE ENVIRONMENT CHANGES IN THE CASE OF LANDSLIDES
Authors
Didulescu, Caius, Savu, Adrian, Cosarca, Constantin, Dumitru, Paul, Calin, Alexandru
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 16th International Multidisciplinary Scientific GeoConference SGEM2016, Informatics, Geoinformatics and Remote Sensing
Publisher
Stef92 Technology
Year
2016
Pages
713-720
ISSN
1314-2704
ISBN
978-619-7105-58-2
Language
en
Publication type
Conference Paper
References20
  1. Popescu M, A suggested method for reporting landslide remedial measures , Bull Eng Geol Env., No. 60, pp 69-74, 2001.

  2. GT006-97, Guidance for identification and monitoring of landslides and framework solutions intervention to prevent and reduce their effects on operational safety of the construction, rehabilitation and environmental protection", Construction Bulletin no. 10,, Publishing House INCD Urban-INCERC, 1998

  3. Dunn, M. Hickey, R. , The Effect of Slope Algorithms on Slope Estimates within a GIS, Cartography, v. 27, no. 1, pp 9 – 15, 1998.

  4. Mechler R., Cost-Benefit Analysis of Natural Disaster Risk Management in DevelopingCountries: Manual, Deutsche Gesellschaft fuer Technische Zusammenarbeit (GTZ) GmbH, Bonn, On line at: http://www.mekonginfo.org/assets/midocs/0003131- environment-cost-benefit-analysis-of-natural-disaster-risk-management-in-developing- countries-manual.pdf, 2005

  5. Crozier M., Glade T., Landslide Hazard and Risk: Issues, Concepts and Approach, in: Landslide Hazard and Risk, Glade T., Anderson M.G., Crozier M. (Eds.) , Chichester, UK, pp 1–40, 2005.

  6. Benson C., Twigg J., Tools for Mainstreaming Disaster Risk Reduction: Guidance Notes for Development Organisations, ProVention Consortium, Geneva, on line at: http://www.preventionweb.net/files/1066_toolsformainstreamingDRR.pdf., 2007.

  7. Hansen A., Landslide Hazard Analysis,in: Slope Instability, Brunsden D., Prior D.B. Eds. Wiley, New York, pp 523–604, 1984.

  8. Larsen M.C., Simon A., A rainfall intensity-duration threshold for landslides in a humid-tropical environment, Puerto Rico, Geografiska Annaler Series A-Physical Geography, no. 75 , pp 13–23, 1993.

  9. Cruden D.M., Varnes D.J., Landslide Types and Processes,In: Landslides: Investigation and Mitigation, Turner A.K., Shuster R.L. (Ed.), Transportation Research Board Special Report 247, National Academies Press, Washington DC, pp 36 –75, on line at: http://pubs.usgs.gov/fs/2004/3072/pdf/fs2004-3072.pdf ,1996.

  10. Badea, A. C., Badea, G., The Advantages of Creating Compound GIS Functions for Automated Workflow, 13th International Multidisciplinary Scientific Geoconference SGEM 2013, Bulgaria, Informatics, Geoinformatics and Remote Sensing, Conference Proceedings, volume I, Section Cartography and GIS, ISBN 978-954-91818 -9-0, ISSN 1314-2704, DOI: 10.5593/SGEM2013/BB2.V1/S11.043, pp 943 – 949, 2013 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

  11. Popescu M, A suggested method for reporting landslide remedial measures , Bull Eng Geol Env., No. 60, pp 69-74, 2001.

  12. GT006-97, Guidance for identification and monitoring of landslides and framework solutions intervention to prevent and reduce their effects on operational safety of the construction, rehabilitation and environmental protection", Construction Bulletin no. 10,, Publishing House INCD Urban-INCERC, 1998

  13. Dunn, M. Hickey, R. , The Effect of Slope Algorithms on Slope Estimates within a GIS, Cartography, v. 27, no. 1, pp 9 – 15, 1998.

  14. Mechler R., Cost-Benefit Analysis of Natural Disaster Risk Management in DevelopingCountries: Manual, Deutsche Gesellschaft fuer Technische Zusammenarbeit (GTZ) GmbH, Bonn, On line at: http://www.mekonginfo.org/assets/midocs/0003131- environment-cost-benefit-analysis-of-natural-disaster-risk-management-in-developing- countries-manual.pdf, 2005

  15. Crozier M., Glade T., Landslide Hazard and Risk: Issues, Concepts and Approach, in: Landslide Hazard and Risk, Glade T., Anderson M.G., Crozier M. (Eds.) , Chichester, UK, pp 1–40, 2005.

  16. Benson C., Twigg J., Tools for Mainstreaming Disaster Risk Reduction: Guidance Notes for Development Organisations, ProVention Consortium, Geneva, on line at: http://www.preventionweb.net/files/1066_toolsformainstreamingDRR.pdf., 2007.

  17. Hansen A., Landslide Hazard Analysis,in: Slope Instability, Brunsden D., Prior D.B. Eds. Wiley, New York, pp 523–604, 1984.

  18. Larsen M.C., Simon A., A rainfall intensity-duration threshold for landslides in a humid-tropical environment, Puerto Rico, Geografiska Annaler Series A-Physical Geography, no. 75 , pp 13–23, 1993.

  19. Cruden D.M., Varnes D.J., Landslide Types and Processes,In: Landslides: Investigation and Mitigation, Turner A.K., Shuster R.L. (Ed.), Transportation Research Board Special Report 247, National Academies Press, Washington DC, pp 36 –75, on line at: http://pubs.usgs.gov/fs/2004/3072/pdf/fs2004-3072.pdf ,1996.

  20. Badea, A. C., Badea, G., The Advantages of Creating Compound GIS Functions for Automated Workflow, 13th International Multidisciplinary Scientific Geoconference SGEM 2013, Bulgaria, Informatics, Geoinformatics and Remote Sensing, Conference Proceedings, volume I, Section Cartography and GIS, ISBN 978-954-91818 -9-0, ISSN 1314-2704, DOI: 10.5593/SGEM2013/BB2.V1/S11.043, pp 943 – 949, 2013 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

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