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Planning Decisions in Landslide Areas

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The study discusses the topic of planning decisions taken for the purposes of studies prepared on the municipality level and related to the development of landslide areas in Poland. The aim of the research is to demonstrate the scale of the issue consisting in designating areas at risk of subsidence of soil masses for investment purposes. The research emphasises the essential role of planning documentation in the prevention of investment in such areas. Other vital factors also include the SOPO (Landslide Counteracting System) database as well as the staroste, who, in the course of preparation of planning documentation and issuing decisions on development conditions, issues opinions or agrees (depending on the type of document or decision) on the planned investment in areas at risk of landslides. The study shows the complexity of the spatial planning and development system in Poland and the significant influence of bodies and institutions on the planned development of areas prone to the subsidence of soil masses.
Rocznik
Strony
218--227
Opis fizyczny
Bibliogr. 30 poz., tab., rys.
Twórcy
autor
  • Department of Spatial Economy
  • Wroclaw University of Environmental and Life Sciences, C.K. Norwida 25 Str., 50-375 Wrocław, Poland
  • Wroclaw University of Environmental and Life Sciences, C.K. Norwida 25 Str., 50-375 Wrocław, Poland
  • Wroclaw University of Environmental and Life Sciences, C.K. Norwida 25 Str., 50-375 Wrocław, Poland
Bibliografia
  • 1. Agneli M.G., Pasuto A., Silvano S. 2000. A critical review of landslide monitoring experiences, Engineering Geology, 55, 133–147.
  • 2. Aylsworth J.M., Duk-Rodkin A., Robertson T., Traynor J.A. 2000. Landslides in the physical environment on Mackenzie Valley, Geological Survey of Canada Bull., No. 547, 41–48.
  • 3. Bednarczyk Z. 2014. Landslide geohazard monitoring, early warning and stabilization control methods. Studia Geotechnica et Mechanica, Vol. XXXVI, No. 1. DOI: 10.2478/sgem-2014–0001.
  • 4. Bober L. 1984. Rejony osuwiskowe w polskich Karpatach fliszowych i ich związek z budową geologiczną regionu. (Landslide areas in Polish flysch Carpathians and their connection with the geological structure of the region) Biul. Inst. Geol. (Bulletin of the Institute of Geology), 340, 115–162.
  • 5. Brabb E.E. 1984. Innovative approaches to landslide hazard mapping. In: Proceedings 4th international symposium on landslides, Toronto, vol. 1, 307–324.
  • 6. Bruschi V.M., Bonachea J., Remondo J., Go´Mez- Arozamena J., Rivas V., Barbieri M., Capocchi S., Soldati M., Cendrero A. 2013. Land management versus natural factors in land instability: some examples in northern Spain. Environ Manag 52(2), 398–416.
  • 7. Bydłosz J., Hanusz P. 2013. The Impact of Landslide Areas on Municipal Spatial Planning. Real Estate Management and Valuation. Volume 21, Issue 4, Pages 5–10, ISSN (Online) 1733–2478, DOI: 10.2478/remav-2013–0031, January 2014.
  • 8. Cruden D.M., Varnes D.J. 1996. Landslides Types and Processes, [in:] A.K. Turner, R.L. Schuster (eds.), Landslides – Investigation and Mitigation, Washington D.C., National Academy Press, Transportation Research Board Special Report, 247, 36–75.
  • 9. Guzzetti F., Carrara A., Cardinali M., Reichenbach P. 1999. Landslide hazard evaluation: a review of current techniques and their application in a multi– scale study, Central Italy. Geomorphology 31, 181–216.
  • 10. Guzzetti F., Reichenbach P., Cardinali M., Galli M., Ardizzone F. 2005. Probabilistic landslide hazard assessment at the basin scale. Geomorphology 72, 272–299
  • 11. Guzzetti F., Reichenbach P., Ardizzone F., Cardinali M., Galli M. 2006. Estimating the quality of landslide susceptibility models. Geomorphology 81:166–184
  • 12. Guzzetti F. 2015. Forecasting natural hazards, performance of scientists, ethics, and the need for transparency. Toxicological & Environmental Chemistry, http://dx.doi.org/10.1080/02772248.20 15.1030664.
  • 13. Hełdak M., Raszka B. 2011. Prognosis of the Natural Environment Transformations Resulting from Spatial Planning Solutions. Polish Journal of Environmental Studies. Vol. 20, No. 6, 2011, 1513–1518.
  • 14. Hełdak M. 2012. Wpływ decyzji planistycznych na zmiany krajobrazu kulturowego obszarów wiejskich (Impact of planning decision on cultural landscape changes of rural areas). Monografie CL. Uniwersytet Przyrodniczy we Wrocławiu, pp. 201.
  • 15. Hełdak M., Raszka B. 2013. Evaluation of the Spatial Policy of a Commune with Regard to Planned Land Use, Polish Journal of Environmental Studies, 22(1), 125–130.
  • 16. Hutchinson J.N. 1988. General Report Morphological and geotechnical parameters of landslides in relation to geology and hydrogeology, Proceedings Fifth International Symposium on Landslides (ED; Bonnard C.) Balkema, Rotterdam, 3–35.
  • 17. Kwaśniak P. 2011. Plan miejscowy w systemie zagospodarowania przestrzennego (The local spatial development plan as part of the spatial development system). Lexis Nexis, 3rd edition. Warsaw, pp. 335.
  • 18. Leoński Z., Szzewczyk M. 1999. Podstawowe instytucje planowania przestrzennego i prawa budowlanego (Basic institutions of spatial planning and construction law). Wydawnictwo WSB, Poznań, pp. 216.
  • 19. Martino S., Moscatelli M., Scarcascia Mugnoza G. 2004. Quaternary mass movements controlled by a structurally complex setting in the central Apennines (Italy). Engineering Geology, 72(1–2), 33–55.
  • 20. Meusburger K., Alewell C. 2008. Impacts of anthropogenic and environmental factors on the occurrence of shallow landslides in an alpine catchment (Urseren Valley, Switzerland). Nat Hazards Earth Syst Sci 8, 509–520
  • 21. Ministerstwo Środowiska, 2010. (Ministry of the Environment). Działania resortu środowiska w zakresie systemu osłony przeciwosuwiskowej w Polsce (Activities of the Ministry of the Environment with respect to landslide counteracting system in Poland), Warsaw, September 8, 2010.
  • 22. Pánek T., Smolková V., Hradecký J., Šilhán K. 2009. Late Holocene evolution of landslides in the frontal part of the Magura Nappe: Hlavatá Ridge, Moravian-Silesian Beskids (Czech Republic). Moravian Geographical Reports 17(4), 2–11.
  • 23. Piotrowska K., Bac-Moszaszwili M., Gaździcka E., Iwanow A., Marciniec P., Nescieruk P., Wasiluk R., Zimnal Z. 2008a. Detailed geological map of the Tatra in scale 1:10,000, chart. Kiry. Centralne Arch. Geol. (central Geological Archive), Państw. Inst. Geol. (National Institute of Geology), Warsaw.
  • 24. Piotrowska K., Bac-Moszaszwili M., Gaździcka E., Iwanow A., Marciniec P., Nescieruk P., Wasiluk R., Zimnal Z. 2008b. Detailed geological map of the Tatra in scale 1:10,000, chart. Witów. Centralne Arch. Geol. (central Geological Archive), Państw. Inst. Geol. (National Institute of Geology), Warsaw.
  • 25. Reichenbach P., Busca C., Mondini A.C., Rossi M. 2014. The Influence of Land Use Change on Landslide Susceptibility Zonation: The Briga Catchment Test Site (Messina, Italy). Environmental Management, doi:10.1007/s00267–014– 0357–0, http://link.springer.com/article/10.1007/ s00267–014–0357–0.
  • 26. Senneset K. 1998. Natural and Man-Hade Hazards: Landslides, Stability analysis, control, case histories, General Report Norges Teknisk-Naturvitenskapelige Universitet, Bull. 34, Trondheim, 1–14.
  • 27. Turcotte D.L., Malamud B.D., Guzzetti F., Reichenbach P. 2002. “Self-organization, the Cascade Model, and Natural Hazards.” Proceedings of the National Academy of Sciences of the United States of America 99 (Suppl 1), 2530–2537.
  • 28. Wieczorek D., Stroiński A. 2010. Map of landslides and areas at risk of mass movements of soil in a scale of 1:10000, municipality Kościelisko, Tatrzański poviat, Małopolskie voivodeship. http// geoportal.pgi.gov.pl/portal/page/portal/SOPO [access: May 12 2015].
  • 29. Vanacker V., Vanderschaeghe M., Govers G., Willems E., Poesen J., Deckers J., De Bievre B. 2003. Linking hydrological, infiniti slope stability and land-use change models through GIS for assessing the impact of deforestation on slope stability in high Andean watersheds. Geomorphology 52, 299–315.
  • 30. Záruba Q., Mencl V. 1987. Landslides and Their Control (Developments in Geotechnical Engineering). Elsevier, Amsterdam, pp. 324.
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-635aefdf-7fab-458f-b3a6-331c5c66e5d8
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