POROČILO S 3. SVETOVNEGA FORUMA O ZEMELJSKIH PLAZOVIH, PEKING, KITAJSKA, 2014

Avtorji

  • Matjaž Mikoš Univerza v Ljubljani, Fakulteta za gradbeništvo in geodezijo, Ljubljana

Povzetek

Pomemben del aktivnosti Mednarodnega konzorcija za zemeljske plazove (ICL, Kjoto, Japonska) je organizacija trienalnih svetovnih forumov o zemeljskih plazovih. Prva dva sta bila v Tokiu leta 2008 in Rimu leta 2011. Prispevek poroča o delu 3. svetovnega foruma o zemeljskih plazovih v Pekingu na Kitajskem med 2. in 6. junijem 2014 in o tehnični ekskurziji v provinci Sečuan z ogledom posledic katastrofalnih zemeljskih plazov, ki jih je sprožil wenčuanski potres (Ms = 8,0) leta 2008. Naslednji, 4. svetovni forum o zemeljskih plazovih bo organiziran v Ljubljani od 29. maja do 2. junija 2017.

Literatura

Cruden, D. M., Varnes, D. J., 1996. Landslide types and processes. In: Turner, A. K., Shuster, R. L. (ur.): Landslides: Investigation and Mitigation. Transportation Research Board, Washington D.C, Special Report 247, 36–75.

Cui, P., Zhu, Y., Han Y., Chen, X., Zhuang, J., 2009. The 12 May Wenchuan earthquake-induced landslide lakes: distribution and preliminary risk evaluation. Landslides, 6/3, 209-223. doi: 10.1007/s10346- 009-0160-9.

GeoZS, 2014. Geološki zavod Slovenije = Geological Survey of Slovenia. http://www.geo-zs.si/.

Godec, M., Vidrih, R., 2009. Potres »Wenchuan« 12. maja 2008 na Kitajskem = The 12 May Earthquake »Wenchuan« in China. V: Vidrih, R. (ur.): Potresi v letu 2008 = Earthquakes in 2008. Urad za seismologijo in geologijo, Agencija Republike Slovenije za okolje, Ministrstvo za okolje in prostor, Ljubljana. 99–114.

Guo, D., Hamada, M., He, C., Wang, Y., Zou, Y., 2014. An empirical model for landslide travel distance prediction in Wenchuan earthquake area. Landslides, 11/2, 281–291.

ICL, 2014. International Consortium on Landslides. http://icl.iplhq.org/.

ISDR, 2014. International Strategy for Disaster Reduction. http://www.unisdr.org/.

IRDR, 2014. Integrated Research on Disaster Risk. http://www.irdrinternational.org/.

Jesenko, T., Vidrih, R., 2009. Močnejši potresi po svetu leta 2008. UJMA, 23, 97–105.

Legros, F., 2002. The mobility of long-runout landslides. Engineering Geology, 63, 301–331.

Mikoš, M., 2002. Mednarodno raziskovalno združenje INTERPRAEVENT = INTERPRAEVENT International Research Society. UJMA, 16, 443–445.

Mikoš, M., 2013. Mednarodni konzorcij za zemeljske plazove – ICL = International Consortium on Landslides – ICL. UJMA, 27, 248–254.

Mikoš, M., Fazarinc, R., Ribičič, M., 2006. Sediment production and delivery from recent large landslides and earthquake-induced rock falls in the Upper Soča River Valley, Slovenia. Engineering geology, 86, 2–3, 198–210.

Rickenmann, D., 1999. Empirical relationships for debris flows. Natural Hazards, 19, 47–77.

Sassa, K., 2009. Report of the 2008 First World Landslide Forum on 18–21 November 2008 at UNU, Tokyo. Landslides, 6/3, 167–179.

Sassa, K., Canuti, P., 2009. Landslides – Disaster Risk Reduction. Springer Verlag, Berlin. 650 p.

Sassa, K., Canuti, P., Margottini, C., Yin, Y., 2012. The Second World Landslide Forum, Rome, 2011 and the Third World Landslide Forum, Beijing, 2014. Landslides, 9/2, 285–297.

Sassa, K., Canuti, P., Yin, Y., 2014a. Landslide Science for a Safer Geoenvironment. Springer Verlag, Berlin. Vol. 1: The International Programme on Landslides. 493 p.

Sassa, K., Canuti, P., Yin, Y., 2014b. Landslide Science for a Safer Geoenvironment. Springer Verlag, Berlin. Vol. 2: Methods of Landslide Studies. 851 p.

Sassa, K., Canuti, P., Yin, Y., 2014c. Landslide Science for a Safer Geoenvironment. Springer Verlag, Berlin. Vol. 3: Targeted Landslides. 717 p.

UL FGG, 2014. Univerza v Ljubljani, Fakulteta za gradbeništvo in geodezijo. http://www3.fgg.uni-lj.si/.

Varnes, D. J., 1978. Slope movement types and processes. In: Shuster, R L., Krizek, R. J. (ur.): Landslides: Analysis and Control. Transportation Research Board, Washington, D.C., Special Report 176, 11–38.

Wang, F.W., Cheng, Q.G., Highland, L., Miyajima, M., Wang, H.B., Yan, C.G., 2009. Preliminary investigation of some large landslides triggered by the 2008 Wenchuan Ms8.0 earthquake, Sichuan province, China. Landslides, 6/1:47–54.

WLF4, 2014. 4th World Landslide Forum, Ljubljana, May 29 – June 2, 2017, Ljubljana, Slovenia, EU. http://www.wlf4.org/.

Xu, Q., Zhang, S., Li, W.L., van Asch, Th. W. J., 2012. The 13 August 2010 catastrophic debris flows after the 2008 Wenchuan earthquake, China. Natural Hazards and Earth System Sciences, 12, 201-216. http://www.nat-hazards-earth-syst-sci. net/12/201/2012/nhess-12-201-2012.pdf.

Xu, C., Xu, X., Yao, X., Dai, F., 2014. Three (nearly) complete inventories of landslides triggered by the May 12, 2008 Wenchuan Mw 7.9 earthquake of China and their spatial distribution statistical analysis. Landslides, 11/3, 441–461.

Yin, Y.P., Wang, F.W., Sun, P., 2009. Landslide hazards triggered by the 2008 Wenchuan Ms8.0 earthquake, Sichuan, China. Landslides, 6/2:139–152.

Yu, B., Ma Y., Wu Y., 2013. Case study of a giant debris flow in the Wenjia Gully, Sichuan Province, China. Natural Hazards, 65/1, 835-849. doi: 10.1007/ s11069-012-0395-y.

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2024-01-19

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