Avalanche hazard and control in Kazakhstan
https://doi.org/10.15356/2076-6734-2014-2-120-128
Abstract
In Kazakhstan, area of 124 thousand km2 is prone to the avalanche hazard. Avalanches are released down in mountain regions situated along the eastern boundary of Kazakhstan. Systematic studies of avalanches here were started in 1958 by explorer I.S. Sosedov; later on, I.V. Seversky continued these investigations in Institute of Geography of the Kazakh Soviet Republic. Actually, he founded the Kazakh school of the avalanche studies. In 1970–1980s, five snow-avalanche stations operated in Kazakhstan: two in Il’ Alatau, two in Zhetysu Alatau, and one in the Altai. At the present time, only two stations and two snow-avalanche posts operate, and all of them are located in Il’ Alatau.
Since 1951 to 2013, 75 avalanches took place in Kazakhstan, releases of them caused significant damages. For this period 172 people happened to be under avalanches, among them 86 perished. Large avalanche catastrophes causing human victims and destructions took place in Altai in 1977 and in Karatau in 1990. In spring of 1966, only in Il’ Alatau avalanches destroyed more 600 ha of mature fir (coniferous) forest, and the total area of forest destroyed here by avalanches amounts to 2677 ha or 7% of the total forest area.
For 48 years of the avalanche observations, there were 15 winters with increased avalanche activity in the river Almatinka basin when total volume of released snow exceeded annual mean value of 147 thousand m3. During this period, number of days with winter avalanches changed from three (in season of 1973/1974) to 28 (1986/1987), the average for a year is 16 days for a season. Winter with the total volume of snow 1300 thousand m3 occur once in 150 years. Individual avalanches with maximal volume of 350 thousand m3 happen once in 80 years.
Preventive avalanche releases aimed at protection of roads and settlements are used in Kazakhstan since 1974. These precautions are taken in Il’ Alatau, Altai, and on Kalbinsky Range. Avalanches are released with the use of explosives. Protective constructions are built very rarely. The most large-scale project is the protection of the Medeo skating-rink in Il’ Alatau where in 1974 special snow-retentive boards of wooden beams on metal supports were constructed on the above located slope. The provision of safety against avalanches becomes especially actual problem in view of development of the mountain-skiing resorts in Il’ Alatau, Zhetysu Alatau, and Altai.
About the Authors
V. P. BlagoveshchenskyRussian Federation
I. E. Gulyaeva
Russian Federation
O. A. Berman
Russian Federation
V. V. Zhdanov
Russian Federation
M. E. Tatkova
Russian Federation
References
1. Atlas prirodnykh i tekhnogennykh opasnostey i riskov chrezvychaynykh situatsiy v Respublike Kazakhstan. Atlas of natural and technogenic hazards and risqué of extreme situations in the Kazakhstan Republic. Almaty: Kazgeodesy, 2010: 264 p. [In Russian].
2. Blagoveshchenskiy V.P. Opredelenie lavinnykh nagruzok. Determination of the avalanche loads. Almaty: Nauka, 1991: 116 p. [In Russian].
3. Kondrashov I.V. Prognoz lavin i nekotorykh kharakteristik snezhnosti v gorakh Kazakhstana. Prediction of avalanches and some snowiness characteristics in the mountains of Kazakhstan. Leningrad: Hydrometeoizdat, 1991: 72 p. [In Russian].
4. Moskalev Yu.D. Dynamics of snow avalanches and avalanche calculations. [In Russian]. Trudy SARNIGMI. Proc. of Asian Hydrometeorological Institute. 1977, 36 (117): 231 p.
5. Natsional’nyi atlas Respubliki Kazakhstan.National Atlas of the Kazakhstan Republic. V. 3. Environment and Ecology. Almaty: Kazgeodesy, 2010: 158 p.
6. Prakticheskoe posobie po prognozirovaniyu lavinnoy opasnosti v Kazakhstane. Handbook on the avalanche danger in Kazakhstan. Almaty: Nur-Print, 2005: 262 p. [In Russian].
7. Rukovodstvo po snegolavinnym rabotam (vremennoe). Temporal manual on snow avalanche works. Leningrad: Hydrometeoizdat, 1965: 397 p. [In Russian].
8. Severskiy I.V. On the forms of avalanche erosion and avalanche influence to forests at the northern slope of Zailiyskiy Alatau. Gidrofizicheskie issledovaniya v gornykh rayonakh Kazakhstana. Hydrophysical studies in mountain regions of Kazakhstan. Alma-Ata: Nauka, 1969: 58–66. [In Russian].
9. Severskiy I.V. Snezhnye laviny Zailiyskogo i Djungarskogo Alatau. Snow avalanches in Zailiyskiy and Dzhungarskiy Alatau. Alma-Ata: Nauka, 1978: 255 p. [In Russian].
10. Severskiy I.V., Blagoveshchenskiy V.P. Otsenka lavinnoy opasnosti gornoy territorii. Evaluation of avalanche danger of the mountain territory of Alma-Ata. Alma-Ata: Nauka, 1983: 220 p. [In Russian].
11. Severskiy I.V., Blagoveshchenskiy V.P. Lavinoopasnye rayony Kazakhstana. Avalanche danger regions of Kazakhstan. Alma-Ata: Nauka, 1990: 172 p. [In Russian].
12. Blagoveshchenskiy V.P. Calculation of snow avalanche parameters. Intern. Symposium Interpraevent 1996. Garmish-Partenkirchen. Tagungspublikation, Bd. 2: 137–146.
13. Blagoveshchenskiy V.P. Calculation of avalanche parameters. Materialy Glyatsiologicheskikh Issledovaniy. Data of Glaciological Studies. 1997, 81: 196–199.
14. Blagoveshchenskiy V.P. Avalanche formation conditions and avalanche activity in the Zailiyskiy Alatau range (Kazakhstan). The Avalanche Review. 2004, 1: 14–16.
15. Blagoveshchenskiy V.P. Avalanche hazard mapping in Kazakhstan. The Avalanche Review. 2004, 2: 13–15.
16. Blagoveshchenskiy V.P., Eglit M.E., Naaim M. The calibration of an avalanche mathematical model using field data. Natural Hazard and Earth System Sciences. 2002, 2: 217–220.
17. Blagoveshchenskiy V.P., Eglit M.E., Naaim M. Estimation of avalanche friction coefficients at the Zailiyskiy Alatau range (Kazakhstan). Materialy Glyatsiologicheskikh Issledovaniy. Data of Glaciological Studies. 2002, 93: 122–125.
18. Blagoveshchenskiy V.P., Kondrashov I.V., Yeserkepova I.B., Gassner M., Latenser M. The experience of use NXD2000 program for avalanche forecast in the Zailiyskiy Alatau. Materialy Glyatsiologicheskikh Issledovaniy. Data of Glaciological Studies. 2003, 94: 115–118.
19. Christen M., Kowalski J., Bartelt P. RAMMS: Numerical simulation of dense snow avalanches in three-dimensional terrain. Cold Region Science and Technology. 2010, 63: 1–14.
20. Christen M., Bartelt P., Kowalski J. Back calculation of the In den Arelen avalanche with RAMMS: interpretation of model results. Annals of Glaciology. 2010, 51 (54):161–168.
21. Gassner M., Brabec B. Nearest neighbor models for local and regional avalanche forecasting. Natural Hazards and Earth System Sciences. 2002, 2: 247–253.
22. Kristensen K., Larsson Ch. An Avalanche Forecasting Program Based on a Modified Nearest Neighbors Method. Proc. of the Intern. Snow Science Workshop. Snowbird USA. 1994: 22–30.
23. Severskiy I.V., Blagoveshchenskiy V.P. Estimation of avalanche hazard in the mountain territories. Intern. Symposium Interpraevent. Garmish-Partenkirchen. Tagungspublikation. Bd. 2. 1996: 91–101.
24. Severskiy I.V., Blagoveshchenskiy V.P., Severskiy S.I., Pimankina N.V., Se Zichu, Zhan Zhizhong, Hu Ruzhi. Snow Cover and Avalanches in the Tien-Shan Mountains. Almaty: Nauka, 2000: 179 p.
Supplementary files
For citation: Blagoveshchensky V.P., Gulyaeva I.E., Berman O.A., Zhdanov V.V., Tatkova M.E. Avalanche hazard and control in Kazakhstan. Ice and Snow. 2014;54(2):120-128. https://doi.org/10.15356/2076-6734-2014-2-120-128
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