Dendrochronological analysis of coniferous trees in avalanche paths of Central Altai (Chuya River basin)
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Bykov, N. I., Rygalova, N. V., & Shigimaga, A. A. (2024). Dendrochronological analysis of coniferous trees in avalanche paths of Central Altai (Chuya River basin). Acta Biologica Sibirica, 10, 1401–1418. https://doi.org/10.5281/zenodo.14263406

Аннотация

The performed dendrochronological analysis of the radial growth of coniferous trees in the avalanche paths of the Chuya River basin (Central Altai) has enabled to define the patterns of avalanche activity in the studied starting zones and the frequency of high-magnitude snow avalanches. It is shown that a tree-ring complex indicator is driving in detection of avalanche activity in specific avalanche paths. We suggest calling it the dendrochronological index of avalanche activity. In some cases, the applied dendrochronological method has helped to identify the cause (factor) of avalanching in the area under study.

https://doi.org/10.5281/zenodo.14263406
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Литература

Altai Territory (1978) Atlas (in 2 volumes). T. 1. Moscow, Barnaul, 222 pp. [In Russian]

Benkova VE, Schweingruber FKh (2004) Anatomy of wood plants in Russia. Publishing House «Haupt», Bern, 465 pp.

Bykov NI (2000) Dendrochronology of snow avalanches and atmospheric circulation processes in the winter and transitional periods in Altai. Problems of reconstruction of the climate and natural environment of the Holocene and Pleistocene of Siberia 2. Publishing House of the Institute of Archeology and Ethnography of the Siberian Branch of the Russian Academy of Sciences, Novosibirsk, 56–60. [In Russian]

Bykov NI (2013) Vegetation of avalanche collections of Altai and the possibilities of phytoindication of avalanche processes. Geography and nature management of Siberia 15: 23–31. [In Russian]

Bykov NI, Rygalova NV, Shigimaga AA (2024) Dendrochronological analysis of snow avalanches in the Northwestern Altai (Korgon river basin). Ice and Snow 64(1): 81–95. https://doi.org/10.31857/S2076673424010066 [In Russian]

Galakhov VP(2003) Conditions of formation and calculation of maximum snow reserves in the mountains (Based on the results of research in Altai). Publishing house «Nauka», Novosibirsk, 104 pр. [In Russian]

Germain D, Hétu B, Filion L (2010) Tree-Ring Based Reconstruction of Past Snow Avalanche Events and Risk Assessment in Northern Gaspé Peninsula (Québec, Canada). Tree Rings and Natural Hazards: A State-of-the-Art, Advances in Global Change Research 41: 51–73. https://doi.org/10.1007/978-90-481-8736-2_5

Germain D (2016) A statistical framework for tree-ring reconstruction of high-magnitude mass movements: case study of snow avalanches in Eastern Canada. Geografiska Annaler: Series A, Physical Geography 98(4): 303–311. https://doi.org/10.1111/geoa.12138

Glaciological Dictionary (1984) Publishing house «Hydrometeoizdat», Leningrad, 526 pp. [In Russian]

Kaennel M, Schweingruber FH (1995) Multilingual Glossary of Dendrochronology. Publishing House «Haupt», Bern, Stuttgart, Vienna, 467 pp.

Koroleva TV (1993) Assessment of snowiness and avalanche danger of Altai on a medium scale. Abstract of a dissertation for the degree of Candidate of Geographical Sciences. Publishing House of Institute of Geography RAS, Moscow, 23 pp. [In Russian]

Köse N, Aydın A, Yurtseven H, Akkemik Ü (2010) Using tree-ring signals and numerical model to identify the snow avalanche tracks in Kastamonu, Turkey. Natural Hazards 54(2): 435–449. https://doi.org/10.1007/s11069-009-9477-x

Kravtsova VI (1971) Features of the regime of avalanche activity in the Altai according to dendrochronological observations. Phytoindication methods in glaciology. Publishing House of Moscow State University, Moscow, 103–123. [In Russian]

Laute K, Beylich AA (2018) Potential effects of climate change on future snow avalanche activity in western Norway deduced from meteorological data. Geografiska Annaler: Series A, Physical Geography 100(2): 163–184. https://doi.org/10.1080/04353676.2018.1425622

Martin J-P, Germain D (2016) Can we discriminate snow avalanches from other disturbances using the spatial patterns of tree-ring response? Case studies from the Presidential Range, White Mountains, New Hampshire, United States. Dendrochronologia 37: 17–32. https://doi.org/10.1016/j.dendro.2015.12.004

Mundo IA, Barrera MD, Roig FA (2007) Testing the utility of Nothofagus pumilio for dating a snow avalanche in Tierra del Fuego, Argentina. Dendrochronologia 25(1): 19–28. https://doi.org/10.1016/j.dendro.2007.01.001

Nikolaeva SA, Savchuk DA (2021) Evaluation of dendroindication methods for dating exogenous gravitational processes of the past in the upper reaches of the river. Aktru (Gorny Altai). Proceedings of the Russian Academy of Sciences. Geographic Series 85(3): 392–404. [In Russian]

Perov VF, Turmanina VI, Akifeva KV (1977) Indications of avalanches and mudflow by dendrochronology. Russian Papers on Dendrochronology and Dendroclimatelogy 1962, 1968, 1970, 1972. Research Laboratory for Archealogy and history of Art. Oxford University, 49–51.

Pop OT, Munteanu A, Flaviu M, Gavrilă I-G, Timofte C, Holobâcă I-H (2017) Treering-based reconstruction of highmagnitude snow avalanches in Piatra Craiului Mountains (Southern Carpathians, Romania). Geografiska Annaler: Series A, Physical Geography 100 (7):1–17. https://doi.org/10.1080/04353676.2017.1405715

Revyakin VS, Kravtsova VI (1977) Snow cover and avalanches of Altai. Publishing house of Tomsk State University, Tomsk, 215 pp. [In Russian]

Revyakin VS (1981) Natural ice of the Altai-Sayan mountain region. Publishing house «Gidrometeoizdat», Leningrad, 288 pp. [In Russian]

Schweingruber FH (1993) Jahrringe und Umwelt – Dendrookologie. Eidgenoessische Forschungsanstalt fuer Wald, Schnee und Landschaft, Birmensdorf, 474 pp.

Speer JH (2010) Fundamentals of Tree-Ring Research. The University of Arizona Press, Tucson, 509 pp.

Surnakov IV (1985) Some results of phytoindication of nival-glacial processes in Altai. Abstracts of the All-Union Conference “The role of nival-glacial formations in the dynamics of mountain ecosystems”. Publishing House of Altai State University, Barnaul, 35–36. [In Russian]

Surnakov IV (1987) Some information about the elements of the nival-glacial complex of the upper reaches of the Bolshoy Abakan River. Abstracts of the reports of the scientific-practical conference “Glaciers and climate of Siberia”. Publishing House of Tomsk State University, Tomsk, 178–179. [In Russian]

Turmanina VI (1979) Dendrochronology of avalanches in the upper reaches of the Baksan valley. Rhythms of glacial processes. Publishing House of Moscow State University, Moscow, 128–134. [In Russian]

Tumajer J, Treml V (2015) Reconstruction ability of dendrochronology in dating avalanche events in the Giant Mountains, Czech Republic. Dendrochronologia 34: 1–9. https://doi.org/10.1016/j.dendro.2015.02.002

Zubairov B, Lentschke J, Schröder H (2019) Dendroclimatology in Kazakhstan. Dendrochronologia 56: 125602. https://doi.org/10.1016/j.dendro.2019.05.006

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