Altitudinal Zonation of Landscapes on the Local Testing Area in the Southern Baikal Region
https://doi.org/10.31857/S2587-556620193105-115
Abstract
Today identification of altitudinal zones of landscapes in local areas, especially in mountainous areas, is inextricably linked with the creation of digital terrain models and their geoinformation interpretation. We have considered the altitudinal zonation of landscapes on the Mamai model testing area, located on the Northern macroslope of the Khamar-Daban Ridge and in the Tankhoi coastal plain of the Baikal Lake. The special geoinformation software, partially modernized during the works, was used. Landscapes were studied by their main components: relief and geomorphological processes, soils and soil-forming processes, vegetation. The landscapes of the testing area are represented by three main groups: 1) goltsy altitudinal and mountain-taiga landscapes of the Khamar-Daban Ridge on the crystalline metamorphic rocks of the khungurul series of the lower Proterozoic age and granites of the Khamar-Daban and Sayan intrusive complexes of the upper Proterozoic and lower Paleozoic, respectively; 2) taiga and meadowmarsh landscapes of the Tankhoi plain on loose sediments of the Late Pliocene and Quaternary ages; 3) intrazonal landscapes within transverse mountain river valleys on the Late Pleistocene and NeoPleistocene and modern loose sediments. The base of the identification of altitudinal zones of the landscape is layers of a relief. But the relief is a fairly static component of the landscape, its invariant structure change for tens or hundreds of thousands of years. To determine a more detailed and dynamic structure of the altitudinal zonation, we use other components: soils and vegetation. Changes in the invariant structure of the soil cover occur for thousands or tens of thousands of years, and of the vegetation cover – for hundreds or thousands of years. Features of the landscapes structure and characteristics of their main components allowed us to allocate six altitudinal zones in the testing area: goltsy altitudinal, subgoltsy altitudinal, low-mountain, foothill, foothill-plain, and coastal-plain. The intrazonal landscapes of transverse mountain river valleys, which violate the normal structure of the altitudinal zonation, are singled out as a separate type.
About the Authors
S. B. KuzminRussian Federation
S. I. Shamanova
Russian Federation
I. A. Belozertseva
Russian Federation
References
1. Aleshin A.G. Modern exogenous relief formation in the southern Baikal region. Extended Abstract of Cand. Sci. (Geogr.) Dissertation. Irkutsk, 2002. 18 p.
2. Lake Baikal. Atlas. Moscow: USSR Council of Ministers Chief Administration of Geodesy and Cartography, 1993. 158 p.
3. Belozertseva I.A. Features of the soil cover of the northeastern slope of the Khamar-Daban range (Southern Baikal region). Mezhd. Zh. Prikl. Fundam. Issled., 2016, no. 11, pp. 1077–1080. (In Russ.).
4. Bilichenko I.N. Structure and dynamics of the geosystems of the Khamar-Daban range. Extended Abstract of Cand. Sci. (Geogr.) Dissertation. Irkutsk, 2003. 18 p.
5. Vyrkin V.B. Sovremennoe ekzogennoe rel'efoobrazovanie kotlovin Baikal'skogo tipa [Modern Exogenous Relief Formation of the BaikalType Basins]. Irkutsk: Inst. Geogr. Sib. Otd. Akad. Nauk, 1998. 175 p.
6. Map of Vegetation in the South of Eastern Siberia. Scale 1:1500000. Belov A.V., Ed. Moscow: Moscow State Univ., 1972. (In Russ.).
7. Klimat i rastitel'nost' Yuzhnogo Pribaikal'ya [Climate and Vegetation of the Southern Baikal Region]. Ladeishchikov N.P., Molozhnikov V.N., Eds. Novosibirsk: Nauka Publ., 1989. 150 p.
8. Maps of general seismic zoning (OSR-97) for the territory of the Russian Federation. Available at: http:// www.twirpx.com/file/829375 (accessed 21.04.2019). (In Russ.).
9. Kuzmin S.B., Danko L.V., Cherkashin E.A., Osipov E. Yu. Digital elevation models: methods of arrangement and possible implication in geomorphological researches. Geomorfologiya, 2007, no. 4, pp. 33–41. (In Russ.).
10. Kuzmin S.B. Opasnye geomorfologicheskie protsessy i risk prirodopol'zovaniya [Dangerous geomorphological processes and environmental risk]. Novosibirsk: GEO Publ., 2009. 198 p.
11. Kuzmin S.B., Shamanova S.I. A preparing technique in due to distinguish the topography layers on the base of digital relief models and dendroflora’s character as exemplified to Western Prebaikal Region. Izv. Akad. Nauk, Ser. Geogr., 2012, no. 4, pp. 83–92. (In Russ.).
12. Kuzmin S.B., Shamanova S.I., Kazanovskiy S.G. Determination of the altitude belt of landscapes based on digital models of the relief and the nature of the dendroflora. Geogr. Prir. Resur., 2012, no. 4, pp. 137–149. (In Russ.).
13. Mats V.D., Ufimtsev G.F., Mandelbaum M.M., et al. Kainozoi Baikal'skoi riftovoi vpadiny: Stroenie i geologicheskaya istoriya [Cenozoic of the Baikal Rift Basin: Structure and Geological History]. Novosibirsk: GEO Publ., 2001. 252 p.
14. Mikheev V.S. Landscape-structural analysis. In Chelovek u Baikala: ekologicheskii analiz sredy obitaniya [The Man at Baikal: the Ecological Analysis of an Inhabitancy]. Novosibirsk: Nauka Publ., 1993, pp. 8–39. (In Russ.).
15. Molozhnikov V.N. Rastitel'nye soobshchestva Pribaikal'ya [Vegetation Communities of the Baikal Region]. Novosibirsk: Nauka Publ., 1986. 272 p.
16. Pleshanov A.S., Pleshanova G.I., Shamanova S.I. Landscape-climatic regularities of the spatial location of refugia in the Baikal region. Sib. Ekol. Zh., 2002, vol. 5, pp. 603–610. (In Russ.).
17. Plyusnin V.M. Landshaftnyi analiz gornykh territorii [Landscape Analysis of Mountain Areas]. Irkutsk: Inst. Geogr. Sib. Otd. Akad. Nauk, 2003. 257 p.
18. Rasskazov S.V., Lyamina N.A., Luzin I.V., Chernyaeva G.P., Chuvashova I.S., Usoltseva M.V. Sediments in thetertiary Tanghoi field, south Baikal basin: stratigraphy, correlation and structural transformations in the Baikal region. Geodynamics & Tectonophysics, 2014, vol. 5, no. 4, pp. 993–1032. (In Russ.).
19. Rastitel'nost' khrebta Khamar-Daban [Vegetation of the Khamar-Daban Ridge]. Galazii G.I., Ed. Novosibirsk: Nauka Publ., 1988. 112 p.
20. Stanyukovich K.V. Rastitel'nost' gor SSSR [Vegetation of the USSR Mountains]. Dushanbe: Donish Publ., 1973. 411 p.
21. Fedotov S.V., Fedotov V.I. Altitudinal mesozonation - a new reality in the vertical differentiation of landscapes of plains. Vestn. Voronezh. Gos. Univ., Ser.: Geogr. Geoekol., 2014, no. 1, pp. 5–8. (In Russ.).
22. Shamanova S.I., Kuzmin S.B., Kazanovskii S.G., Pleshanov A.S. The geographical distribution patterns of blue spruce (Picea obovata var. Altaica) on KhamarDaban. Geogr. Nat. Resour., 2013, no. 4, pp. 73–83.
Graphical Abstract
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1. Схема высотной поясности ландшафтов полигона «Мамай» в Южном Прибайкалье | |
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Type | Исследовательские инструменты | |
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2. The scheme of altitudinal zoning of landscapes of the “Mamai” research site in the Southern Baikal region | |
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Type | Research Instrument | |
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- The altitude landscape belts in the research area ‘Mamai’ in the Southern Baikal region were identified and analysed by the main landscape components (relief and geomorphological processes, soils, vegetation) and conditions of their formation and functioning.
- The research area comprises 6 altitude landscape belts: alpine (goltsy altitudinal), subalpine (subgoltsy altitudinal), low-mountain, piedmont, foothill-flat, and coastal-flat.
Review
For citations:
Kuzmin S.B., Shamanova S.I., Belozertseva I.A. Altitudinal Zonation of Landscapes on the Local Testing Area in the Southern Baikal Region. Izvestiya Rossiiskoi Akademii Nauk. Seriya Geograficheskaya. 2019;(3):105-115. (In Russ.) https://doi.org/10.31857/S2587-556620193105-115