Comparative analysis of annual tree rings width for birch groves and spruce forests in Uvinsky forestry (Udmurt republic)

Cover Page

Cite item

Full Text

Abstract

The average width of the annual ring of birch in the linden and pine forest is 0,6 mm, in the spruce and linden forest it equals to 1,1 mm, while the average annual ring width of spruce in the linden and spruce forest is 3,0 mm. The variability of the tree species annual ring width, ranging from 30 to 49 %, was shown, while the age variation patterns were not revealed. Groups of stands by age have been formed. The presence of significant differences in the samples variances of the formed clusters was revealed. A correlation analysis was performed, indicating the presence of a relationship between the width of the annual ring and the age of the stand in the studied forest types. The difference in the width of the birch annual ring in different types of forest in stands of the same age has been established. The analysis of simple regression equations with age and diameter of tree trunks is proposed. The selection of equations of nonlinear functions explaining these dependencies is carried out.

About the authors

Denis A. Pozdeev

Udmurt State Agrarian University

Author for correspondence.
Email: dap219@mail.ru

Cand. Sci. (Agriculture), Associate Professor of the Department of forest management and ecology

Russian Federation, 11, Studentskaya st., Izhevsk, 426069, Udmurt Republic

Rafael’ R. Absalyamov

Udmurt State Agrarian University

Email: lesovod27@yandex.ru

Cand. Sci. (Agriculture), Associate Professor, Head of the Department of Forest management and ecology

Russian Federation, 11, Studentskaya st., Izhevsk, 426069, Udmurt Republic

Mikhail V. Yakimov

Udmurt State Agrarian University

Email: mikhailyackimov@yandex.ru

Senior Lecturer of the Department of forest management and ecology

Russian Federation, 11, Studentskaya st., Izhevsk, 426069, Udmurt Republic

References

  1. Sokolov P.A., Petrov A.A. Taksatsiya el’nikov Prikam’ya (na primere Udmurtii) [Taxation of spruce forests in the Kama region (using the example of Udmurtia)]. Izhevsk: IzhGSHA, 2004, 272 p.
  2. Konôpková A., Petek A., Kmeť J., Petrík P., Vedernikov K.E., Zagrebin E.A., Islamova N.A., Grigoriev R.A., Pashkova A.S., Zhuravleva A.N., Bukharina I.L., Húdoková H. Impact of the European bark beetle ips typographus on biochemical and growth properties of wood and needles in Siberian spruce Picea obovata. Central European Forestry J., 2020, t. 66, no. 4, pp. 243–254.
  3. Vedernikov К.Е. Lesovodstvenno-taksatsionnoe sostyanie el’nikov Piceetum oxalidosum Udmurtskoy Respubliki [Forestry and taxation characteristics of Spruce (Piceetum oxalidosum) stands in Udmurt Republic]. Lesnoy vestnik / Forestry Bulletin, 2021, vol. 25, no. 6, pp. 20–30. doi: 10.18698/2542-1468-2021-6-20-30
  4. Petrov A.A., Pozdeev D.A., Malyshev V.S. Sravnitel’nyy analiz el’nikov i bereznyakov Prikam’ya po diametru stvolov [Comparative analysis of spruce and birch forests of the Kama region by trunk diameter]. Vestnik Izhevskoy gosudarstvennoy sel’skokhozyaystvennoy akademii [Bulletin of the Izhevsk State Agricultural Academy], 2010, no. 4 (25), pp. 50–52.
  5. Sokolov P.A., Malyshev V.S., Petrov A.A., Pozdeev D.A. Taksatsiya lesa. Dinamika taksatsionnykh pokazateley i nadzemnoy fitomassy drevostoev berezy [Forest taxation. Dynamics of taxation indicators and above-ground phytomass of birch stands]. Izhevsk: Izhevsk State Agricultural Academy, 2010, 68 p.
  6. Absalyamov R.R., Pozdeev D.A., Yakimov M.V., Starkov M.N. Osobennosti formirovaniya zapasa bereznyakov Uvinskogo lesnichestva Udmurtskoy respubliki na uchastkakh lesa, peredannykh v arendu OOO «Orion» [Features of the formation of a stock of birch forests in the Uvinsky forestry of the Udmurt Republic on forest plots leased to Orion LLC]. Nauchnye innovatsii v razvitii otrasley APK. Materialy Mezhdunarodnoy nauchno-prakticheskoy konferentsii [Scientific innovations in the development of agricultural industries. Proceedings of the International Scientific and Practical Conference]. In 3 t. February 18–21, 2020, Izhevsk. Izhevsk: Izhevsk State Agricultural Academy, 2020, t. 1, pp. 102–107.
  7. Pozdeev D. A., Yakimov M. V., Semakin V. A. Radial’nyy prirost drevesiny bereznyakov Uvinskogo lesnichestva Udmurtskoy Respubliki [Radial growth of birch forest wood of the Uvinsky forestry of the Udmurt Republic]. Nauchnye razrabotki i innovatsii v reshenii strategicheskikh zadach agropromyshlennogo kompleksa: materialy Mezhdunarodnoy nauchno-prakticheskoy konferentsii [Scientific developments and innovations in solving strategic problems of the agro-industrial complex: materials of the International scientific-practical conference]. In 2 t., February 15–18, 2022, Izhevsk. Izhevsk: Izhevsk State Agricultural Academy, 2022, t. 2, pp. 21–29.
  8. Andreev G.V., Pozdeev E.G., Ivanchikov S.V., Khodyreva Yu.N. Izuchenie formirovaniya i rosta proizvodnogo bereznyaka na osnove radial’nogo prirosta derev’ev: Ekologicheskie issledovaniya v Visminskom biosfernom zapovednike [Study of the formation and growth of a derivative birch forest based on the radial growth of trees: Ecological studies in the Visminsky Biosphere Reserve]. Ekaterinburg: Middle Ural Book Publishing House New Time, 2006, pp. 49–56.
  9. Andreev G.V., Alesenkov Yu.M. Rost po diametru berez, eli i sosny i prirosty povrezhdennoy eli v dlitel’no-proizvodnom travyano-zelenomoshnom bereznyake [Growth in diameter of birch, spruce and pine and growth of damaged spruce in a longterm derived grass-green-moss birch forest]. Krasnoyarsk: SSTU publishing house, 2013, 18 p.
  10. Klad’ko Yu.V., Ben’kova V.E. Radial’nyy rost drevesnykh vidov v usloviyakh antropogennoy nagruzki g. Krasnoyarska [Radial growth of tree species under conditions of anthropogenic load in Krasnoyarsk]. Sibirskiy lesnoy zhurnal [Siberian Forest Journal], 2018, no. 4, pp. 49–57.
  11. Manov A.V. Radial’nyy prirost sosny obyknovennoy v ostrovnom massive bora lishaynikovogo Pechorskogo Zapolyar’ya [Radial growth of Scots pine in the island massif of the lichen boron of the Pechora Arctic]. Izvestiya Komi NTs UrO RAN [Izvestia of the Komi Scientific Center of the Ural Branch of the Russian Academy of Sciences], 2014, no. 4 (20), pp. 13–19.
  12. Rybakov D.S. Vliyanie zagryazneniya seroy na radial’nyy prirost Pinus sylvestris L. v Respublike Kareliya [The influence of sulfur pollution on the radial growth of Pinus sylvestris L. in the Republic of Karelia]. Printsipy ekologii [Principles of Ecology], 2017, no. 2 (23), pp. 47–60. doi: 10.15393/j1.art.2017.6042
  13. Kolchin B.A., Chernykh N.B. Dendrokhronologiya Vostochnoy Evropy (Absolyutnye dendrokhronologicheskie shkaly s 788 g. po 1970 g.) [Dendrochronology of Eastern Europe (Absolute dendrochronological scales from 788 to 1970)]. Ed. V.V. Sedov. Moscow: Nauka, 1977, 128 p.
  14. Shvedov F. Derevo kak letopis’ zasukh. Soobshch. v godich. zasedanii Novoros. ob-va. estestvoispytateleу [The tree is like a chronicle of droughts. The message in a year the meeting of Novorossiya about Naturalists], Jan. 17, 1892. St. Petersburg: Print. Imp. Acad. Sciences, 1892, 16 р.
  15. Kolchin B.A., Bitvinskas T.T. Sovremennye problemy dendrokhronologii. Problemy absolyutnogo datirovaniya v arkheologii [Modern problems of dendrochronology. Problems of absolute dating in archaeology]. Moscow: Nauka, 1972, pp. 80–92.
  16. Bitvinskas T.T. K voprosu o primenenii dendroklimaticheskikh metodov v lesoustroystve. Sovremennye voprosy lesoustroystva [On the issue of using dendroclimatic methods in forest management. Modern issues of forest management]. Kaunas: Lithuanian Agricultural Academy, 1966, pp. 177–179.
  17. Bitvinskas T.T. Dinamika prirosta nasazhdeniy i vozmozhnosti eeprognozirovaniya (v usloviyakh Litovskoy SSR) [Dynamics of plant growth and the possibility of its forecasting (in the conditions of the Lithuanian SSR)]. [Reports of the Timiryazev Agricultural Academy], v. 99. Moscow: Timiryazev Agricultural Academy, 1964, pp. 497–503.
  18. Vaganov E.A., Terskov I.A. Analiz rosta dereva po strukture godichnykh kolets [Analysis of tree growth based on the structure of tree rings]. Ed. A.S. Isaev. Novosibirsk: Science. Siberian department, 1977, 94 p.
  19. Ackerman F., Goldblum D. Lodgepole pine and interior spruce radial growth response to climate and topography in the Canadian Rocky Mountains, Alberta. Canadian J. of Forest Research, 2021, no. 51(7), pp. 986–1001. https://doi.org/10.1139/cjfr-2019-0305.
  20. Koulelis1 P.P., Fassouli1 V.P., Petrakis1 P.V., Ioannidis1 K.D., Alexandris S. The impact of selected climatic factors on the growth of Greek fir on Mount Giona in mainland Greece based on tree ring analysis. Austrian J. of Forest Science, 2022, t. 139, no. 1, pp. 1–30.
  21. Lapenis А., Robinson G., Lawrence G. Radial growth decline of white spruce (Picea glauca) during hot summers without drought: preliminary results from a study site south of a boreal forest border. Canadian J. of Forest Research, 2022, no. 52(4), pp. 582–590.
  22. Soro A., Lenz P., Roussel J.R., Larochelle F, Bousquet J., Achim A. The phenotypic and genetic efects of drought induced stress on apical growth, ring width, wood density and biomass in white spruce seedlings. New Forests, 2023, v. 54, pp. 789–811.
  23. Gauthray-Guyénet V., Schneider R., Achim A., Fortin M., Parе D., Arseneault D. Legacy of forest composition and changes over the long-term on tree radial growth. Canadian J. of Forest Research, 2021, no. 51(10), pp. 1501–1511.
  24. Yang J., Cooper D.J., Zhang X. Song W., Li Z., Zhang Y., Zhao H., Han S., Wang X. Climatic controls of Pinus pumila radial growth along an altitude gradient. New Forests, 2022, v. 53, pp. 319–335. https://doi.org/10.1007/s11056-021-09858-x
  25. Sheremetov R.T., Ufimtsev V.I. Otsenka vliyaniya temperatury na radial’nyy prirost sosny obyknovennoy (Pinus sylvestris L.) v usloviyakh tekhnogennogo vozdeystviya [Assessment of the influence of temperature on the radial growth of Scots pine (Pinus sylvestris L.) under conditions of anthropogenic impact]. Vestnik Kemerovskogo gosudarstvennogo universiteta [Bulletin of Kemerovo State University], 2012, no. 4–1 (52), pp. 24–28.
  26. Terinov N.N., Polukhin A.V. Sravnenie metodov izmereniya godichnykh kolets derev’ev i primenenie etikh metodov v lesnykh issledovaniyakh [Comparison of methods for measuring tree rings and the application of these methods in forest research]. Zhurnal SFU. Biologiya [J. of Siberian Federal University. Biology], 2012, no. 1, pp. 97–107.
  27. Tsakaldimi M., Petaloudi L-M., Ganatsas P.A Research note on developing a novel method for the estimation of annual volume increment in standing trees. Austrian J. of Forest Sciens, 2023, t. 140, no. 4, pp. 241–248.
  28. Fischer C., Saborowski J. Variance estimation for mean growth from successive double sampling for stratification. Canadian J. of Forest Research, 2020, no. 50(12), pp. 1405–1411. https://doi.org/10.1139/cjfr-2020-0058
  29. Verkhunov P.M., Chernykh V.L. Taksatsiya lesa [Forest taxation]. Yoshkar-Ola: Mari State Technical University, 2009, 396 p.
  30. Zagreev V.V., Sukhikh V.I., Shvydenko A.Z., Gusev I.N., Moshkalev A.G. Obshchesoyuznye normativy dlya taksatsii lesov [All-Union standards for forest taxation]. Moscow: Kolos, 1992, 495 p.
  31. Chernykh V.L., Vorozhtsov D.M., Vdovin E.S. Sovershenstvovanie metodiki vyborochnoy taksatsii zapasa drevostoev na primere Uchebno-opytnogo lesnichestva Respubliki Mariy El [Improving the methodology for selective taxation of forest stands using the example of the Educational and Experimental Forestry of the Republic of Mari El]. Vestnik PGTU. Seriya: Les. Ekologiya. Prirodopol’zovanie [Bulletin of Perm State Technical University. Series: Forest. Ecology. Nature Management], 2011, no. 1, pp. 3–10.
  32. Pozdeev D.A. Taksatsiya lesa. Uchebnaya praktika [Forest taxation. Educational practice]. Izhevsk: Izhevsk State Agricultural Academy, 2016, 179 p.
  33. OST 56-69–83. Probnye ploshchadi lesoustroitel’nye. Metody zakladki [OST 56-69–83 Trial areas for forest management. Bookmark methods]. Moscow: Publishing house of standards, 1983, 59 p.
  34. Rumyantsev D.E., Lipatkin V.A., Cherakshev A.V., Vorob’eva N.S. Metodicheskie rekomendatsii po otboru kernov drevesiny dlya tseley dendrokhronologicheskikh issledovaniy v lesovedenii i lesovodstve [Methodological recommendations for the selection of wood cores for the purposes of dendrochronological studies in forestry and silviculture]. Moscow: Professional Science, 2022, 44 p.
  35. Lakin G.F. Biometriya [Biometrics]. Moscow: Higher School, 1990, 352 p.
  36. Svalov S.N. Primenenie statisticheskikh metodov v lesovodstve: stat’ya v zhurnale Itogi nauki i tekhniki [Application of statistical methods in forestry: article in the journal Itogi Nauki i Tekhniki]. Moscow: VINITI, 1985, 164 p.
  37. Sokolov P.A., Chernykh V.L. Variatsionnaya statistika [Variation statistics]. Yoshkar-Ola: MarSTU, 1990, 100 p.
  38. Mastitskiy S.E., Shitikov V.K. Statisticheskiy analiz i vizualizatsiya dannykh s pomoshch’yu R [Statistical analysis and visualization of data using R]. Moscow: DMK Press, 2015, 496 p.
  39. Gerasimov Yu.Yu., Khlyustov V.K. Matematicheskie metody i modeli v raschetakh na EVM: primenenie v lesoupravlenii i ekologii [Mathematical methods and models in computer calculations: application in forest management and ecology]. Moscow: MGUL, 2001, 260 p.

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2024 Pozdeev D.A., Absalyamov R.R., Yakimov M.V.

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.

СМИ зарегистрировано Федеральной службой по надзору в сфере связи, информационных технологий и массовых коммуникаций (Роскомнадзор).
Регистрационный номер и дата принятия решения о регистрации СМИ: серия ПИ № ФС 77 - 68118 от  21.12.2016.