Full text of this article is only available in PDF format.

Seppo Kellomäki (email), Matti Maajärvi, Harri Strandman, Antti Kilpeläinen, Heli Peltola

Model computations on the climate change effects on snow cover, soil moisture and soil frost in the boreal conditions over Finland

Kellomäki S., Maajärvi M., Strandman H., Kilpeläinen A., Peltola H. (2010). Model computations on the climate change effects on snow cover, soil moisture and soil frost in the boreal conditions over Finland. Silva Fennica vol. 44 no. 2 article id 455. https://doi.org/10.14214/sf.455

Abstract

This study considered how climate change affects the accumulation of snow, the soil moisture and soil frost at sites without tree cover in boreal conditions in Finland (60°–70°N). An increase of 4.5 °C in annual mean temperature and 20 % in annual precipitation were assumed for Finland by the year 2100 according to A2 emission scenario. Along with climate, the soil type of the permanent inventory plots of the Finnish National Forest Inventory was used. Soil and climate data were combined by using a process-based ecosystem model. Calculations were done for four periods: current climate (1971–2000), near future (2001–2020), mid-term future (2021–2050) and long-term future (2071–2100). According to our simulations, the average monthly duration and depth of snow decreased over the simulation period. However, the increasing precipitation may locally increase the snow depths in the mid-term calculations. In the autumn and winter, the average volumetric soil moisture content slightly increased in southern Finland during the near future, but decreased towards the end of the century, but still remained on a higher level than presently. In northern Finland, the soil moisture in the autumn and winter increased by the end of this century. In the summertime soil moisture decreased slightly regardless of the region. Throughout Finland, the length and the depth of soil frost decreased by the end of the century. In the south, the reduction in the depth was largest in the autumn and spring, while in the mid-winter it remained relatively deep in the middle of the century. In the north, the depth tended to increase during the first two calculation periods, in some areas, even during the third calculation period (2071–2100) due to reduced insulation effects of snow during cold spells. The wintertime increase in soil moisture and reduced soil frost may be reflected to reduced carrying capacity of soil for timber harvesting.

Keywords
climate change; soil frost; precipitation; temperature; A2 climate scenario; snow accumulation; soil carrying capacity; soil moisture

Author Info
  • Kellomäki, University of Eastern Finland, School of Forest Sciences, Joensuu, Finland E-mail seppo.kellomaki@uef.fi (email)
  • Maajärvi, University of Eastern Finland, School of Forest Sciences, Joensuu, Finland E-mail mm@nn.fi
  • Strandman, University of Eastern Finland, School of Forest Sciences, Joensuu, Finland E-mail hs@nn.fi
  • Kilpeläinen, University of Eastern Finland, School of Forest Sciences, Joensuu, Finland E-mail ak@nn.fi
  • Peltola, University of Eastern Finland, School of Forest Sciences, Joensuu, Finland E-mail hp@nn.fi

Received 6 May 2009 Accepted 10 March 2010 Published 31 December 2010

Views 13124

Available at https://doi.org/10.14214/sf.455 | Download PDF

Creative Commons License CC BY-SA 4.0

Register
Click this link to register to Silva Fennica.
Log in
If you are a registered user, log in to save your selected articles for later access.
Contents alert
Sign up to receive alerts of new content

Your selected articles
Send to email
Čermák P., Rybníček M. et al. (2017) Impact of climate change on growth dynamics of N.. Silva Fennica vol. 51 no. 2 article id 1781 (remove) | Edit comment
Huttunen S., (1981) Proceedings of the symposium: "Air pollutants as.. Silva Fennica vol. 15 no. 4 article id 5132 (remove) | Edit comment
Wallius V., Kunttu J. et al. (2024) Attractiveness of wood-frame multi-storey buildi.. Silva Fennica vol. 58 no. 5 article id 23035 (remove) | Edit comment
Chen X., Page-Dumroese D. et al. (2014) Interaction of initial litter quality and thinni.. Silva Fennica vol. 48 no. 4 article id 1211 (remove) | Edit comment
Saarilahti M., Bakena E. et al. (1987) Studies on Tanzanian forest work. Silva Fennica vol. 21 no. 2 article id 5314 (remove) | Edit comment
Varjo J., (1997) Change detection and controlling forest informat.. Acta Forestalia Fennica vol. 0 no. 258 article id 7524 (remove) | Edit comment
Kilkki P., Maltamo M. et al. (1989) Use of the Weibull function in estimating the ba.. Silva Fennica vol. 23 no. 4 article id 5392 (remove) | Edit comment
Luukkanen O., (1981) Effects of gibberellins GA4 and GA7 on flowering.. Silva Fennica vol. 15 no. 4 article id 5129 (remove) | Edit comment
Nyyssönen A., Mielikäinen K. (1978) Estimation of stand increment Acta Forestalia Fennica vol. 0 no. 163 article id 7597 (remove) | Edit comment
Björklund L., (1999) Identifying heartwood-rich stands or stems of Pi.. Silva Fennica vol. 33 no. 2 article id 662 (remove) | Edit comment
Viherä-Aarnio A., Velling P. (1999) Growth and stem quality of mature birches in a c.. Silva Fennica vol. 33 no. 3 article id 659 (remove) | Edit comment
Karjalainen L., Kuuluvainen T. (2002) Amount and diversity of coarse woody debris with.. Silva Fennica vol. 36 no. 1 article id 555 (remove) | Edit comment
Rohner M., Böswald K. (2001) Forestry development scenarios: timber productio.. Silva Fennica vol. 35 no. 3 article id 585 (remove) | Edit comment
Heikkilä J., Sirén M. et al. (2009) Energy wood thinning as a part of stand manageme.. Silva Fennica vol. 43 no. 1 article id 220 (remove) | Edit comment
Kallio A. M. I., (2001) Interdependence of the sawlog, pulpwood and sawm.. Silva Fennica vol. 35 no. 2 article id 598 (remove) | Edit comment
Hårdh J. E., (1966) Trials with carbon dioxide, light and growth sub.. Acta Forestalia Fennica vol. 81 no. 1 article id 7166 (remove) | Edit comment
Mickovski S. B., Ennos A. R. (2003) Anchorage and asymmetry in the root system of Pi.. Silva Fennica vol. 37 no. 2 article id 498 (remove) | Edit comment
Siipilehto J., (2000) A comparison of two parameter prediction methods.. Silva Fennica vol. 34 no. 4 article id 617 (remove) | Edit comment
Kniivilä M., Saastamoinen O. (2002) The opportunity costs of forest conservation in .. Silva Fennica vol. 36 no. 4 article id 526 (remove) | Edit comment
Heinonen T., Pukkala T. (2004) A comparison of one- and two-compartment neighbo.. Silva Fennica vol. 38 no. 3 article id 419 (remove) | Edit comment
Kurkela T., (2002) Crown condition as an indicator of the incidence.. Silva Fennica vol. 36 no. 2 article id 537 (remove) | Edit comment
Korpilahti E., (2012) From the Editor Silva Fennica vol. 46 no. 1 article id 443 (remove) | Edit comment
Stenberg P., Rautiainen M. et al. (2004) Reduced simple ratio better than NDVI for estima.. Silva Fennica vol. 38 no. 1 article id 431 (remove) | Edit comment
Jonsson M., (2008) Live-storage of Picea abies for two summers afte.. Silva Fennica vol. 42 no. 3 article id 246 (remove) | Edit comment
Rönnberg J., (2000) Logging operation damage to roots of clear-felle.. Silva Fennica vol. 34 no. 1 article id 642 (remove) | Edit comment
Heikinheimo O., (1920) The distribution and volume of Norway spruce for.. Acta Forestalia Fennica vol. 15 no. 1 article id 7039 (remove) | Edit comment
Peltoniemi M., Thürig E. et al. (2007) Models in country scale carbon accounting of for.. Silva Fennica vol. 41 no. 3 article id 290 (remove) | Edit comment
Turtiainen M., Salo K. et al. (2011) Variations of yield and utilisation of bilberrie.. Silva Fennica vol. 45 no. 2 article id 115 (remove) | Edit comment
Uliczka H., (2003) Nature conservation efforts by forest owners – i.. Silva Fennica vol. 37 no. 4 article id 485 (remove) | Edit comment
Lindholm M., Lehtonen H. et al. (2000) Climatic signals extracted from ring-width chron.. Silva Fennica vol. 34 no. 4 article id 616 (remove) | Edit comment
Your search results