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Influence of meteorological factors on the moisture content of fine forest fuels: responses of fire danger class to different microclimates on the example of European beech (Fagus sylvatica L.) stands

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Adámek, M., Bobek, P., Hadincová, V., Wild, J., Kopecký, M., 2015. Forest fires within a temperate landscape: a decadal and millennial perspective from a sandstone region in Central Europe. Forest Ecology and Management, 336, 81–90. Search in Google Scholar

Aussenac, G., 2000. Interactions between forest stands and microclimate: ecophysiological aspects and consequences for silviculture. Annals of Forest Science, 57, 3, 287–301. Search in Google Scholar

Bartík, M., Jančo, M., Střelcová, K., Škvareninová, J., Škvarenina, J., Mikloš, M., Vido, J., Dagsson Waldhauserová, P., 2016. Rainfall interception in a disturbed montane spruce (Picea abies) stand in the West Tatra Mountains. Biologia, 71, 9, 1002–1008. Search in Google Scholar

Bartík, M., Sitko, R., Oreňák, M., Slovik, J., Škvarenina, J., 2014. Snow accumulation and ablation in disturbed mountain spruce forest in West Tatra Mts. Biologia, 69, 11, 1492–1501. Search in Google Scholar

Bradshaw, R. H., Lindbladh, M., Hannon, G.E., 2010. The role of fire in southern Scandinavian forests during the late Holocene. International Journal of Wildland Fire, 19, 8, 1040–1049. Search in Google Scholar

Brown, T.P., Hoylman, Z.H., Conrad, E., Holden, Z., Jencso, K., Jolly, W.M., 2022. Decoupling between soil moisture and biomass drives seasonal variations in live fuel moisture across cooccurring plant functional types. Fire Ecology, 18, 1, 1–14. Search in Google Scholar

Camia, A., Libertá, G., San-Miguel-Ayanz, J., 2017. Modeling the impacts of climate change on forest fire danger in Europe. Joint Research Centre (JRC) Technical Reports, 1, 22. Search in Google Scholar

Carter, V.A., Moravcová, A., Chiverrell, R.C., Clear, J.L., Finsinger, W., Dreslerová, D., Halsall, K., Kuneš, P., 2018. Holocene-scale fire dynamics of central European temperate spruce-beech forests. Quaternary Science Reviews, 191, 15–30. Search in Google Scholar

Cerdà, A., Ebel, B.A., Serpa, D., Lichner, Ľ., 2022. Introduction to the special issue on fire impacts on hydrological processes. Journal of Hydrology and Hydromechanics, 70, 4, 385–387. Search in Google Scholar

Chatto, K., Tolhurst, K.G., 1997. Development and testing of the Wiltronics TH moisture meter. Research Report 46. Department of Natural Resources and Environment, Fire Management Branch, Australia, Victoria. 40 p. Search in Google Scholar

Davis, K.T., Dobrowski, S.Z., Holden, Z.A., Higuera, P.E., Abatzoglou, J.T., 2019. Microclimatic buffering in forests of the future: the role of local water balance. Ecography, 42, 1–11. Search in Google Scholar

Dohnal, M., Votrubová, J., Tesar, M., 2014. Rainfall interception and spatial variability of throughfall in spruce stand. Journal of Hydrology and Hydromechanics, 62, 4, 277. Search in Google Scholar

Ellenberg, H., 1996. Vegetation Mitteleuropas mit den Alpen. 5th Ed. Eugen Ulmer, Stuttgart. Search in Google Scholar

Fajković, H., Ivanić, M., Nemet, I., Rončević, S., Kampić, Š., Vazdar, D.L., 2022. Heat-induced changes in soil properties: fires as cause for remobilisation of chemical elements. Journal of Hydrology and Hydromechanics, 70, 4, 421–431. Search in Google Scholar

Geiger, R., Aron, R.H., Todhunter, P., 1995. The Climate near the Ground. Vieweg & Sohn, Braunschweig / Wiesbaden. 528 p. Search in Google Scholar

Gessler, A., Jung, K., Gasche, R., Papen, H., Heidenfelder, A., Börner, E., Metzler, B., Augustin, S., Hildebrand, E., Rennenberg, H., 2005. Climate and forest management influence nitrogen balance of European beech forests: microbial N transformations and inorganic N net uptake capacity of mycorrhizal roots. European Journal of Forest Research, 124, 95–111. Search in Google Scholar

Gibos, K.E., 2010. Effect of slope and aspect on litter layer moisture content of lodgepole pine stands in the eastern slopes of the Rocky Mountains of Alberta. MSc Thesis. University of Toronto. Search in Google Scholar

Gömöry, D., Kukla, J., Schieber, B., 2011. Taxonomy, phylogeny and distribution of beech in Europe and Slovakia. In: Barana, M., Kulfan, J., Bublinec, E. (Eds.): Beech and Beech Ecosystems of Slovakia. Veda, Bratislava, pp. 19–36. (In Slovak.) Search in Google Scholar

Gordeev, R.V., Pyzhev, A.I., 2023. Impact of trade restrictions on the Russian forest industry: Evidence from Siberian timber producers. Forests, 14, 12, 245. Search in Google Scholar

Gusev, V.G., 2015. O metodakh izmereniya vlazhnosti lesnykh goryuchikh materialov v zavisimosti ot meteorologicheskikh usloviy. Izvestiya Sankt-Peterburgskoy lesotekhnicheskoy akademii, 212, 185–197. (In Russian.) Search in Google Scholar

Hinkle, D. E., Wiersma, W., Jurs, S.G., 1998. Applied Statistics for the Behavioral Sciences. 4th Ed. Houghton Mifflin. 749 p. Search in Google Scholar

Hofmeister, J., Hošek, J., Brabec, M., Střalková, R., Mýlová, P., Bouda, M., Svoboda, M., 2019. Microclimate edge effect in small fragments of temperate forests in the context of climate change. Forest Ecology and Management, 448, 48–56. Search in Google Scholar

Hološ, S., Šurda, P., Lichner, Ľ., Zvala, A., Píš, V., 2022. Fireinduced changes in soil properties depend on age and type of forests. Journal of Hydrology and Hydromechanics, 70, 4, 442–449. Search in Google Scholar

Holsten, A., Dominic, A.R., Costa, L., Kropp, J.P., 2013. Evaluation of the performance of meteorological forest fire indices for German federal states. Forest Ecology and Management, 287, 123–131. Search in Google Scholar

Ivantsova, E.D., Pyzhev, A.I., Zander, E.V., 2019. Economic consequences of insect pests outbreaks in boreal forests: A literature review. J. Sib. Fed. Univ. Humanit. Soc. Sci. 2019, 4, 627–642. Search in Google Scholar

Jeníček, M., Hotový, O., Matějka, O., 2017. Snow accumulation and ablation in different canopy structures at a plot scale: using degree-day approach and measured shortwave radiation. Acta Universitatis Carolinae Geographica, 52, 61–72. Search in Google Scholar

Jokanović, V.N., Vulević, T., Lazarević, K., 2020. Risk assessment of forest decline by application of geostatistics and multi-criteria analysis. Journal of Hydrology and Hydromechanics, 68, 3, 285–292. Search in Google Scholar

Kane, J.M., 2021. Stand conditions alter seasonal microclimate and dead fuel moisture in a Northwestern California oak woodland. Agricultural and Forest Meteorology, 308, 108602. Search in Google Scholar

Klamerus-Iwan, A., Błońska, E., 2017. Seasonal variability of interception and water wettability of common oak leaves. Annals of Forest Research, 63–73. Search in Google Scholar

Kofroňová, J., Šípek, V., Hnilica, J., Vlček, L., Tesař, M., 2021. Canopy interception estimates in a Norway spruce forest and their importance for hydrological modelling. Hydrological Sciences Journal, 66, 7, 1233–1247. Search in Google Scholar

Korená Hillayová, M., Holécy, J., Korísteková, K., Bakšová, M., Ostrihoň, M., Škvarenina, J., 2023. Ongoing climatic change increases the risk of wildfires. Case study: Carpathian spruce forests. Journal of Environmental Management, 337, 117620. Search in Google Scholar

Korísteková, K., 2018. Analysis of meteorological conditions of forest and landscape fires in Slovakia. PhD Thesis. Faculty of Wood Sciences and Technology, Technical University in Zvolen, Zvolen. 106 p. (In Slovak.) Search in Google Scholar

Kveták, S., 1986. Desiccative and sultry weather in Hurbanovo. Geografický časopis, 38, 1, 24–42. (In Slovak.) Search in Google Scholar

Leštianska, A., Fleischer, P., Merganičová, K., Střelcová, K., 2020. Interspecific variation in growth and tree water status of conifers under water-limited conditions. Journal of Hydrology and Hydromechanics, 68, 4, 368–381. Search in Google Scholar

Lindner, M., Fitzgerald, J.B., Zimmermann, N.E., Reyer, C., Delzon, S., van der Maaten, E, Schelhaas, M.J., Lasch, P., Eggers, J., van der Maaten-Theunissen, M., Suckow, F., Psomas, A., Poulter, B., Hanewinkel, M., 2014. Climate change and European forests: what do we know, what are the uncertainties, and what are the implications for forest management? Journal of Environmental Management, 146, 69–83. Search in Google Scholar

Lukáčik, I., Čížová, M., Ježovič, V, Škvareninová, J., 2005. Arboretum Borova hora 1965–2005. Technical University in Zvolen. 91 p. ISBN:80-228-1479-2. (In Slovak.) Search in Google Scholar

Lukasová, V., Bucha, T., Škvareninová, J., Škvarenina, J., 2019. Validation and application of European beech phenological metrics derived from MODIS data along an altitudinal gradient. Forests, 10, 1, 60. Search in Google Scholar

Lukasová, V., Škvareninová, J., Bičárová, S., Sitárová, Z., Hlavatá, H., Borsányi, P., Škvarenina, J., 2021. Regional and altitudinal aspects in summer heatwave intensification in the Western Carpathians. Theoretical and Applied Climatology, 146, 1111–1125. Search in Google Scholar

Lukasová, V., Vido, J., Škvareninová, J., Bičárová, S., Hlavatá, H., Borsányi, P., Škvarenina, J., 2020. Autumn phenological response of European Beech to summer drought and heat. Water, 12, 9, 2610. Search in Google Scholar

Matejka, F., Janous, D., Hurtalova, T., Roznovsky, J., 2004. Effects of thinning on microclimate of a young spruce forest. Ekologia Bratislava, 23, 30–8. Search in Google Scholar

Matthews, S., 2010. Effect of drying temperature on fuel moisture content measurements. International Journal of Wildland Fire, 19, 800–802. Search in Google Scholar

Melo, M., Lapin, M., Kapolková, H., Pecho, J., Kružicová, A., 2013. Climate trends in the Slovak part of the Carpathians. In: Kozak, J., Ostapowicz, K., Bytnerowicz, A., Wyżga, B. (Eds): The Carpathians: Integrating Nature and Society Towards Sustainability. Springer-Verlag, Berlin Heidelberg, pp. 131–150. Search in Google Scholar

Mészáros, J., Halaj, M., Polčák, N., Onderka, M., 2022. Mean annual totals of precipitation during the period 1991–2015 with respect to cyclonic situations in Slovakia. Időjárás – Quarterly Journal of the Hungarian Meteorological Service, 126, 2, 267–284. Search in Google Scholar

Mezei, P., Blaženec, M., Grodzki, W., Škvarenina, J., Jakuš, R., 2017. Influence of different forest protection strategies on spruce tree mortality during a bark beetle outbreak. Annals of Forest Science, 74, 4, 1–12. Search in Google Scholar

Mráček, Z., 1989. Beech Silviculture (Pěstování buku). SZN, Prague, 224 p. (In Czech.) Search in Google Scholar

Nalevankova, P., Ježík, M., Sitkova, Z., Vido, J., Leštianska, A., Střelcová, K., 2018. Drought and irrigation affect transpiration rate and morning tree water status of a mature European beech (Fagus sylvatica L.) forest in Central Europe. Ecohydrology, 11, 6, e1958. Search in Google Scholar

Nečas, P., Kollár, D., 2018. The EU security strategy and its importance for the sectoral safety. In: Baculáková, K., Čech, L. (Eds.): Proc. 19th Int. Sci. Conf. International relations 2018: current issues of world economy and politics. Ekonóm, Bratislava, pp. 519–529. Search in Google Scholar

Ostrihoň, M., Škvarenina, J., Korísteková, K., 2021. Effect of selected meteorological factors on forest litter moisture content and fire danger degree. Delta, 15, 1, 58–70. Search in Google Scholar

Packham, J.R., Thomas, P.A., Atkinson, M.D., Degen, T., 2012. Biological flora of the British Isles: Fagus sylvatica. Journal Ecology, 100, 1557–1608. Search in Google Scholar

Peterken, G.F., Mountford, E.P., 1996. Effects of drought on beech in Lady Park Wood, an unmanaged mixed deciduous woodland. Forestry, 69, 2, 125–136. Search in Google Scholar

Petrík, M., Havlíček, V., Uhrecký, I., 1986. Forest Bioclimatology. Príroda, Bratislava, 352 p. (In Slovak and Czech.) Search in Google Scholar

Rajczak, J., Pall, P., Schär, C., 2013. Projections of extreme precipitation events in regional climate simulations for Europe and the Alpine Region. Journal of Geophysical Research: Atmospheres, 118, 9, 3610–3626. Search in Google Scholar

Rožnovský, J., Chalupníková, B., Hurtalová, T., Matejka, F., 2002. Stratification of air temperature and air humidity in maise stand. Contributions to Geophysics and Geodesy, 32, 3. Search in Google Scholar

Rožnovský, J., Litschmann, T., Středová, H., Středa, T., Salaš, P., Horká, M., 2017. Microclimate evaluation of the Hradec Králové city using HUMIDEX. Contributions to Geophysics and Geodesy, 47, 3, 231–246. Search in Google Scholar

Schaap, M.G., Bouten, W., 1997. Forest floor evaporation in a dense Douglas fir stand. Journal of Hydrology, 201, 367–383. Search in Google Scholar

Shvidenko, A., Mukhortova, L., Kapitsa, E., Kraxner, F., See, L., Pyzhev, A., Gordeev, R., Fedorov, S., Korotkov, V., Bartalev, S., Schepaschenko, D., 2023. A modelling system for dead wood assessment in the forests of Northern Eurasia. Forests, 14, 45. Search in Google Scholar

Šípek, V., Hnilica, J., Vlček, L., Hnilicová, S., Tesař, M., 2020. Influence of vegetation type and soil properties on soil water dynamics in the Šumava Mountains (Southern Bohemia). Journal of Hydrology, 582, 124285. Search in Google Scholar

Škvarenina, J., Mindáš, J., Holécy, J., Tuček, J., 2004a. An analysis of the meteorological conditions during the two largest forest fire events in the Slovak Paradise National Park. Meteorological Journal, 7, 167–171. Search in Google Scholar

Škvarenina, J., Križová, E., Tomlain, J.N., 2004b. Impact of the climate change on the water balance of altitudinal vegetation stages in Slovakia. Ekologia‐Bratislava, 23, 13–29. Search in Google Scholar

Škvareninová, J., 2009. The dynamics of vegetative phenophases observed at the autochton population of Norway spruce (Picea abies [L.] Karst.) in Slovakia. Central European Forestry Journal, 55, 1, 13–27. Search in Google Scholar

Škvareninová, J., 2010. The course of spring phenological stages observed for the generative organs of Norway spruce (Picea abies [L.] Karst.) from its autochthonous populations in Slovakia. Central European Forestry Journal, 56, 4, 369–381. Search in Google Scholar

Šraj, M., Brilly, M., Mikoš, M., 2008. Rainfall interception by two deciduous Mediterranean forests of contrasting stature in Slovenia. Agricultural and Forest Meteorology, 148, 121–134. Search in Google Scholar

Stanová, V., Valachovič, M., 2002. Catalog of Slovak biotops. DAPHNE – Institute of Applied Ecology, Bratislava, 225 p. (In Slovak.) Search in Google Scholar

Stašiov, S., Michalková, E., Lukáčik, I., Čiliak, M., 2017. Harvestmen (Opiliones) communities in an arboretum: Influence of tree species. Biologia, 72, 2, 184–193. Search in Google Scholar

Stolina, M., Čapek, M., Gogola, E., Hešková, A., Kodrík, J., Křístek, J., Vaník, K., 1985. Forest Protection. Príroda, Bratislava, 473 p. (In Slovak.) Search in Google Scholar

Středa, T., Středová, H., Rožnovský, J., 2011. Orchards microclimatic specifics. In: Bioclimate: Source and Limit of Social Development. Nitra, pp. 132–133. Search in Google Scholar

Střelcová, K., Kurjak, D., Leštianska, A., Kovalčíková, D., Ditmarová, Ľ., Škvarenina, J., Ahmed, Y.A.R., 2013. Differences in transpiration of Norway spruce drought-stressed trees and trees well supplied with water. Biologia, 68, 1118–1122. Search in Google Scholar

Střelcová, K., Minďáš, J., Škvarenina, J., 2006. Influence of tree transpiration on mass water balance of mixed mountain forests of the West Carpathians. Biologia, 61, 19, 305–310. Search in Google Scholar

Střelcová, K., Minďáš, J., Škvarenina, J., Tužinský, L., 2003. Study of mountain microclimate and bioclimate forest plants – I. Vertical variability. In: Rožnovský, J., Litschmann, T. (Eds.): Proc. Seminar Microclimate of Stands. Brno, pp. 58–68. (In Slovak.) Search in Google Scholar

Střelcová, K., Škvarenina, J., Leštianska, A., 2018. Biometeorological stations of the Department of Natural Environment. Technical University of Zvolen, Zvolen. www.tuzvo.sk (In Slovak.) Search in Google Scholar

Tamai, K., Goto, Y., 2003. Fuel moisture estimation model for a deciduous secondary forest in Japan - A comparison of parameters under the different canopy. In: Proc. 5th Symposium on Fire and Forest Meteorology and the 2nd International Wildland Fire Ecology and Fire Management Congress, Orlando. Search in Google Scholar

Tarábek, K., 1980. Climatogeographical types. Map No. 43. In: Mazúr, E., Jakál, J., (Eds.): Atlas SSR. Veda, Bratislava, p. 64. Search in Google Scholar

Tuček J., Majlingová, A., 2009. Forest fire vulnerability analysis. In: Střelcová, K., et al. (Eds.): Bioclimatology and Natural Hazards. Springer, Dordrecht. https://doi.org/10.1007/978-1-4020-8876-6_19 Search in Google Scholar

Tuff, K.T., Tuff, T., Davies, K.F., 2016. A framework for integrating thermal biology into fragmentation research. Ecology Letters, 19, 4, 361–374. Search in Google Scholar

Tužinský, L., Střelcová, K., Škvarenia, J., Tužinský, E., 2003. Study of the microclimate and bioclimate of mountain forest stands – II. The influence of plant density on the microclimate. In: Rožnovský, J., Litschmann, T. (Eds.): Proc. Seminar Microclimate of Stands. Brno, pp. 203–206. (In Slovak.) Search in Google Scholar

Vanwalleghem, T., Meentemeyer, R.K., 2009. Predicting forest microclimate in heterogeneous landscapes. Ecosystems, 12, 1158–1172. Search in Google Scholar

Veľas, R., Majlingová, M., Kačíková, D., 2021. Influence of changes in meteorological conditions on the moisture content of dead fine fuel in the mixed pine forest. Kosice Security Revue, 11, 1, 106–119. Search in Google Scholar

Vida, T., Škvarenina, J., 2010. Influence of weather on litter moisture in selected forest stands of Javorníky Mts. and Slovenský raj National Park. In: Proc. Int. Conf. Bioklima. Prague. (In Slovak.) Search in Google Scholar

Vido, J., Tadesse, T., Šustek, Z., Kandrík, R., Hanzelová, M., Škvarenina, J., Škvareninová, J., Hayes, M., 2015. Drought occurrence in central european mountainous region (Tatra National Park, Slovakia) within the period 1961–2010. Advances in Meteorology, 2015, 248728. https://doi.org/10.1155/2015/248728 Search in Google Scholar

Watts, A.C., Kobziar, L.N., 2015. Hydrology and fire regulate edge influence on microclimate in wetland forest patches. Freshwater Science, 34, 4, 1383–1393. Search in Google Scholar

Zabret, K., Lebar, K., Šraj, M., 2023. Temporal response of urban soil water content in relation to the rainfall and throughfall dynamics in the open and below the trees. Journal of Hydrology and Hydromechanics, 71, 2, 210–220. Search in Google Scholar

Ziernicka-Wojtaszek, A., 2019. Pluviothermal regionalisation of Poland in light of present-day climate change. Polish Journal of Environmental Studies, 29, 1, 989–996. Search in Google Scholar

Ziernicka-Wojtaszek, A., 2021. Summer drought in 2019 on Polish territory – A case study. Atmosphere, 12, 11, 1475. Search in Google Scholar

Živanović, S., Ivanović, R., Nikolić, M., Đokić, M., Tošić, I., 2020. Influence of air temperature and precipitation on the risk of forest fires in Serbia. Meteorology and Atmospheric Physics, 132, 869–883. Search in Google Scholar

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