Hidrológiai Közlöny 2009 (89. évfolyam)

4. szám - Móricz Norbert–Gálos Borbála–Gribovszki Zoltán: Az erdők intercepciójának mérési és modellezési lehetőségei

MÓRICZ M. - GÁLOS B. - GRIBOVSZKI Z.: Az erdők intercepciója ... 45 Kentaro A.: Stammablauf und Interception in zwei Waldbeständen in Abhängigkeit von meteorologischen Variablen, Diplomarbeit , Insti­tut für Waldökologie, Univ. für Bodenkultur, Wien, 98p, 2003. Kiss, K. A.- Gribovszki, Z.- Kalicz, P.: Rainfall interception by forest canopy and forest litter in three different forest ecosystems at the eastern border of the Alps. Geophysical Research Abstracts, Vol. 7. 05430, 2005. Koloszár J.: Természetes erdei ökoszisztémák és a csapadék, Erdő és víz, VEAB kiadvány. 75-88, 1981. Kovács J.: A felszíni lefolyás általános vizsgálata és az árvizek előre­jelzése. Vízügyi Közlemények, 1-2 füzet. 1974. Kreutzsch, H.: Die zu forstlichen Zwecken eingerichteten meteorologi­schen Stationen und die Resulte der Beobachtungen im Jahre 1863. Tharandterforstl. Jahrbuch : 216-226, 1864. Kucsara M.: Csapadék és lefolyás erdészeti kisvízgyűjtőn, doktori érte­kezés, Sopron. 1996. Kucsara M.: Az erdő csapadékviszonyainak vizsgálata. Vízügyi Közle­mények, 3.füzet: 456-475, 1998. Lee R.: Forest Hydrology. Columbia Univ.Press, New York. 1980. Leonard, R.E.: Mathematical theory of interception. In: W.E.Sopper and H.W.Hull, international symposium on forest hydrology. Per­gamon press, Oxford, 813p, 1967. Leyton, L.- Reynolds, E.R.C.- Thompson, F.B.. Rainfall interception in forest and moorland. In: Sopper, W.E., Lull, H.W. (Eds.), Interna­tional Symposium on Forest Hydrology, Pennsylvania State Uni­versity, Pergamon Press: 163-178, 1967. Link, T. E. - Unsworth M. - Marks D.: The dynamics of rainfall inter­ception by a seasonal temperate rainforest, Agricultural and Forest Meteorology, 124: 171-191,2004. Liu, S.: A new model for the prediction of rainfall interception in forest canopies, Ecological Modelling, 99: 151-159, 1997. Liu, S.: Evaluation of the Liu model for predicting rainfall interception in forests world-wide, Hydrological Processes , vol. 15, Issue 12: 2341-2360, 2001. Llorens, P.: Rainfall interception by a Pinus sylvestris forest patch o­vergrown in a Mediterranean mountainous abandoned area. II- As­sessment of the applicability of the Gash analytical model. Journal of Hydrology, 199: 346-359, 1997. Llorens, P.- Domingo, F.: Rainfall partitioning by vegetation under Mediterranean conditions. A review of studies in Europe, Journal of Hydrology, 335: 37- 54, 2007. Llorens, P.- Gallart, F.: A simplified method for forest water storage capacity measurement. Journal of Hydrology, 240: 131-144, 2000. Lloyd C.R.- Marques, A.O.: Spatial variability of throughfall and stem­flow measurements in Amazonian rain forest. Agric.Forest Met. 42: 63-73, 1988. Loustau, D.- Berbigier, P.- Granier, A.- Moussa, F. E. H.: Interception loss, throughfall and stemflow in a maritime pine stand. I. Variabi­lity of throughfall and stemflow beneath the pine canopy, Journal of Hydrology. Vol. 138, 3-4: 449-467, 1992. Lundberg, A.- Halldin, S.: Snow interception evaporation. Review of mesurement techniques, processes, and models, Theor. Appl. Cli­matol. 70: 117-133,2001. Lundberg A.- Calder I.- Harding R.: Evaporation of intercepted snow: mesurement and modelling. Journal of Hydrology, 206: 151-163, 1998. Marin, C. T.- Bouten, W.- Sevink, J.: Gross rainfall and its partitioning into throughfall, stemflow and evaporation of intercepted water in four forest ecosystems in western Amazonia, Journal of Hydrology (Amsterdam). Vol. 237, No. 1-2: 40-57, 2000. Massman, W.J.: The derivation and validation of a new model for the interception of rainfall by forests, Agricultural Meteorology, 28: 261-286, 1983. Masukata, H.- Anoo, M.- Ogawa, H.: Throughfall, Stemflow and Inter­ception of Rainwater in an Evergreen Broadleaved Forest, Eco. Res. 5: 303-316, 1990. Mátyás, Cs.(szerk.): Erdészeti ökológia. Mezőgazda Kiadó, Bp., 1996. Merriam, R.A.: A note on the interception loss equation. Journal of Geophysical Research, 65: 3850-3851, 1960. Mitscherlich G.- Moll W.: Untersuchungen über die Niederschlags-und Bodenfeuchtigkeitsverhältnisse in einigen Nadel-und Laubholz­beständen in der Nähe von Freiburg/Br. Allgemeine Forst und Jag­dzeitung, 3: 49-60, 1970. Mitscherlich, G.: Wald, Wachstum und Umwelt. Band 2: Waldklima und Wasserhaushalt. Frankfurt a. M, Sauerländer 's Verlag, 1971 . Molchanov, A. A.: Die hydrologische Rolle des Kiefernwaldes auf Sandböden, Dt. Bauernverlag, Berlin, 404p, 1957. Murakami, S.: A proposal for a new forest canopy interception mecha­nism: Splash droplet evaporation, Journal of Hydrology, 319: 72­82, 2006. Peck, A. K: Hydrometeorologische und mikroklimatische Kennzei­chen von Buchenwäldern: Berichte des Meteorologischen Institutes der Universität Freiburg Nr. 10: 188p, 2004. Putuhena, W.- Cordery, I.: Estimation of interception capacity of the forest floor, Journal of Hydrology, 180: 283-299, 1996. Rácz J.: Az erdő szerepe a vízgyűjtő területek vízháztartásában, Erdő és víz, VEAB kiadvány: 23-29, 1981. Rowe, P.B.: Effects of forest floor on disposition of rainfall in pine stands, J. For., 53: 342-355, 1955. Rowe, L. K: Rainfall interception by an evergreen beech forest, Nel­son, New Zealand, Journ. of Hydrology, Vol. 66,1-4:143-158, 1983 Rutter, A. J.- Morton, A. J.: A Predictive Model of Rainfall Intercepti­on in Forests. HI. Sensitivity of The Model to Stand Parameters and Meteorological Variables, The Journal of Applied Ecology, Vol. 14, No. 2: 567-588, 1977. Rutter, A.J.- Kershaw, K.A.- Robins, P.C.- Morton, A.J.: A predictive model of rainfall interception in forests, I. Derivation of the model from observations in a stand of Corsican pine. Agricultural Mete­orology. 9: 367-384, 1971. Sato, Y.- Kumagai T.- Kume, A.- Otsuki, K- Ogawa, S.: Experimental analysis of moisture dynamics of litter layers —the effects of rain­fall conditions and leaf shapes, Hydrological Processes. 18: 3007­3018,2004. Savenije, H. G.: The importance of interception and why we should de­lete the term evapotranspiration from our vocabulary, Hydrological Processes, 18. Issue 8: 1507-1511, 2004. Schaap, M. G.- Bouten, W.: Forest floor evaporation in a dense Doug­las fir stand, Journal of Hydrology, 193: 97-113, 1997. Silva, I. C.- Okumura, T.: Throughfall, Stemflow and interception loss in a mixed white oak forest, Japanese Forestry Society, J. For .Äes.l:123-129, 1996. Simonffy, Z.: Intercepció vizsgálatok (Helyzetfelmérő tanulmány) VI­rUKINo. 7631(1)21, 1978-79. Sitkey, J.: Erdős vízgyűjtő élővízminősége a csapadék és a faállomány összefüggésében. Doktori értekezés. Sopron, 1996. Staelens, J.- Schrijver, A. D.- Verheyen, K- Verhoest, N. E. C.: Rain­fall partitioning into throughfall, stemflow, and interception within a single beech (Fagus sylvatíca L.) canopy: influence of foliation, rain event characteristics, and meteorology, Hydrological Proces­ses. 22: 33—45, 2008. Stewart, J.B.: Evaporation from the wet canopy of a pine forest. Water Resour. äö.13,: 915-921, 1977. Szabó M.: Egy cseres-tölgyes erdő/"sikfokut project"/ víz- és ásványi anyag forgalma. Kandidátusi értekezés. Budapest, 1979. Teklehaimanot, Z.- Jarvis, P.G.: Direct measurement of evaporation of intercepted water from forest canopies. J. Appl. Ecol. 28: 603-618, 1991. Toba, T.- Ohta, T.: An observational study of the factors that influence interception loss in boreal and temperate forests, Journal of Hydro­logy, 313:208-220, 2005. Toba, T.- Ohta, T.: Factors affecting rainfall interception determined by a forest simulator and numerical model, Hydrological Processes, Published online in Wiley InterScience, 2008. Valente, F.- David, J.S.- Gash, J.H.C.: Modelling interception loss for two sparse eucalypt and pine forests in central Portugal using refor­mulated Rutter and Gash analytical models. Journal of Hydrology, 190: 141-162, 1997. Wang, A.- Diao, Y.- Peí, T.- Jin, C.- Zhu, J.: A semi-theoretical model of canopy rainfall interception for a broad-leaved tree, Hydrologi­cal Processes, 21: 2458-2463, 2007. Ward, R.C.- Robinson, M.: Principles of hydrology, third edition, Mc­Grow-Hill Book Company Europe, chapter 3: 54-70. 1975. Watanabe, T.- Mizutani, K: Model study on micrometeorological as­pects of rainfall interception over an evergreen broad-leaved forest, Agricultural and Forest Meteorology 80: 195-214, 1996. Weiche I.: Niederschlagzurückhaltung durch Wald. Allg.Forstzeit­schrift. H.29: 522-525, 1968. Zeng, N. - Shuttleworth, J.W. - Gash, J.H.C.: Influence of temporal va­riability of rainfall on interception loss. Part I. Point analysis, Jour­nal of Hydrology, 228: 228-241, 2000. A kézirat beérkezett: 2009. március 16.

Next

/
Oldalképek
Tartalom