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Typ záznamu:
stať ve sborníku (D)
Domácí pracoviště:
Katedra fyziky (31300)
Název:
Net ecosystem exchange of the mountain spruce stand is relatively higher under the days with prevailing diffusive solar radiation
Citace
Havránková, K., Urban, O., Acosta, M., Navrátil, M., Pavelka, M., Pokorný, R., Zvěřinová, Z. a Janouš, D. Net ecosystem exchange of the mountain spruce stand is relatively higher under the days with prevailing diffusive solar radiation.
In:
Xth Days of Plant Physiology: Xth Days of Plant Physiology 05-09-2004 Bratislava, Slovensko.
s. 69-69.
Podnázev
Rok vydání:
2004
Obor:
Biofyzika
Počet stran:
Strana od:
69
Strana do:
69
Forma vydání:
Kód ISBN:
Kód ISSN:
Název sborníku:
Xth Days of Plant Physiology
Sborník:
Název nakladatele:
Místo vydání:
Slovensko
Stát vydání:
Sborník vydaný v zahraničí
Název konference:
Xth Days of Plant Physiology
Místo konání konference:
Bratislava, Slovensko
Datum zahájení konference:
Typ akce podle státní
příslušnosti účastníků akce:
Evropská akce
Kód UT WoS:
EID:
Klíčová slova anglicky:
Popis v původním jazyce:
The net ecosystem exchange (NEE) of CO2 between the biosphere and the atmosphere is defined as the balance between fluxes associated with photosynthetic assimilation by the foliage and respiratory effluxes from autotrophic and heterotrophic processes. Canopy photosynthesis is predominantly controlled by the amount of absorbed solar radiation. In the presented poster we show that it is important to discriminate between the direct and diffuse components of incoming radiation. The investigated Norway spruce forest (20-year-old) is situated in the Beskydy Mts. (49°33´N, 18°32´E, NE of the Czech Republic) on the slope (11-16°) with SSW orientation on the area of 6.2 ha. The stand density is 2600 trees per hectare (hemi-surface leaf area index ca. 11 m2 m-2), mean (+- standard deviation) tree height and stem diameter at 1.3m are 8.5 +- 0.1 m and 10.1 +- 0.1 cm, respectively.
Popis v anglickém jazyce:
The net ecosystem exchange (NEE) of CO2 between the biosphere and the atmosphere is defined as the balance between fluxes associated with photosynthetic assimilation by the foliage and respiratory effluxes from autotrophic and heterotrophic processes. Canopy photosynthesis is predominantly controlled by the amount of absorbed solar radiation. In the presented poster we show that it is important to discriminate between the direct and diffuse components of incoming radiation. The investigated Norway spruce forest (20-year-old) is situated in the Beskydy Mts. (49°33´N, 18°32´E, NE of the Czech Republic) on the slope (11-16°) with SSW orientation on the area of 6.2 ha. The stand density is 2600 trees per hectare (hemi-surface leaf area index ca. 11 m2 m-2), mean (+- standard deviation) tree height and stem diameter at 1.3m are 8.5 +- 0.1 m and 10.1 +- 0.1 cm, respectively.
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