Physically based modelling of spectral transmittance through forest canopies
John Wiley & Sons
2024
Methods_Ecol_Evol-2024-Hovi-Physically_based_modelling.pdf - Publisher's version - 7.19 MB
How to cite: Hovi, A., Janoutová, R., Malenovský, Z., Schraik, D., Gastellu-Etchegorry, J.-P., Lauret, N., Novotný, J., & Rautiainen, M. (2024). Physically based modelling of spectral transmittance through forest canopies. Methods in Ecology and Evolution, 15, 1859–1872. https://doi.org/10.1111/2041-210X.14402
Pysyvä osoite
Tiivistelmä
Physically based models simulating the spectral transmittance of solar radiation through forest canopies are useful tools for examining the connections between the shortwave radiation environment and the productivity and biodiversity of the forest floor. We report a comprehensive evaluation of two approaches simulating forest canopy spectral transmittance.The approaches were (i) three-dimensional radiative transfer modelling in canopies composed of individual trees filled with turbid media and (ii) photon recollision probability theory (p-theory), and were implemented using DART-FT and PARAS models, respectively. The simulations were evaluated against mean and standard deviation of canopy transmittance spectra measured under clear-sky conditions in forest plots across central and Northern Europe.In general, both models agreed well with the in situ measurements. They performed equally in conifer forests, while PARAS had a slightly lower accuracy than DART-FT in broadleaved forests.We conclude that both approaches produce realistic simulations of canopy spectral transmittance at the spatial scale tested in this study, and that p-theory constitutes a computationally efficient and easy-to-parameterize alternative to three-dimensional radiative transfer.
ISBN
OKM-julkaisutyyppi
A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä
Julkaisusarja
Methods in ecology and evolution
Volyymi
15
Numero
10
Sivut
Sivut
p. 1859-1872
ISSN
2041-210X
