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Zastosowanie zdjęć hemisferycznych w badaniach ekosystemów leśnych

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Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
EN
Application of hemispherical photographs to research on forest ecosystems
Języki publikacji
PL
Abstrakty
EN
The main aim of the study is to discuss basic assumptions of taking hemispherical photographs in the context of their practical use in forest inventory. The work encompasses methodology of taking digital hemispherical photographs. Hemispherical photographs are most often taken for research on ecological conditions of plants. Usually the aim of such research is to obtain information on the amount of light which reaches selected height above the ground. It is important to observe a few rules in taking photographs (overcast, camera leveling, sensitivity, shutter speed, maximum resolution). The best equipment for this purpose is a digital reflex camera and fish-eye lens with the angle 180°. Another solution is a digital reflex camera smaller than 35 mm with suitable converter which together with lens will allow to obtain circular photo with retained angle of 180°. Gap Light Analyzer and WinSCANOPY are the most frequently used software packages for analysis of hemispherical photos. The following elements are expected to be determined as a result of analyses based on hemispherical photographs: absolute amount of light registered at measurement levels, crown density structure, spatial variability of stand foliage, leaf area index, general description of crowns (crowns deformation, viability of lateral shoots) the condition of assimilatory organs (number of annuals, crown light and decrement of assimilatory organs, distortion and discoloration of assimilatory organs) relationship between tree density and natural regeneration The following attempts will be undertaken with the use of hemispherical photos: to estimate biomass of assimilatory organs, to estimate density of photons flow in the process of photosynthesis under canopies and in gaps of stand, to register the infrared scope of radiation (in order to examine assimilation organs in stands), to prepare a photomap of canopies. The study encompasses a brief review of literature, a list of possible devices with basic software.
Czasopismo
Rocznik
Strony
93--112
Opis fizyczny
Bibliogr. 34 poz.
Twórcy
  • Zakład Urządzania Lasu, Katedra Urządzania Lasu, Wydział Leśny, Akademia Rolnicza w Poznaniu, strzelin@au.poznan.pl
Bibliografia
  • Becker P.F., Erhart D.W., Smith A.P., 1989: Analysis of forest light environments. I. Computerized estimation of solar radiation from hemispherical photographs. Agric For Meteorol 44: 217-232.
  • Cameron A.D., Ives J.D. 1997: Use of hemispherical photography techniques to determine the association between canopy openness and regeneration of Scots pine (Pinus sylvestris L.) and downy birch (Betula pubescens Ehrh.) in Ballochbuie native pinewood, North-east Scotland. Scot. For., Vol. 51 nr 3: 144-149.
  • Chan S.S., McCreight M.C., Walstad J.D., Spies T.A., 1986: Evaluating forest cover with computerized analysis of fisheye photographs. For Sci 32: 1085-1091.
  • Chen J.M., 1996: Optically-based methods for measuring seasonal variation of leaf area index in boreal conifer stands. Agricultural and Forest Meteorology 80: 135-163.
  • Diaci J., Thormann J.-J., Kolar U., 1999: Meritve sonĉnega sevanja v gozdu. II. Metode na osnovi i projekcij hemisfere neba in kroŝenj. Zb. Gozd. Les., T. 60: 177-210.
  • Dobbertin M., Hug Ch., Mizoue N., 2004: Using slides to test for changes in crown defoliation assessment methods. Part I: Visual assessment of slides. Environ. Monit. a. Assess., Vol. 98 nr 1/3: 295-306.
  • Easter M.J., Spies T.A., 1994: Using hemispherical photography for estimating photosynthetic photon flux density under canopies and in gaps in Douglas-fir forests of the Pacific Northwest. Can. J. For. Res., Vol. 24, 10: 2050-2058.
  • Englund S.R., O.Brien J.J., Clark D.B., 2000: Evaluation of digital and film hemispherical photography and spherical densiometry for measuring forest light environments. Can. J. For. Res. 30(12): 1999-2005.
  • Frazer G.W., Canham C.D., Lertzman K.P., 1999: Gap Light Analyzer (GLA), vers. 2.0: Imaging software to extract canopy structure and gap light transmission indices from true-colour fisheye photographs, users manual and program documentation. Burnaby, British Columbia: Simon Fraser Univ. and Millbrook, NY: Institute of Ecosystem Studies.
  • Gower S.T., Kucharik C.J., Norman J.M., 1999: Direct and indirect estimation of leaf area index, fAPAR, and net primary production of terrestrial ecosystems. Remote Sensing and Environment, 70: 29-51.
  • Hyer E.J., Goetz S.J., 2004: Comparison and sensitivity analysis of instruments and radiometric methods for LAI estimation: assessments from a boreal forest site. Agricultural and Forest Meteorology. Volume 122, Issues 3-4 , 20 April 2004, pp. 157-174.
  • Inoue A., Yamamoto K., Mizoue, N., Kawahara Y., 2002: Estimation of relative illuminance using digital hemispherical photography. Journal of Forest Planning 8: pp. 67-70.
  • Inoue A., Yamamoto K., Mizoue, N., Kawahara Y., 2004: Effects of image quality, size and camera type on forest light environment estimates using digital hemispherical photography. Agricultural and Forest Meteorology. Volume 126, Issues 1-2, 20 November 2004, pp. 89-97.
  • Johnson J.D., Zedaker S.M., Hairston A.B., 1985: Foliage, stem and root interrelations in young loblolly pine. Forest Science 31: 891-898.
  • Kopp H., Pryor D., Behling H., 2002: Digital Hemispherical Imaging System for the Analysis of Light Environments under Forest Canopies. Presentation N°. S5. University of Applied Sciences and Arts - Department of Electrical Engineering and Information Technology, Erfurt. http://www.colorlite.de/Solariscope.pdf
  • Kucharik C.J., Norman J.M., Gower S.T., 1998a: Measurements of branch area and adjusting leaf area index indirect measurements. Agricultural and Forest Meteorology, 91: 69-88.
  • Kucharik C.J., Norman J.M., Gower S.T., 1998b: Measurements of leaf orientation, light distribution and sunlit leaf area in a boreal aspen forest. Agricultural and Forest Meteorology, 91: 127-148.
  • Martens S.N., Ustin S.L., Rousseau R.A., 1993: Estimation of tree canopy leaf area index by gap fraction analysis. For. Ecol. Mgmt. 61: 91-108.
  • Megumi I., 2004: Automatic thresholding for digital hemispherical photography. Can. J. For. Res./Rev. Can. Rech. For. 34(11): 2208-2216.
  • Planchais I., Pontailler J.-Y., 1999: Validity of leaf areas and angles estimated in a beech forest from analysis of gap frequencies, using hemispherical photographs and a plant canopy analyzer. Ann. Sci. For., Vol. 56 nr 1: 1-10.
  • Robakowski P., 2003: Retrospektywna analiza przyrostów sadzonek jodły pospolitej (Abies alba Mill.) rosnących pod okapem różnych gatunków drzew w Karkonoskim Parku Narodowym. Sylwan 1: 41-50.
  • Robakowski P., Modrzyński J., Niemczyk M., Zwaduch P., 2000: Ażurowość i fotosyntetyczna gęstość strumienia fotonów w drzewostanach z odnowieniem jodły pospolitej (Abies alba Mill.). Opera Corcontica 36: 506-510.
  • Robakowski P., Wyka T., Samardakiewicz S., Kierzkowski D., 2004: Growth, photosynthesis, and needle structure of silver fir (Abies alba. Mill.) seedlings under different canopies. For. Ecol. a. Manage. 2004. Vol. 201, nr 2/3: 211-227.
  • Wagner S., 1994: Strahlungsschatzung in Waldern durch hemispharische Fotos. Ber. Forsch. Waldökosyst., Bd. 123: 1-169.
  • Walter J.M.N., Himmler C.G., 1996: Spatial heterogeneity of a Scots pine canopy: an assessment by hemispherical photographs. Can. J. For. Res., Vol. 26, nr 9: 1610-1619.
  • Wang Y.S., Miller D.R., Welles J.M., Heisler G.M., 1992: Spatial variability of canopy foliage in an oak forest estimated with fisheye sensors. For. Sci., Vol. 38, nr 4: 854-865.
  • http://dpfwiw.com/ir.htm
  • http://users.utu.fi/hlehto/photo/optics/ir20d.shtml
  • http://www.cocam.co.uk/CoCamWS/Infrared/INFRARED.HTM
  • http://www.dpreview.com/reviews/specs/Canon/canon_eos20da.asp
  • http://www.jr-worldwi.de/photo/intro.html
  • http://www.licor.com
  • http://www.lifepixel.com/IR.htm
  • http://www.lrgb.com/20d.html
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW8-0006-0011
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