Integrating remote sensing and climate data with process-based models to map forest productivity within west-central Alberta's boreal forest: Ecoleap-West

被引:17
作者
Hall, RJ [1 ]
Raulier, F
Price, DT
Arsenault, E
Bernier, PY
Case, BS
Gu, X
机构
[1] Canadian Forest Serv, No Forestry Ctr, Edmonton, AB T6H 3S5, Canada
[2] Univ Laval, Fac Foresterie & Geomat, Ste Foy, PQ G1K 7P4, Canada
[3] Canadian Forest Serv, Laurentian Forestry Ctr, Ste Foy, PQ G1V 4C7, Canada
关键词
forest productivity; NPP; climate change; process-based model; StandLEAP; leaf area index; above-ground biomass;
D O I
10.5558/tfc82159-2
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
Forest yield forecasting typically employs statistically derived growth and yield (G&Y) functions that will yield biased growth estimates if changes in climate seriously influence future site conditions. Significant climate warming anticipated for the Prairie Provinces may result in increased moisture deficits, reductions in average site productivity and changes to natural species composition. Process-based stand growth models that respond realistically to simulated changes in climate can be used to assess the potential impacts of climate change on forest productivity, and hence can provide information for adapting forest management practices. We present an application of such a model, StandLEAP, to estimate stand-level net primary productivity (NPP) within a 2700 km(2) study region in western Alberta. StandLEAP requires satellite remote-sensing derived estimates of canopy light absorption or leaf area index, in addition to spatial data on climate, topography and sod physical characteristics. The model was applied to some 80 000 stand-level inventory polygons across the study region. The resulting estimates of NPP correlate well with timber productivity values based on stand-level site index (height in metres at 50 years). This agreement demonstrates the potential to make site-based G&Y estimates using process models and to further investigate possible effects of climate change on future timber supply.
引用
收藏
页码:159 / 176
页数:18
相关论文
共 96 条
  • [1] A GENERALIZED, LUMPED-PARAMETER MODEL OF PHOTOSYNTHESIS, EVAPOTRANSPIRATION AND NET PRIMARY PRODUCTION IN TEMPERATE AND BOREAL FOREST ECOSYSTEMS
    ABER, JD
    FEDERER, CA
    [J]. OECOLOGIA, 1992, 92 (04) : 463 - 474
  • [2] Predicting the effects of climate change on water yield and forest production in the northeastern United States
    Aber, JD
    Ollinger, SV
    Federer, CA
    Reich, PB
    Goulden, ML
    Kicklighter, DW
    Melillo, JM
    Lathrop, RG
    [J]. CLIMATE RESEARCH, 1995, 5 (03) : 207 - 222
  • [3] ACHUFF PL, 1992, NATURAL REGIONS SUBR
  • [4] *ALB ENV PROT, 1991, ALB VET INV STAND MA
  • [5] [Anonymous], 1995, A national ecological framework for Canada
  • [6] Avery T.E., 1994, FOREST MEASUREMENTS
  • [7] Barr AG, 2002, CAN J FOREST RES, V32, P813, DOI [10.1139/x01-131, 10.1139/X01-131]
  • [8] Linking ecophysiology and forest productivity:: An overview of the ECOLEAP project
    Bernier, PY
    Fournier, RA
    Ung, CH
    Robitaille, G
    Larocque, GR
    Lavigne, MB
    Boutin, R
    Raulier, F
    Paré, D
    Beaubien, J
    Delisle, C
    [J]. FORESTRY CHRONICLE, 1999, 75 (03) : 417 - 421
  • [9] Validation of a canopy gas exchange model and derivation of a soil water modifier for transpiration for sugar maple (Acer saccharum Marsh.) using sap flow density measurements
    Bernier, PY
    Bréda, N
    Granier, A
    Raulier, F
    Mathieu, F
    [J]. FOREST ECOLOGY AND MANAGEMENT, 2002, 163 (1-3) : 185 - 196
  • [10] Importance of needle age and shoot structure on canopy net photosynthesis of balsam fir (Abies balsamea):: a spatially inexplicit modeling analysis
    Bernier, PY
    Raulier, F
    Stenberg, P
    Ung, CH
    [J]. TREE PHYSIOLOGY, 2001, 21 (12-13) : 815 - 830