CA-NS5: UCI-1981 burn site

Tower_team:
PI: Mike Goulden [email protected] - University of California - Irvine
Lat, Long: 55.8631, -98.4850
Elevation(m): 260
Network Affiliations: AmeriFlux
Vegetation IGBP: ENF (Evergreen Needleleaf Forests: Lands dominated by woody vegetation with a percent cover >60% and height exceeding 2 meters. Almost all trees remain green all year. Canopy is never without green foliage.)
Climate Koeppen: Dfc (Subarctic: severe winter, no dry season, cool summer)
Mean Annual Temp (°C): -2.86
Mean Annual Precip. (mm): 500.34
Years Data Collected: 2001 - 2005
Years Data Available:

FLUXNET2015 2001 - 2005   Data Citation

Description:
The UCI-1981 site is located in a continental boreal forest, dominated by black spruce trees, within the BOREAS northern study area in central Manitoba, ...
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URL: http://www.ess.uci.edu/~boreal_canada/B1981_Page.html
Research Topics:
The research objectives and goals are as follows (in no particular order): 1) Determine how rapidly midday net CO2 exchange recovers following catastrophic ...
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Acknowledgment:

CA-NS5: UCI-1981 burn site

Use the information below for citation of this site. See the Data Policy page for more details.

DOI(s) for citing CA-NS5 data

Data Use Policy:

This site’s data can also be used under the more restrictive Tier 2 policy.
The Tier 2 Policy must be followed if CA-NS5 data are combined with data from sites that require the Tier 2 Policy.

Publication(s) for citing site characterization

  • Baldocchi, D., Penuelas, J. (2018) The Physics And Ecology Of Mining Carbon Dioxide From The Atmosphere By Ecosystems, Global Change Biology, 45(11), 9275–9287. https://doi.org/10.1111/GCB.14559
  • Baldocchi, D., Penuelas, J. (2018) The Physics And Ecology Of Mining Carbon Dioxide From The Atmosphere By Ecosystems, Global Change Biology, 45(2), 9275–9287. https://doi.org/10.1111/GCB.14559
  • Bond-Lamberty, B., Wang, C., Gower, S. T. (2004) Net Primary Production And Net Ecosystem Production Of A Boreal Black Spruce Wildfire Chronosequence, Global Change Biology, 10(4), 473-487. https://doi.org/10.1111/J.1529-8817.2003.0742.X
  • Bond-Lamberty, B., Wang, C., Gower, S. T. (2005) Spatiotemporal Measurement And Modeling Of Stand-Level Boreal Forest Soil Temperatures, Agricultural And Forest Meteorology, 131(1-2), 27-40. https://doi.org/10.1016/J.AGRFORMET.2005.04.008
  • Chu, H., Baldocchi, D. D., Poindexter, C., Abraha, M., Desai, A. R., Bohrer, G., Arain, M. A., Griffis, T., Blanken, P. D., O'Halloran, T. L., Thomas, R. Q., Zhang, Q., Burns, S. P., Frank, J. M., Christian, D., Brown, S., Black, T. A., Gough, C. M., Law, B. E., Lee, X., Chen, J., Reed, D. E., Massman, W. J., Clark, K., Hatfield, J., Prueger, J., Bracho, R., Baker, J. M., Martin, T. A. (2018) Temporal Dynamics Of Aerodynamic Canopy Height Derived From Eddy Covariance Momentum Flux Data Across North American Flux Networks, Geophysical Research Letters, 45(11), 9275–9287. https://doi.org/10.1029/2018GL079306
  • Chu, H., Baldocchi, D. D., Poindexter, C., Abraha, M., Desai, A. R., Bohrer, G., Arain, M. A., Griffis, T., Blanken, P. D., O'Halloran, T. L., Thomas, R. Q., Zhang, Q., Burns, S. P., Frank, J. M., Christian, D., Brown, S., Black, T. A., Gough, C. M., Law, B. E., Lee, X., Chen, J., Reed, D. E., Massman, W. J., Clark, K., Hatfield, J., Prueger, J., Bracho, R., Baker, J. M., Martin, T. A. (2018) Temporal Dynamics Of Aerodynamic Canopy Height Derived From Eddy Covariance Momentum Flux Data Across North American Flux Networks, Geophysical Research Letters, 45(2), 9275–9287. https://doi.org/10.1029/2018GL079306
  • Chu, H., Luo, X., Ouyang, Z., Chan, W. S., Dengel, S., Biraud, S. C., Torn, M. S., Metzger, S., Kumar, J., Arain, M. A., Arkebauer, T. J., Baldocchi, D., Bernacchi, C., Billesbach, D., Black, T. A., Blanken, P. D., Bohrer, G., Bracho, R., Brown, S., Brunsell, N. A., Chen, J., Chen, X., Clark, K., Desai, A. R., Duman, T., Durden, D., Fares, S., Forbrich, I., Gamon, J. A., Gough, C. M., Griffis, T., Helbig, M., Hollinger, D., Humphreys, E., Ikawa, H., Iwata, H., Ju, Y., Knowles, J. F., Knox, S. H., Kobayashi, H., Kolb, T., Law, B., Lee, X., Litvak, M., Liu, H., Munger, J. W., Noormets, A., Novick, K., Oberbauer, S. F., Oechel, W., Oikawa, P., Papuga, S. A., Pendall, E., Prajapati, P., Prueger, J., Quinton, W. L., Richardson, A. D., Russell, E. S., Scott, R. L., Starr, G., Staebler, R., Stoy, P. C., Stuart-Haëntjens, E., Sonnentag, O., Sullivan, R. C., Suyker, A., Ueyama, M., Vargas, R., Wood, J. D., Zona, D. (2021) Representativeness Of Eddy-Covariance Flux Footprints For Areas Surrounding Ameriflux Sites, Agricultural And Forest Meteorology, 301-302(11), 108350. https://doi.org/10.1016/J.AGRFORMET.2021.108350
  • Dennis Baldocchi, Cove Sturtevant (2015) Does day and night sampling reduce spurious correlation between canopy photosynthesis and ecosystem respiration?, Agricultural and Forest Meteorology, 207(11), 117-126. https://doi.org/10.1016/J.AGRFORMET.2015.03.010
  • Goulden, M. L., Winston, G. C., McMillan, A. M., Litvak, M. E., Read, E. L., Rocha, A. V., Rob Elliot, J. (2006) An Eddy Covariance Mesonet To Measure The Effect Of Forest Age On Land-Atmosphere Exchange, Global Change Biology, 12(11), 2146-2162. https://doi.org/10.1111/J.1365-2486.2006.01251.X
  • Hirsch, A. I., Trumbore, S. E., Goulden, M. L. (2004) The Surface CO2 Gradient And Pore-Space Storage Flux In A High-Porosity Litter Layer, Tellus Series B-Chemical and Physical Meteorology, 56(4), 312-321. https://doi.org/10.1111/J.1600-0889.2004.00113.X
  • Wang, C., Bond-Lamberty, B., Gower, S. (2002) Environmental Controls On Carbon Dioxide Flux From Black Spruce Coarse Woody Debris, Oecologia, 132(3), 374-381. https://doi.org/10.1007/S00442-002-0987-4
  • Wang, C., Bond-Lamberty, B., Gower, S. T. (2003) Carbon Distribution Of A Well- And Poorly-Drained Black Spruce Fire Chronosequence, Global Change Biology, 9(7), 1066-1079. https://doi.org/10.1046/J.1365-2486.2003.00645.X
  • Xu, B., Arain, M. A., Black, T. A., Law, B. E., Pastorello, G. Z., Chu, H. (2020) Seasonal Variability Of Forest Sensitivity To Heat And Drought Stresses: A Synthesis Based On Carbon Fluxes From North American Forest Ecosystems, Global Change Biology, 26(2), 901-918. https://doi.org/10.1111/GCB.14843

Acknowledgments

CA-NS5: UCI-1981 burn site

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