US-A03: ARM-AMF3-Oliktok
Tower_team: | |
PI: | Ryan Sullivan [email protected] - Argonne National Laboratory |
FluxContact: | Dave Billesbach [email protected] - University of Nebraska |
DataManager: | Sebastien Biraud [email protected] - Lawrence Berkeley National Laboratory |
Lat, Long: | 70.4953, -149.8823 |
Elevation(m): | 5 |
Network Affiliations: | AmeriFlux |
Vegetation IGBP: | BSV (Barren Sparse Vegetation: Lands exposed soil, sand, or rocks and has less than 10% vegetative cover during any time of the year.) |
Climate Koeppen: | ET (Tundra) |
Mean Annual Temp (°C): | -11.2 |
Mean Annual Precip. (mm): | 115.1 |
Years Data Collected: | 2014 - Present |
Years Data Available: | FLUXNET-CH4 2015 - 2018 Data Citation |
Description: | This site is located at ARM AMF3 site near Point Oliktok, AK |
URL: | — |
Research Topics: | Greenhouse Gas fluxes, energy balance and partitioning |
Acknowledgment: | This site is supported by the U.S. Dept. of Energy's Office of Biological and Environmental Research ARM program. |
US-A03: ARM-AMF3-Oliktok
Use the information below for citation of this site. See the Data Policy page for more details.
DOI(s) for citing US-A03 data
Data Use Policy:
- FLUXNET-CH4: CC-BY-4.0 License
This site’s data can also be used under the more restrictive Tier 2 policy.
The Tier 2 Policy must be followed if US-A03 data are combined with data from sites that require the Tier 2 Policy.
- FLUXNET-CH4: https://doi.org/10.18140/FLX/1669661
Publication(s) for citing site characterization
- Bao, T., Xu, X., Jia, G., Billesbach, D. P., Sullivan, R. C. (2020) Much Stronger Tundra Methane Emissions During Autumn Freeze Than Spring Thaw, Global Change Biology, (), . https://doi.org/10.1111/GCB.15421
- Bao, T., Xu, X., Jia, G., Billesbach, D. P., Sullivan, R. C. (2020) Much Stronger Tundra Methane Emissions During Autumn Freeze Than Spring Thaw, Global Change Biology, 13(1), . https://doi.org/10.1111/GCB.15421
- 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(), 108350. https://doi.org/10.1016/J.AGRFORMET.2021.108350
- Oehri, J., Schaepman-Strub, G., Kim, J., Grysko, R., Kropp, H., Grünberg, I., Zemlianskii, V., Sonnentag, O., Euskirchen, E. S., Reji Chacko, M., Muscari, G., Blanken, P. D., Dean, J. F., di Sarra, A., Harding, R. J., Sobota, I., Kutzbach, L., Plekhanova, E., Riihelä, A., Boike, J., Miller, N. B., Beringer, J., López-Blanco, E., Stoy, P. C., Sullivan, R. C., Kejna, M., Parmentier, F. W., Gamon, J. A., Mastepanov, M., Wille, C., Jackowicz-Korczynski, M., Karger, D. N., Quinton, W. L., Putkonen, J., van As, D., Christensen, T. R., Hakuba, M. Z., Stone, R. S., Metzger, S., Vandecrux, B., Frost, G. V., Wild, M., Hansen, B., Meloni, D., Domine, F., te Beest, M., Sachs, T., Kalhori, A., Rocha, A. V., Williamson, S. N., Morris, S., Atchley, A. L., Essery, R., Runkle, B. R., Holl, D., Riihimaki, L. D., Iwata, H., Schuur, E. A., Cox, C. J., Grachev, A. A., McFadden, J. P., Fausto, R. S., Göckede, M., Ueyama, M., Pirk, N., de Boer, G., Bret-Harte, M. S., Leppäranta, M., Steffen, K., Friborg, T., Ohmura, A., Edgar, C. W., Olofsson, J., Chambers, S. D. (2022) Vegetation Type Is An Important Predictor Of The Arctic Summer Land Surface Energy Budget, Nature Communications, 13(1), . https://doi.org/10.1038/S41467-022-34049-3
Acknowledgments
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US-A03: ARM-AMF3-Oliktok
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