Publications

Publications Found: 1437

Evaluating A Lagrangian Inverse Model For Inferring Isotope Co2 Exchange In Plant Canopies
Santos, M., Santos, E., Wagner-Riddle, C., Brown, S., Stropes, K., Staebler, R., Nippert, J.


Journal: Agricultural And Forest Meteorology, Volume 276-277: 107651 (2019). DOI: 10.1016/j.agrformet.2019.107651 Sites:

Gap‐Filling Approaches For Eddy Covariance Methane Fluxes: A Comparison Of Three Machine Learning Algorithms And A Traditional Method With Principal Component Analysis
Kim, Y., Johnson, M. S., Knox, S. H., Black, T. A., Dalmagro, H. J., Kang, M., Kim, J., Baldocchi, D.

Methane flux (FCH4) measurements using the eddy covariance technique have increased over the past decade. FCH4 measurements commonly include data gaps, as is the case with CO2 and energy fluxes. However, gap‐filling FCH4 data are more challenging than other fluxes due to its unique characteristics including multidriver dependency, …


Journal: Global Change Biology, Volume : (2019). DOI: 10.1111/gcb.14845 Sites: BR-Npw

Precipitation Mediates Sap Flux Sensitivity To Evaporative Demand In The Neotropics
Grossiord, C., Christoffersen, B., Alonso-Rodríguez, A. M., Anderson-Teixeira, K., Asbjornsen, H., Aparecido, L. M., Carter Berry, Z., Baraloto, C., Bonal, D., Borrego, I., Burban, B., Chambers, J. Q., Christianson, D. S., Detto, M., Faybishenko, B., Fontes, C. G., Fortunel, C., Gimenez, B. O., Jardine, K. J., Kueppers, L., Miller, G. R., Moore, G. W., Negron-Juarez, R., Stahl, C., Swenson, N. G., Trotsiuk, V., Varadharajan, C., Warren, J. M., Wolfe, B. T., Wei, L., Wood, T. E., Xu, C., McDowell, N. G.

Transpiration in humid tropical forests modulates the global water cycle and is a key driver of climate regulation. Yet, our understanding of how tropical trees regulate sap flux in response to climate variability remains elusive. With a progressively warming climate, atmospheric evaporative demand [i.e., vapor pressure deficit (VPD)] …


Journal: Oecologia, Volume 191 (3): 519-530 (2019). DOI: 10.1007/s00442-019-04513-x Sites: CR-SoC

Thermal Imaging In Plant And Ecosystem Ecology: Applications And Challenges
Still, C., Powell, R., Aubrecht, D., Kim, Y., Helliker, B., Roberts, D., Richardson, A. D., Goulden, M.

Temperature is a primary environmental control on ecological systems and processes at a range of spatial and temporal scales. The surface temperature of organisms is often more relevant for ecological processes than air temperature, which is much more commonly measured. Surface temperature influences—and is influenced by—a range …


Journal: Ecosphere, Volume 10 (6): (2019). DOI: https://doi.org/10.1002/ecs2.2768 Sites: US-Me2, US-Wrc

From NEON field sites to data portal: a community resource for surface–atmosphere research comes online
Metzger, S., Ayres, E., Durden, D., Florian, C., Lee, R., Lunch, C., Luo, H., Pingintha-Durden, N., Roberti, J. A., SanClements, M., Sturtevant, C., Xu, K., Zulueta, R. C.

AbstractThe National Ecological Observatory Network (NEON) is a multidecadal and continental-scale observatory with sites across the United States. Having entered its operational phase in 2018, NEON data products, software, and services become available to facilitate research on the impacts of climate change, land-use change, and …


Journal: Bulletin Of The American Meteorological Society, Volume 100 (11): 2305-2325 (2019). DOI: doi:10.1175/bams-d-17-0307.1 Sites: PR-xGU, PR-xLA, US-xAB, US-xAE, US-xBA, US-xBL, US-xBN, US-xBR, US-xCL, US-xCP, US-xDC, US-xDJ, US-xDL, US-xDS, US-xGR, US-xHA, US-xHE, US-xJE, US-xJR, US-xKA, US-xKZ, US-xLE, US-xMB, US-xML, US-xNG, US-xNQ, US-xNW, US-xPU, US-xRM, US-xRN, US-xSB, US-xSC, US-xSE, US-xSJ, US-xSL, US-xSP, US-xSR, US-xST, US-xTA, US-xTE, US-xTL, US-xTR, US-xUK, US-xUN, US-xWD, US-xWR, US-xYE

Reviews And Syntheses: Turning The Challenges Of Partitioning Ecosystem Evaporation And Transpiration Into Opportunities
Stoy, P. C., El-Madany, T. S., Fisher, J. B., Gentine, P., Gerken, T., Good, S. P., Klosterhalfen, A., Liu, S., Miralles, D. G., Perez-Priego, O., Rigden, A. J., Skaggs, T. H., Wohlfahrt, G., Anderson, R. G., Coenders-Gerrits, A. M., Jung, M., Maes, W. H., Mammarella, I., Mauder, M., Migliavacca, M., Nelson, J. A., Poyatos, R., Reichstein, M., Scott, R. L., Wolf, S.

Evaporation (E) and transpiration (T) respond differently to ongoing changes in climate, atmospheric composition, and land use. It is difficult to partition ecosystem-scale evapotranspiration (ET) measurements into E and T, which makes it difficult to validate satellite data and land surface models. Here, we review current progress …


Journal: Biogeosciences, Volume 16 (19): 3747-3775 (2019). DOI: 10.5194/bg-16-3747-2019 Sites: US-Mj1, US-MSR

Estimating Actual Evapotranspiration From Stony-Soils In Montane Ecosystems
Parajuli, K., Jones, S. B., Tarboton, D. G., Flerchinger, G. N., Hipps, L. E., Allen, L. N., Seyfried, M. S.


Journal: Agricultural And Forest Meteorology, Volume 265: 183-194 (2019). DOI: 10.1016/j.agrformet.2018.11.019 Sites: US-Rls

Recovering Evapotranspiration Trends From Biased CMIP5 Simulations And Sensitivity To Changing Climate Over North America
Sullivan, R. C., Kotamarthi, V. R., Feng, Y.

Future projections of evapotranspiration (ET) are of critical importance for agricultural and freshwater management and for predicting land–atmosphere feedbacks on the climate system. However, ET from phase 5 of the Coupled Model Intercomparison Project (CMIP5) simulations exhibits substantial biases, bolstering little confidence …


Journal: Journal Of Hydrometeorology, Volume 20 (8): 1619-1633 (2019). DOI: 10.1175/JHM-D-18-0259.1 Sites: US-AR1, US-AR2, US-ARM, US-Blo, US-Cop, US-GLE, US-Ha1, US-Los, US-Me2, US-Me6, US-MMS, US-Myb, US-Ne1, US-Ne2, US-Ne3, US-NR1, US-ORv, US-PFa, US-SRG, US-SRM, US-Syv, US-Ton, US-Tw1, US-Tw2, US-Tw3, US-Tw4, US-Twt, US-UMB, US-UMd, US-Var, US-WCr, US-Whs, US-Wkg

Experimental Influence Of Storm-Surge Salinity On Soil Greenhouse Gas Emissions From A Tidal Salt Marsh
Capooci, M., Barba, J., Seyfferth, A. L., Vargas, R.

Storm surges can substantially alter the water level and salinity in tidal salt marshes. Little is known about how changes experienced during storm surges affect greenhouse gas emissions (GHG; CO2, CH4, N2O) from tidal salt marsh soils. Understanding how storm surges influence ecosystem processes is critical for evaluating the ecosystem’s …


Journal: Science Of The Total Environment, Volume 686: 1164-1172 (2019). DOI: 10.1016/j.scitotenv.2019.06.032 Sites: US-StJ

Fluxnet-Ch4 Synthesis Activity: Objectives, Observations, And Future Directions
Knox, S. H., Jackson, R. B., Poulter, B., McNicol, G., Fluet-Chouinard, E., Zhang, Z., Hugelius, G., Bousquet, P., Canadell, J. G., Saunois, M., Papale, D., Chu, H., Keenan, T. F., Baldocchi, D., Torn, M. S., Mammarella, I., Trotta, C., Aurela, M., Bohrer, G., Campbell, D. I., Cescatti, A., Chamberlain, S., Chen, J., Chen, W., Dengel, S., Desai, A. R., Euskirchen, E., Friborg, T., Gasbarra, D., Goded, I., Goeckede, M., Heimann, M., Helbig, M., Hirano, T., Hollinger, D. Y., Iwata, H., Kang, M., Klatt, J., Krauss, K. W., Kutzbach, L., Lohila, A., Mitra, B., Morin, T. H., Nilsson, M. B., Niu, S., Noormets, A., Oechel, W. C., Peichl, M., Peltola, O., Reba, M. L., Richardson, A. D., Runkle, B. R., Ryu, Y., Sachs, T., Schäfer, K. V., Schmid, H. P., Shurpali, N., Sonnentag, O., Tang, A. C., Ueyama, M., Vargas, R., Vesala, T., Ward, E. J., Windham-Myers, L., Wohlfahrt, G., Zona, D.


Journal: Bulletin Of The American Meteorological Society, Volume : (2019). DOI: 10.1175/BAMS-D-18-0268.1 Sites: US-Los, US-PFa