Representing the function and sensitivity of coastal interfaces in earth system models

dc.contributor.author Ward, Nicholas D.
dc.contributor.author Megonigal, J. Patrick
dc.contributor.author Bond-Lamberty, Benjamin
dc.contributor.author Bailey, Vanessa L.
dc.contributor.author Butman, David
dc.contributor.author Canuel, Elizabeth A.
dc.contributor.author Diefenderfer, Heida
dc.contributor.author Ganju, Neil K.
dc.contributor.author Goni, Miguel
dc.contributor.author Graham, Emily B.
dc.contributor.author Hopkinson, Charles S.
dc.contributor.author Khangaonkar, Tarang
dc.contributor.author Langley, J. Adam
dc.contributor.author McDowell, Nate G.
dc.contributor.author Myers-Pigg, Allison N.
dc.contributor.author Neumann, Rebecca B.
dc.contributor.author Osburn, Christopher L.
dc.contributor.author Price, René M.
dc.contributor.author Rowland, Joel
dc.contributor.author Sengupta, Aditi
dc.contributor.author Simard, Marc
dc.contributor.author Thornton, Peter E.
dc.contributor.author Tzortziou, Maria
dc.contributor.author Vargas, Rodrigo
dc.contributor.author Weisenhorn, Pamela B.
dc.contributor.author Windham-Myers, Lisamarie
dc.date.accessioned 2020-06-12T16:06:32Z
dc.date.available 2020-06-12T16:06:32Z
dc.date.issued 2020-05-18
dc.description © The Author(s), 2020. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Ward, N. D., Megonigal, J. P., Bond-Lamberty, B., Bailey, V. L., Butman, D., Canuel, E. A., Diefenderfer, H., Ganju, N. K., Goni, M. A., Graham, E. B., Hopkinson, C. S., Khangaonkar, T., Langley, J. A., McDowell, N. G., Myers-Pigg, A. N., Neumann, R. B., Osburn, C. L., Price, R. M., Rowland, J., Sengupta, A., Simard, M., Thornton, P. E., Tzortziou, M., Vargas, R., Weisenhorn, P. B., & Windham-Myers, L. Representing the function and sensitivity of coastal interfaces in earth system models. Nature Communications, 11(1), (2020): 2458, doi:10.1038/s41467-020-16236-2. en_US
dc.description.abstract Between the land and ocean, diverse coastal ecosystems transform, store, and transport material. Across these interfaces, the dynamic exchange of energy and matter is driven by hydrological and hydrodynamic processes such as river and groundwater discharge, tides, waves, and storms. These dynamics regulate ecosystem functions and Earth’s climate, yet global models lack representation of coastal processes and related feedbacks, impeding their predictions of coastal and global responses to change. Here, we assess existing coastal monitoring networks and regional models, existing challenges in these efforts, and recommend a path towards development of global models that more robustly reflect the coastal interface. en_US
dc.description.sponsorship Funding for this work was provided by Pacific Northwest National Laboratory (PNNL) Laboratory Directed Research & Development (LDRD) as part of the Predicting Ecosystem Resilience through Multiscale Integrative Science (PREMIS) Initiative. PNNL is operated by Battelle for the U.S. Department of Energy under Contract DE-AC05-76RL01830. Additional support to J.P.M. was provided by the NSF-LTREB program (DEB-0950080, DEB-1457100, DEB-1557009), DOE-TES Program (DE-SC0008339), and the Smithsonian Institution. This manuscript was motivated by discussions held by co-authors during a three-day workshop at PNNL in Richland, WA: The System for Terrestrial Aquatic Research (STAR) Workshop: Terrestrial-Aquatic Research in Coastal Systems. The authors thank PNNL artist Nathan Johnson for preparing the figures in this manuscript and Terry Clark, Dr. Charlette Geffen, and Dr. Nancy Hess for their aid in organizing the STAR workshop. The authors thank all workshop participants not listed as authors for their valuable insight: Lihini Aluwihare (contributed to biogeochemistry discussions and development of concept for Fig. 3), Gautam Bisht (contributed to modeling discussion), Emmett Duffy (contributed to observational network discussions), Yilin Fang (contributed to modeling discussion), Jeremy Jones (contributed to biogeochemistry discussions), Roser Matamala (contributed to biogeochemistry discussions), James Morris (contributed to biogeochemistry discussions), Robert Twilley (contributed to biogeochemistry discussions), and Jesse Vance (contributed to observational network discussions). A full report on the workshop discussions can be found at https://www.pnnl.gov/publications/star-workshop-terrestrial-aquatic-research-coastal-systems. en_US
dc.identifier.citation Ward, N. D., Megonigal, J. P., Bond-Lamberty, B., Bailey, V. L., Butman, D., Canuel, E. A., Diefenderfer, H., Ganju, N. K., Goni, M. A., Graham, E. B., Hopkinson, C. S., Khangaonkar, T., Langley, J. A., McDowell, N. G., Myers-Pigg, A. N., Neumann, R. B., Osburn, C. L., Price, R. M., Rowland, J., Sengupta, A., Simard, M., Thornton, P. E., Tzortziou, M., Vargas, R., Weisenhorn, P. B., & Windham-Myers, L. (2020). Representing the function and sensitivity of coastal interfaces in earth system models. Nature Communications, 11(1), 2458. en_US
dc.identifier.doi 10.1038/s41467-020-16236-2
dc.identifier.uri https://hdl.handle.net/1912/25851
dc.publisher Nature Research en_US
dc.relation.uri https://doi.org/10.1038/s41467-020-16236-2
dc.rights Attribution 4.0 International *
dc.rights.uri http://creativecommons.org/licenses/by/4.0/ *
dc.title Representing the function and sensitivity of coastal interfaces in earth system models en_US
dc.type Article en_US
dspace.entity.type Publication
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