The Need for an Integrated Land-Lake-Atmosphere Modeling System, Exemplified by North America's Great Lakes Region

Author:

Sharma A.12ORCID,Hamlet A. F.2ORCID,Fernando H. J. S.2ORCID,Catlett C. E.34,Horton D. E.5ORCID,Kotamarthi V. R.6ORCID,Kristovich D. A. R.7,Packman A. I.8ORCID,Tank J. L.9ORCID,Wuebbles D. J.10ORCID

Affiliation:

1. Environmental Change Initiative; University of Notre Dame; Notre Dame IN USA

2. Department of Civil and Environmental Engineering and Earth Sciences; University of Notre Dame; Notre Dame IN USA

3. Mathematics and Computer Science; Argonne National Laboratory; Lemont IL USA

4. Mansueto Institute for Urban Innovation; University of Chicago; Chicago IL USA

5. Department of Earth and Planetary Sciences; Northwestern University; Evanston IL USA

6. Division of Environmental Sciences; Argonne National Laboratory; Lemont IL USA

7. Illinois State Water Survey/Prairie Research Institute; University of Illinois; Urbana IL USA

8. Civil and Environmental Engineering; Northwestern University; Evanston IL USA

9. Department of Biological Sciences; University of Notre Dame; Notre Dame IN USA

10. Department of Atmospheric Sciences; University of Illinois at Urbana-Champaign; Champaign IL USA

Publisher

American Geophysical Union (AGU)

Subject

Earth and Planetary Sciences (miscellaneous),General Environmental Science

Reference127 articles.

1. BioEarth: Envisioning and developing a new regional earth system model to inform natural and agricultural resource management;Adam;Climatic Change,2015

2. Allen , M. R. Barros , V. R. Broome , J. Cramer , W. Christ , R. Church , J. A. 2014 IPCC fifth assessment synthesis report-climate change 2014 synthesis report http://www.ipcc.ch/pdf/assessment-report/ar5/syr/SYR_AR5_LONGERREPORT.pdf

3. The ecological history of Lake Erie as recorded by the phytoplankton community;Allinger;Journal of Great Lakes Research,2013

4. Predicting the oscillating bi-directional exchange flow in the straits of Mackinac;Anderson;Journal of Great Lakes Research,2013

5. Real-time hydraulic and hydrodynamic model of the St. Clair River, Lake St. Clair, Detroit River system;Anderson;Journal of Hydraulic Engineering,2010

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