427
and understanding changes in extremes: Extratropical storms, winds, and waves. Bulletin of the
American Meteorological Society, 95(3), 377–386.
Walthall, C. L., Hatfield, J., Backlund, P., Lengnick, L., Marshall, E., Walsh, M., Adkins, S., Aillery,
M., Ainsworth, E. A., Ammann, C., Anderson, C. J., Bartomeus, I., Baumgard, L. H., Booker,
F., Bradley, B., Blumenthal, D. M., Bunce, J., Burkey, K., Dabney, S. M., Delgado, J. A.,
Dukes, J., Funk, A., Garrett, K., Glenn, M., Grantz, D. A., Goodrich, D., Hu, S., Izaurralde,
R.C., Jones, R. A. C., Kim, S.-H., Leaky, A. D. B., Lewers, K., Mader, T. L., McClung, A.,
Morgan, J., Muth, D. J., Nearing, M., Oosterhuis, D. M., Ort, D., Parmesan, C., Pettigrew,
W. T., Polley, W., Rader, R., Rice, C., Rivington, M., Rosskopf, E., Salas, W. A., Sollenberger,
L. E., Srygley, R., Stöckle, C., Takle, E. S., Timlin, D., White, J. W., Winfree, R., WrightMorton, L., & Ziska, L. H. (2010). Climate change and agriculture in the United States: Effects
and adaptation (196pp). USDA, Technical Bulletin 1935.
Wei, J., Dirmeyer, P. A., Wisser, D., Bosilovich, M. G., & Mocko, D. M. (2013). Where does
the irrigation water go? An estimate of the contribution of irrigation to precipitation using
MERRA. Journal of Hydrometeorology, 14(1), 275–289.
Wuebbles, D. J., Meehl, G., Hayhoe, K., Karl, T. R., Kunkel, K., Santer, B., Wehner, M., Colle, B.,
Fischer, E. M., Fu, R., Goodman, A., Janssen, E., Kharin, V., Lee, H., Li, W., Long, L. N.,
Olsen, S., Seth, A., Sheffield, J., Tao, Z., & Sun, L. (2014). CMIP5 climate model analyses:
Climate extremes in the United States. Bulletin of the American. Meteorological Society.
https://doi.org/10.1175/BAMS-D-12-00172.1.
Integrated Assessment Models
Edmonds, J., & Reilly, J. (1983). A long-term global energy—Economic model of carbon dioxide release from fossil fuel use. Energy Economics, 5(2), 74–88. https://doi.org/10.1016/
0140-9883(83)90014-2.
Clarke, L., Jiang, K., Akimoto, K., Babiker, M., Blanford, G., Fisher-Vanden, K., Hourcade, J.-C.,
Krey, V., Kriegler, E., Löschel, A., McCollum, D., Paltsev, S., Paltsev, S., Rose, Shukla, P. R.,
Tavoni, M., van der Zwaan, B. C. C., & van Vuuren, D. P. (2014). Assessing transformation
pathways. In O. Edenhofer, R. Pichs-Madruga, Y. Sokona, E. Farahani, S. Kadner, K. Seyboth,
A. Adler, I. Baum, S. Brunner, P. Eickemeier, B. Kriemann, J. Savolainen, S. Schlömer, C. von
Stechow, T. Zwickel, & J. C. Minx (Eds.), Climate change 2014: Mitigation of climate change.
Contribution of Working Group III to the Fifth Assessment Report of the Intergovernmental
Panel on Climate Change. Cambridge, UK: Cambridge University Press.
Davies, E. G. R., Kyle, P., & Edmonds, J. A. (2013). An integrated assessment of global and
regional water demands for electricity generation to 2095. Advances in Water Resources, 52,
296–313. https://doi.org/10.1016/j.advwatres.2012.11.020.
Edmonds, J., & Reilly, J. (1983b). Global energy and CO2 to the year 2050. The Energy Journal,
21–47.
Kyle, P., Müller, C., Calvin, K., & Thomson, A. (2014). Meeting the radiative forcing targets of
the representative concentration pathways in a world with agricultural climate impacts. Earth’s
Future, 2(2), 83–98. https://doi.org/10.1002/2013EF000199.
Reilly, J., Stone, P. H., Forest, C. E., Webster, M. D., Jacoby, H. D., & Prinn, R. G. (2001).
Uncertainty and climate change assessments. Science, 293, 430–433.
Reilly, J., Paltsev, S., Strzepek, K., Selin, N. E., Cai, Y., Nam, K.-M., Monier, E., Dutkiewicz, S.,
Scott, J., Webster, M., & Sokolov, A. (2013). Valuing climate impacts in integrated assessment models: The MIT IGSM. Climatic Change, 117(3), 561–573. https://doi.org/10.1007/
s10584-012-0635-x.
Schlosser, C. A., Strzepek, K., Gao, X., Fant, C., Blanc, É., Paltsev, S., Jacoby, H., Reilly, J.,
& Gueneau, A. (2014). The future of global water stress: An integrated assessment. Earth’s
Future, 2(8), 341–361. https://doi.org/10.1002/2014EF000238.
15 Modeling
and understanding changes in extremes: Extratropical storms, winds, and waves. Bulletin of the
American Meteorological Society, 95(3), 377–386.
Walthall, C. L., Hatfield, J., Backlund, P., Lengnick, L., Marshall, E., Walsh, M., Adkins, S., Aillery,
M., Ainsworth, E. A., Ammann, C., Anderson, C. J., Bartomeus, I., Baumgard, L. H., Booker,
F., Bradley, B., Blumenthal, D. M., Bunce, J., Burkey, K., Dabney, S. M., Delgado, J. A.,
Dukes, J., Funk, A., Garrett, K., Glenn, M., Grantz, D. A., Goodrich, D., Hu, S., Izaurralde,
R.C., Jones, R. A. C., Kim, S.-H., Leaky, A. D. B., Lewers, K., Mader, T. L., McClung, A.,
Morgan, J., Muth, D. J., Nearing, M., Oosterhuis, D. M., Ort, D., Parmesan, C., Pettigrew,
W. T., Polley, W., Rader, R., Rice, C., Rivington, M., Rosskopf, E., Salas, W. A., Sollenberger,
L. E., Srygley, R., Stöckle, C., Takle, E. S., Timlin, D., White, J. W., Winfree, R., WrightMorton, L., & Ziska, L. H. (2010). Climate change and agriculture in the United States: Effects
and adaptation (196pp). USDA, Technical Bulletin 1935.
Wei, J., Dirmeyer, P. A., Wisser, D., Bosilovich, M. G., & Mocko, D. M. (2013). Where does
the irrigation water go? An estimate of the contribution of irrigation to precipitation using
MERRA. Journal of Hydrometeorology, 14(1), 275–289.
Wuebbles, D. J., Meehl, G., Hayhoe, K., Karl, T. R., Kunkel, K., Santer, B., Wehner, M., Colle, B.,
Fischer, E. M., Fu, R., Goodman, A., Janssen, E., Kharin, V., Lee, H., Li, W., Long, L. N.,
Olsen, S., Seth, A., Sheffield, J., Tao, Z., & Sun, L. (2014). CMIP5 climate model analyses:
Climate extremes in the United States. Bulletin of the American. Meteorological Society.
https://doi.org/10.1175/BAMS-D-12-00172.1.
Integrated Assessment Models
Edmonds, J., & Reilly, J. (1983). A long-term global energy—Economic model of carbon dioxide release from fossil fuel use. Energy Economics, 5(2), 74–88. https://doi.org/10.1016/
0140-9883(83)90014-2.
Clarke, L., Jiang, K., Akimoto, K., Babiker, M., Blanford, G., Fisher-Vanden, K., Hourcade, J.-C.,
Krey, V., Kriegler, E., Löschel, A., McCollum, D., Paltsev, S., Paltsev, S., Rose, Shukla, P. R.,
Tavoni, M., van der Zwaan, B. C. C., & van Vuuren, D. P. (2014). Assessing transformation
pathways. In O. Edenhofer, R. Pichs-Madruga, Y. Sokona, E. Farahani, S. Kadner, K. Seyboth,
A. Adler, I. Baum, S. Brunner, P. Eickemeier, B. Kriemann, J. Savolainen, S. Schlömer, C. von
Stechow, T. Zwickel, & J. C. Minx (Eds.), Climate change 2014: Mitigation of climate change.
Contribution of Working Group III to the Fifth Assessment Report of the Intergovernmental
Panel on Climate Change. Cambridge, UK: Cambridge University Press.
Davies, E. G. R., Kyle, P., & Edmonds, J. A. (2013). An integrated assessment of global and
regional water demands for electricity generation to 2095. Advances in Water Resources, 52,
296–313. https://doi.org/10.1016/j.advwatres.2012.11.020.
Edmonds, J., & Reilly, J. (1983b). Global energy and CO2 to the year 2050. The Energy Journal,
21–47.
Kyle, P., Müller, C., Calvin, K., & Thomson, A. (2014). Meeting the radiative forcing targets of
the representative concentration pathways in a world with agricultural climate impacts. Earth’s
Future, 2(2), 83–98. https://doi.org/10.1002/2013EF000199.
Reilly, J., Stone, P. H., Forest, C. E., Webster, M. D., Jacoby, H. D., & Prinn, R. G. (2001).
Uncertainty and climate change assessments. Science, 293, 430–433.
Reilly, J., Paltsev, S., Strzepek, K., Selin, N. E., Cai, Y., Nam, K.-M., Monier, E., Dutkiewicz, S.,
Scott, J., Webster, M., & Sokolov, A. (2013). Valuing climate impacts in integrated assessment models: The MIT IGSM. Climatic Change, 117(3), 561–573. https://doi.org/10.1007/
s10584-012-0635-x.
Schlosser, C. A., Strzepek, K., Gao, X., Fant, C., Blanc, É., Paltsev, S., Jacoby, H., Reilly, J.,
& Gueneau, A. (2014). The future of global water stress: An integrated assessment. Earth’s
Future, 2(8), 341–361. https://doi.org/10.1002/2014EF000238.
15 Modeling
