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16 publications published in 2014

Agreed but not preferred: Expert views on taboo options for biodiversity conservation, given climate change

Hagerman, S.M., Satterfield, T.  2014. Agreed but not preferred: Expert views on taboo options for biodiversity conservation, given climate change. Ecological Applications 24(3): 548-559.

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Climate and very large wildland fires in the contiguous western USA

Stavros, E.N., Abatzoglou, J., Larkin, N., McKenzie, D., Steel, E.A. 2014. Climate and very large wildland fires in the contiguous western USA. International Journal of Wildland Fire 23(7): 899-914, http://dx.doi.org/10.1071/WF13169.

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Climate Change and United States Forests

Peterson, D.L., Vose, J.M., Patel-Weynand, T.  2014. Climate Change and United States Forests. Published by Springer, Dordrecht, The Netherlands. 261 p.

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Climate change and wind intensification in coastal upwelling ecosystems

Syndeman, W.J., García-Reyes, M., Schoelam, D.S., Rykaczewski, R.R., Thompson, S.A., Black, B.A., Bograd, S.J. 2014. Climate change and wind intensification in coastal upwelling ecosystems. Science 4 July 2014: 345 (6192), 77-80. DOI:10.1126/science.1251635

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Climate change vulnerability and adaptation in the North Cascades region, Washington

Raymond, C.L., Peterson, D.L., Rochefort, R.M. 2014. Climate Change Vulnerability and Adaptation in the North Cascades Region, Washington. General Technical Report, PNW-GTR-892. Portland, OR: U.S. Department of Agriculture, Forest Service, Pacific Northwest Research Station. 279 p.

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Climate Change, Sea Level Rise, and Flooding in the Lower Snohomish River Basin

Mauger, G. S., and S.-Y. Lee, 2014. Climate Change, Sea Level Rise, and Flooding in the Lower Snohomish River Basin. Report prepared for The Nature Conservancy by the Climate Impacts Group, University of Washington, Seattle.

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Climate, fire size, and biophysical setting control fire severity and spatial pattern in the northern Cascade Range, USA

Cansler, C.A., and D. McKenzie. 2014. Climate, fire size, and biophysical setting control fire severity and spatial pattern in the northern Cascade Range, USA. Ecological Applications 24:1037–1056, http://dx.doi.org/10.1890/13-1077.1

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Estimates of Twenty-first Century flood risk in the Pacific Northwest based on regional scale climate model simulations

Salathé, E.P., Hamlet, A.F., Mass, C.F., Lee, S-Y., Stumbaugh, M., Steed, R. 2014. Estimates of Twenty-first Century flood risk in the Pacific Northwest based on regional scale climate model simulations. J. Hydrometeorology 15(5): 1881-1899, doi: http://dx.doi.org/10.1175/JHM-D-13-0137.1.

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Impacts of 21st century climate change on hydrologic extremes in the Pacific Northwest region of North America

Tohver, I., Hamlet, A.F., Lee, S-Y.  2014. Impacts of 21st century climate change on hydrologic extremes in the Pacific Northwest region of North America. Journal of the American Water Works Association. 1-16. DOI: 10.1111/jawr.12199

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Impacts of climate change on milk production in the United States

Mauger, G.S., Bauman, Y, Nennich, T., and Salathé, E.P.  2014. Impacts of climate change on milk production in the United States. Professional Geographer, doi:10.1080/00330124.2014.921017

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Northwest

Mote, P.W., Snover, A.K., Capalbo, S.M., Eigenbrode, S., Glick, P., Littell, J.S., Raymondi, R., Reeder, S. 2014. Northwest. Chapter 21 in Climate Change Impacts in the United States: The Third U.S. National Climate Assessment, J. Melillo, Terese (T.C.) Richmond, and G.W. Yohe, Eds., U.S. Global Change Research Program, 16-1-nn.

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Regional projections of the likelihood of very large wildland fires under a changing climate in the contiguous Western United States

Stavros, E.N., Abatzoglou, J., McKenzie, D., Larkin, N.  2014. Regional projections of the likelihood of very large wildland fires under a changing climate in the contiguous Western United States. Climatic Change 126(3-4): 455-468, doi: 10.1007/s10584-014-1229-6.

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Riparian Climate-corridors: Identifying Priority Areas for Conservation in a Changing Climate

Krosby, M., Norheim, R., Theobald, D. M., and B. H. McRae. 2014. Riparian Climate-corridors: Identifying Priority Areas for Conservation in a Changing Climate. Climate Impacts Group, University of Washington, Seattle.

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The climate-wildfire-air quality system: interactions and feedbacks across spatial and temporal scales

Stavros, E.N., McKenzie, D., Larkin, N.  2014. The climate-wildfire-air quality system: interactions and feedbacks across spatial and temporal scales. WIREs Climate Change 5: 719-733. doi: 10.1002/wcc.303.

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Uncertainty and Extreme Events in Future Climate and Hydrologic Projections for the Pacific Northwest: Providing a Basis for Vulnerability and Core/Corridor Assessments

Littell, J.S., Mauger, G.S., Salathé, E.P., Hamlet, A.F., Lee, S-Y., Stumbaugh, M., Elsner, M.M., Norheim, R.A., Lutz, E.R., Mantua, N.J. 2014. Uncertainty and Extreme Events in Future Climate and Hydrologic Projections for the Pacific Northwest: Providing a Basis for Vulnerability and Core/Corridor Assessments. Final report for Department of the Interior Pacific Northwest Climate Science Center. Climate Impacts Group, University of Washington, Seattle, WA.

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What is the importance of climate model bias when projecting the impacts of climate change on land surface processes?

Liu, M., Rajagopalan, K., Chung, S.H., Jiang, X., Harris, R., Nergui, T., Guenther, A., Miller, C., Reyes, J., Tague, C., Choate, J., Salathé, E.P., Stöckle, C., Adam, J.C. 2014. What is the importance of climate model bias when projecting the impacts of climate change on land surface processes?. Biogeosciences 11: 2601-2622, doi:10.5194/bg-11-2601-2014.

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