Publications
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Submitted.
Going with the Flow: New Insights into the Hydraulics of High-Energy Fluids. Science Findings, USDA Forest Service, PNW Research Station. (232)
(3.33 MB)
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2020. 
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2017.
Geomorphic Responses to Dam Removal in the United States – a Two-Decade Perspective. Gravel-Bed Rivers: Processes and Disasters. :355-383.
(1.41 MB)
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2017. 
A geohydrologic framework for characterizing summer streamflow sensitivity to climate warming in the Pacific Northwest, USA. Hydrology and Earth Systems Sciences. 18:1-18.
(654.33 KB)
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2014. 
The Geomorphic Response of Gravel-Bed Rivers to Dams: Perspectives and Prospects. Gravel Bed Rivers: Processes, Tools, Environments. :165-181.
(2.82 MB)
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2012. .
2012. 
Groundwater dynamics mediate low-flow response to global warming in snow-dominated alpine regions. Water Resources Research. 45
(982.65 KB)
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2009. 
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2008.
A geological framework for interpreting the low-flow regimes of Cascade streams, Willamette River Basin, Oregon. Water Resources Research. 40
(331.13 KB)
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2004. .
2004. 
A geological framework for interpreting downstream effects of dams on rivers. A Peculiar River. Water Science and Application 7:209-225.
(684.39 KB)
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2003. 
The Geology and Geography of Floods. Ancient Floods, Modern Hazards: Principles and Application of Paleoflood Hydrology. 5:359-385.
(3.9 MB)
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2002. 
Geology as Destiny: Cold waters run deep in western Oregon. Science Findings. 49:6.
(272.09 KB)
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2002. 
Geomorphology of the Deschutes River below Pelton Round Butte Dam Complex, Oregon. Final Report to PGE. :102.
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1999. A geomorphic basis for the hydrologic behavior of large river systems. River Quality: Dynamics and Restoration. :105-116.
(816.25 KB)
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1997. 
Gravel disturbance impacts on salmon habitat and stream health. Report prepared for the Oregon Division of State Lands. :45.
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1995.