Glaciation of alpine valleys: The glacier–debris-covered glacier–rock glacier continuum RS Anderson, LS Anderson, WH Armstrong, MW Rossi, SE Crump Geomorphology 311, 127-142, 2018 | 146 | 2018 |
Increased Frequency of Low‐Magnitude Floods in New England1 WH Armstrong, MJ Collins, NP Snyder JAWRA Journal of the American Water Resources Association 48 (2), 306-320, 2012 | 80 | 2012 |
Hydroclimatic flood trends in the northeastern United States and linkages with large-scale atmospheric circulation patterns WH Armstrong, MJ Collins, NP Snyder Hydrological Sciences Journal 59 (9), 1636-1655, 2014 | 71 | 2014 |
Debris cover and the thinning of Kennicott Glacier, Alaska: in situ measurements, automated ice cliff delineation and distributed melt estimates LS Anderson, WH Armstrong, RS Anderson, P Buri The Cryosphere 15 (1), 265-282, 2021 | 40 | 2021 |
The causes of debris-covered glacier thinning: Evidence for the importance of ice dynamics from Kennicott Glacier, Alaska LS Anderson, WH Armstrong, RS Anderson, D Scherler, E Petersen Frontiers in Earth Science 9, 680995, 2021 | 30 | 2021 |
Modeling the WorldView-derived seasonal velocity evolution of Kennicott Glacier, Alaska WH Armstrong, A Robert S., J Allen, H Rajaram Journal of Glaciology, 2016 | 28 | 2016 |
Spatial patterns of summer speedup on South central Alaska glaciers WH Armstrong, RS Anderson, MA Fahnestock Geophysical Research Letters 44 (18), 9379-9388, 2017 | 27 | 2017 |
Dam type and lake location characterize ice-marginal lake area change in Alaska and NW Canada between 1984 and 2019 B Rick, D McGrath, W Armstrong, SW McCoy The Cryosphere 16 (1), 297-314, 2022 | 22 | 2022 |
Ice-marginal lake hydrology and the seasonal dynamical evolution of Kennicott Glacier, Alaska WH Armstrong, RS Anderson Journal of Glaciology, 1-15, 2020 | 17 | 2020 |
Gulf of Alaska ice-marginal lake area change over the Landsat record and potential physical controls HR Field, WH Armstrong, M Huss The Cryosphere 15 (7), 3255-3278, 2021 | 16 | 2021 |
Unchanged frequency and decreasing magnitude of outbursts from ice-dammed lakes in Alaska B Rick, D McGrath, SW McCoy, WH Armstrong Nature Communications 14 (1), 6138, 2023 | 7 | 2023 |
Debris cover and the thinning of Kennicott Glacier, Alaska, Part B: ice cliff delineation and distributed melt estimates LS Anderson, WH Armstrong, RS Anderson, P Buri Cryosphere Discuss, 2019 | 5 | 2019 |
Bluff to bluff: A field guide to floodplain geology and geomorphology of the Lower Congaree River Valley, South Carolina DC Shelley, S Werts, D Dvoracek, W Armstrong | 5 | 2012 |
Debris cover and the thinning of Kennicott Glacier, Alaska, Part A: In situ mass balance measurements LS Anderson, RS Anderson, P Buri, WH Armstrong The Cryosphere Discussions 2019, 1-28, 2019 | 4 | 2019 |
Debris cover and the thinning of Kennicott Glacier, Alaska, Part C: feedbacks between melt, ice dynamics, and surface processes LS Anderson, WH Armstrong, RS Anderson, P Buri The Cryosphere Discussions 2019, 1-25, 2019 | 3 | 2019 |
Trends in Flood Discharge and Peaks over Threshold per Water Year on Climate-sensitive Rivers in the Northeastern United States WH Armstrong, MJ Collins, NP Snyder AGU Fall Meeting Abstracts 2011, H42H-07, 2011 | 3 | 2011 |
Declining Basal Motion Dominates the Long‐Term Slowing of Athabasca Glacier, Canada WH Armstrong, D Polashenski, M Truffer, G Horne, JB Hanson, ... Journal of Geophysical Research: Earth Surface 127 (10), e2021JF006439, 2022 | 2 | 2022 |
Short-term variability in alaska ice-marginal lake area: implications for long-term studies AM Hengst, W Armstrong, B Rick, D McGrath Remote Sensing 13 (19), 3955, 2021 | 2 | 2021 |
Dam type and topological position govern ice-marginal lake area change in Alaska and NW Canada between 1984 and 2019 B Rick, D McGrath, W Armstrong, SW McCoy Cryosphere Discuss, 1-28, 2021 | 2 | 2021 |
Daily to multi-decadal velocity variations at Athabasca Glacier, Alberta, Canada WH Armstrong Jr, D Polashenski, M Truffer, G Horne, RL Hawley, ... AGU Fall Meeting Abstracts 2020, C042-06, 2020 | 2 | 2020 |