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Snow quenches our thirst, cools our planet
2024
-
(2024).
Snow Depth Extraction From Time‐Lapse Imagery Using a Keypoint Deep Learning Model.
Water Resources Research,
60
(7),
https://doi.org/10.1029/2023WR036682.
-
Hoppinen, Z.
,
Oveisgharan, S.
,
P. Marshall, H.
,
Mower, R.
,
Elder, K.
,
Vuyovich, C.
(2024).
Snow Water Equivalent Retrieval Over Idaho, Part B: Using L-band UAVSAR Repeat-Pass Interferometry.
The Cryosphere,
18
(2),
575-592.
https://doi.org/10.5194/tc-18-575-2024.
2022
-
Wrzesien, M.L.
,
Kumar, S.
,
Vuyovich, C.
,
Gutmann, E.D.
,
Kim, R.S.
,
Forman, B.A.
,
Durand, M.
,
Raleigh, M.S.
,
Webb, R.
,
Houser, P.
(2022).
Development of a “nature run” for observing system simulation experiments (OSSEs) for snow mission development.
Journal of Hydrometeorology,
23
(3),
351-375.
https://doi.org/10.1175/JHM-D-21-0071.1.
2021
-
Kim, R.S.
,
Kumar, S.
,
Vuyovich, C.
,
Houser, P.
,
Lundquist, J.
,
Mudryk, L.
,
Durand, M.
,
Barros, A.
,
Kim, E.J.
,
Forman, B.A.
,
Gutmann, E.D.
(2021).
Snow Ensemble Uncertainty Project (SEUP): quantification of snow water equivalent uncertainty across North America via ensemble land surface modeling.
The Cryosphere,
15
(2),
771-791.
-
Webb, R.W.
,
Marziliano, A.
,
McGrath, D.
,
Bonnell, R.
,
Meehan, T.G.
,
Vuyovich, C.
,
Marshall, H.-P.
(2021).
In Situ Determination of Dry and Wet Snow Permittivity: Improving Equations for Low Frequency Radar Applications.
Remote Sens.,
13,
4617.
https://doi.org/10.3390/rs13224617.