1. Anderson EJ, Fujisaki-Manome A, Kessler J, Lang GA, Chu PY, Kelley JGW, Chen Y, Wang J (2018) Ice forecasting in the next-generation great lakes operational forecast system (GLOFS). J Mar Sci Eng 6(4):123. https://doi.org/10.3390/jmse6040123
2. Beletsky D, Titze D, Kessler J, Mason LA, Fry L, Read L, Saunders W, Chu P, Feyen J, Lee D, Kelly JGW, Chen Y, Van der Westhuysen A (2022) Development of coupled hydrologic-hydrodynamic-wave flood forecasting system for Lake Champlain. NOAA Tech. Memo. GLERL-179. NOAA, Great Lakes Environmental Research Laboratory, Ann Arbor, Michigan. https://doi.org/10.25923/2hy2-ca15
3. Bjerklie DM, Trombley TJ, Olson SA (2014) Assessment of the spatial extent and height of flooding in Lake Champlain during May 2011, using satellite remote sensing and ground-based information: US Geological Survey Scientific Investigations Report 2014–5163. https://doi.org/10.3133/sir20145163
4. Boudreau P, Cantin JF, Bouchard A, Champoux A, Fortin P, Fiset JM, Fortin N, Thérien J, Morin G (2015) Development of an experimental 2D hydrodynamic model of Lake Champlain using existing bathymetric data. Technical report prepared by Environment Canada for the International Lake Champlain – Richelieu River Technical Working Group. Lake Champlain-Richelieu River 2D Hydrodynamic Model (H2D2). https://legacyfiles.ijc.org/tinymce/uploaded/LCRRTWG/Task_1-2-Lake_Champlain_2D_modeling_EC-NHS_EN.pdf
5. Campbell MK, White JM (2020) Hydrodynamic modeling of Lake Champlain: current resources, major gaps. Lake Champlain Basin Program and Lake Champlain Sea Grant Institute. https://scholarworks.uvm.edu/lcsg/1