Using hydrogeologic context and water budgets to evaluate the potential for groundwater contributions to contaminants in Lake Superior

Author:

Nielsen Martha G.,Martin Sherry L.

Funder

US Environmental Protection Agency

Publisher

Elsevier BV

Reference70 articles.

1. Barlow, P.M., Cunningham, W.L., Zhai, Tong, Gray, Mark, 2014. U.S. Geological Survey Groundwater Toolbox, a graphical and mapping interface for analysis of hydrologic data (version 1.0): User guide for estimation of base flow, runoff, and groundwater recharge from streamflow data: U.S. Geological Survey Techniques and Methods, book 3, chap. B10, 27 p.

2. Barlow, P.M., Cunningham, W.L., Zhai, Tong, Gray, Mark, 2017. U.S. Geological Survey Groundwater Toolbox version 1.3.1, a graphical and mapping interface for analysis of hydrologic data: U.S. Geological Survey Software Release, 26 May 2017, http://dx.doi.org/10.5066/F7R78C9G.

3. Identifying Recharge and Flow in Fractured Crystalline Rock Using Karst Characterization Methods;Barry,2023

4. Water resources of the Bad River Indian Reservation, northern Wisconsin;Batten;U.S. Geological Survey Water-Resources Investigations Report,1995

5. Clayton, 1984. Pleistocene Geology of the Superior Region, Wisconsin. Wisconsin Geological and Natural History Survey Information Circular 46, https://wgnhs.wisc.edu/catalog/publication/000296/resource/ic46, Accessed April 12, 2021.

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