Publications

Book Chapters

  1. 1.Sullivan, P.L., Barnard, H.R., Brookfield, A.E., Genereux, D.P., Jarecke, K., Karlstrom, L., Loheide II, S.P., Mcintosh, J., Michael, H.A., Price, R.M., Rempe, D., Singha, K., Stotler, R.L., White, A. (Accepted). Groundwater – the dynamic base of the Critical Zone in Critical Zone and Ecosystem Dynamics. Springer.

Peer-Reviewed Manuscripts

  1. 1.Brookfield, A.E., Layzell, A., Zhou, T., and Tian, B. (2023). Monitoring changes in groundwater resources due to increased surface water delivery efficiencies in the Lower Republican River Basin. Midcontinent Geoscience. https://doi.org/10.17161/mg.v4i.20851.
  2. 2.*Norwood, B.S., Stotler, R.L., Sullivan, P.L., Brookfield, A.E., and Macpherson, G.L. (2023). Flux and stable isotope fractionation of CO2 in a mesic prairie headwater stream. Journal of Water and Climate Change. https://doi.org/10.2166/wcc.2023.067
  3. 3.Brookfield, A.E., Zipper, S., Kendall, A.D., Ajami, H., and Deines, J.M. (2023). Estimating groundwater pumping for irrigation – A method comparison. Groundwater. https://doi.org/10.1111/gwat.13336
  4. 4.Brookfield, A.E., Ajami, H., Carroll, R.W.H., Tague, N., Sullivan, P.L., and Condon, L. (2023). Advances in Integrated Hydrologic Models. Journal of Hydrology. https://doi.org/10.1016/j.jhydrol.2023.129515
  5. 5.*Murray, J., Ayers, J.R., and Brookfield, A.E. (2023). The impact of climate change on monthly baseflow trends in Canada. Journal of Hydrology. https://doi.org/10.1016/j.jhydrol.2023.129254
  6. 6.Wardropper, C. and Brookfield, A.E. (2022). Decision Support Systems for Water Management. Journal of Hydrology, https://doi.org/10.1016/j.jhydrol.2022.127928 5p.
  7. 7.Boumaiza, L., Lambert, M., Chesnaux, R., Walter, J., Jha, M.K., Wanke, H., Batelaan, O., Brookfield, A., Galvao, P., Laftouhi, N.-E., and Stumpp, C., 2022. Groundwater recharge over the past 100 years: regional spatiotemporal assessment and climate change impact. Hydrological Processes. https://doi.org/10.1002/hyp.14526
  8. 8.Zipper, S.C., Farmer, W.H., Brookfield, A.E., Ajami, H., Reeves, H.W., Wardropper, C., Hammond, J.C., Gleeson, T., and Deines, J.M., 2022. Quantifying streamflow depletion from groundwater pumping: A practical review of past and emerging approaches for water management. Journal of the American Water Resources Association. https://doi.org/10.1111/1752-1688.12998
  9. 9.*Ayers, J.R., Villarini, G., Schilling, K., Jones, C., Brookfield, A.E., Zipper, S.C. and Farmer, W.H., 2022. On the role of climate in monthly baseflow changes across the continental United States. Journal of Hydrologic Engineering. https://doi.org/10.1061/(ASCE)HE.1943-5584.0002170
  10. 10.*Stops, M.W., Sullivan, P.L., Peltier, E., Young, B., and Brookfield, A.E., 2022. Tracking the hydrologic response of agricultural tile outlet terraces to storm events. Agricultural Water Management https://doi.org/10.1016/j.agwat.2021.107382
  11. 11.*Porter, E.M., Hill, M.C., Harris, T., Li, X., and Brookfield, A., 2021. The DiscoverFramework for multivariate spatial-temporal environmental data evaluation and visualization using freeware. Environmental Monitoring and Software. doi: https://doi.org/10.1016/j.envsoft.2021.105104.
  12. 12.Brookfield, A.E., Hansen, A., Sullivan, P.L., Czuba, J., Kirk, M.F., Li, L., Newcomer, M., and Wilkenson, G. 2021. Predicting algal blooms: Are we overlooking groundwater? Science of the Total Environment. https://doi.org/10.1016/j.scitotenv.2020.144442.
  13. 13.*Rawitch, M., Macpherson, G.L., and Brookfield, A.E., 2020. The validity of using a floating chamber to quantify CO2 flux from headwater streams. Applied Water Science, doi: https://doi.org/10.2166/wcc.2020.199.
  14. 14.Brookfield, A.E., and Layzell, A.L., 2019. Simulating the effects of reservoir management strategies on fluvial erosion. Water Resources Management Vol. 33, pp 4983-4995.
  15. 15.*Rawitch, M., Macpherson, G.L., and Brookfield A.E., 2019. Exploring methods of measuring CO2 degassing in headwater streams. Sustainable Water Resources Management Vol. 5, No. 4 pp 1765-1779.
  16. 16.*MardanDoost, B., Sturm, B., Brookfield, A.E., Feddema, J., Kastens, J., Peterson, D., and Bishop, C., 2019. Estimating irrigation demand with remotely sensed and in-situ data: Application to the High Plains aquifer, Kansas, USA. Agricultural Water Management, Vol. 223, doi:10.1016/j.agwat.2019.06.010.
  17. 17.Brookfield, A.E., Rodell, M., Loomis, B.D., Hill, M., Stotler, R.L. Porter, M.E., and Bohling, G.E., 2018. In-Situ and GRACE-based observations: Similarities, discrepancies and evaluation in the High Plains Aquifer in Kansas. Water Resources Research, doi: 10.1029/2008/WR023836.
  18. 18.*Vero, S.E., Macpherson, G.L., Sullivan, P.L., Brookfield, A.E., Kirk, M.F., Datta, S., and Kempton, P., 2017. Developing a conceptual framework of landscape and hydrology on tallgrass prairie. Vadose Zone Journal, doi: 10.2136/vzj2017.03.0069.
  19. 19.Brookfield, A.E., Stotler, R.L. and Reboulet, E., 2017. Interpreting temporal variations in river response functions: An example from the Arkansas River, Kansas, USA. Hydrogeology Journal, Vol. 25, No. 5, pp 1271-1282.
  20. 20.Brookfield, A.E., Macpherson, G.L., and Covington, M.D., 2017. Effects of changing meteoric precipitation patterns on groundwater temperature in karst environments. Groundwater, Vol. 55, No. 2, pp 227-236 doi: 10.1111/gwat.12456.
  21. 21.Brookfield, A., Gnau, C. and Wilson, B., 2017. Incorporating Surface Water Operations in an Integrated Hydrologic Model: Model Development and Application to the Lower Republican River Basin, USA. Journal of Hydrologic Engineering, Vol. 22, No. 4 doi: 10.1061/(ASCE)HE.1943-5584.
  22. 22.Brookfield, A., Gnau, C., 2016. Optimizing Water Management for Irrigation under Climate Uncertainty: Evaluating Operational and Structural Alternatives in the Lower Republican River Basin, Kansas, USA. Water Resources Management, Vol. 20, No. 2, pp 607-622.
  23. 23.Meixner, T., Manning, A.H., Stonestrom, D., Ajami, H., Allen, D.M., Blasch, K., Brookfield, A., Castro, C.L., Clark, J.F., Gochis, D., Flint, A., Neff, K., Niraula, R., Rodell, M., Scanlon, B., Singha, K. and Walvoord, M., 2015. Implications of Projected Climate Change for Groundwater Recharge in the Western United States. Journal of Hydrology, Vol. 534, pp 124-138.
  24. 24.Butler Jr., J.., Bohling, G.C., Brookfield, A.E., Liu, G, Whittemore, D.O. and Wilson, B.B., 2014. Importance of a Sound Hydrologic Foundation for Assessing the Future of the High Plains Aquifer in Kansas. Proceedings of the National Academy of Sciences of the United States of America, vol. 111 no. 5 E 531.
  25. 25.Brookfield, A.E. and Sudicky, E.A., 2013. Implications of Hyporheic Flow on Temperature-based Estimates of Groundwater/Surface Water Interactions, Journal of Hydrologic Engineering, Vol. 18, No. 10 pp 1250-1261.
  26. 26.Brookfield, A.E. and Sudicky, E.A., 2013. Implications of Hyporheic Flow on Temperature-based Estimates of Groundwater/Surface Water Interactions, Journal of Hydrologic Engineering, Vol. 18, No. 10 pp 1250-1261.
  27. 27.Devlin, J.F., Brookfield, A.E., Huang, B. and Schillig, P.C., 2012. Using the Domenico Solution to Teach Contaminant Transport Modeling, Journal of Geoscience Education, Vol. 60 No. 2 pp 123-132.
  28. 28.*Kenward, P., Goldstein, R.H., Brookfield, A.E., Gonzalez, L.A. and Roberts, J.A., 2012. Model for how Archaeal Methanogenesis Can Preserve Early Porosity in Dolomite and Limestone Reservoirs, AAPG Bulletin, Vol. 96 pp 399-413.
  29. 29.Park, Y.-J., Sudicky, E.A., Brookfield, A.E. and Jones, J.P., 2011. Hydrologic Response of Catchments to Precipitation: Quantification of Mechanical Carriers and Origins of Water, Water Resources Research vol. 47, doi: 10.1029/2011WR010075.
  30. 30.Brookfield, A.E., Sudicky, E.A., Park, Y.-J., and Conant Jr., B., 2009. Thermal Transport Modelling in a Fully-Integrated Surface/Subsurface Modeling Framework, Hydrological Processes, vol. 23, no. 15 pp 2150-2164.
  31. 31.Brookfield, A.E., Sudicky, E.A., and Park, Y.-J., 2008. Analysis of Thermal Stream Loadings in a Fully-Integrated Surface/Subsurface Modelling Framework, IAHS-AISH Publication, vol. 321, pp 117-123.
  32. 32.Sudicky, E.A., Park, Y.-J., Sykes, J.F., Jones, J.P., Brookfield, A.E. and Colautti, D., 2008. Simulating Complex Flow and Transport Dynamics in an Integrated Surface-Subsurface Modelling Framework, Geosciences Journal vol. 12, no. 2, pp 107-122.
  33. 33.Sudicky, E.A., Jones, J.P., Brookfield, A.E., and Park, Y.-J., 2007. Reply to Comment by J.-P. Renaud, H.L. Cloke and M. Weiler on “An assessment of the tracer-based approach to quantifying groundwater contributions to streamflow”, Water Resources Research vol 43.
  34. 34.Brookfield, A.E., Blowes, D.W. and Mayer, K.E., 2006. Integration of Field Measurements and Reactive Transport Modelling to Evaluate Contaminant Transport at a Sulfide Mine Tailings Impoundment, Journal of Contaminant Hydrology, vol. 88, pp 1-22.
  35. 35.Jones, J.P., Sudicky, E.A., Brookfield, A.E. and Park, Y.-J., 2006. An Assessment of the Tracer-Based Approach to Quantifying Groundwater Contributions to Streamflow, Water Resources Research, vol. 42.
  36. 36.*Nenwali, R., Watson, A., Brookfield, A., Munch, Z., and Chow, R. (revisions under review). Is groundwater running out in the Western Cape, South Africa? Evaluating GRACE data to assess groundwater storage during droughts. Journal of Hydrology: Regional Studies.
  37. 37.*Porter, M.E., Brookfield, A.E., Zipper, S., and Hill, M.C. (in revision). Inferring streamflow depletion using national datasets: A test using the Middle Arkansas watershed, Kansas. Journal of Hydrology: Regional Studies.
  38. 38.*Wei, Q., Brookfield. A.E. and Layzell, A. (in revision). Quantifying the effects of water management decisions on streambank stability. Environmental Processes.
  39. 39.Zipper, S., Brookfield, A.E., Beightel, C., Fienen, M., Hammond, J., Hill, M., Kendall, A., Kerr, B., Lapides, D., Porter, M., Parimalarengangayaki S., and Rhode, M. (revisions under review). Streamflow depletion caused by groundwater pumping: Fundamental research priorities for management-relevant science. Water Resources Research.