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A list of all the posts and pages found on the site. For you robots out there, there is an XML version available for digesting as well.
Pages
Posts
publications
Hydrogeological response to climate change in alpine hillslopes
Published in Hydrological Processes, 2016
This study explores the response to warming in alpine hillsopes of varying bedrock permeability using ParFlow-CLM
Recommended citation: Markovich, K. H., Maxwell, R. M., and Fogg, G. E. (2016) Hydrogeological response to climate change in alpine hillslopes. Hydrol. Process., 30: 3126–3138. doi: 10.1002/hyp.10851.
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Bayesian hydrograph separation in a minimally gauged alpine catchment
Published in Journal of Hydrology, 2019
Hydrograph separation using Bayesian endmember mixing analysis for an alpine volcanic watershed in Central Chile
Recommended citation: Markovich, K.H., Dahlke, H.E., Arumi, J.L., Maxwell R.M., and Fogg. G.E., 2019. Bayesian hydrograph separation in a minimally gauged alpine catchment, Journal of Hydrology, 575, 1288–1300. https://doi.org/10.1016/j.jhydrol.2019.06.014.
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Mountain-Block Recharge: A Review of Current Understanding
Published in Water Resources Research, 2019
Review of literature on mountain-block recharge to provide a current state of understanding and guide future research priorities.
Recommended citation: Markovich, K., H, Manning, A. H., Condon, L. E., & McIntosh, J. C. (2019). Mountain-block recharge: A review of current understanding. Water Resources Research, 55, 8278–8304. https://doi.org/10.1029/2019WR025676
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Where Is the Bottom of a Watershed?
Published in Water Resources Research, 2020
This commentary piece reviews common approaches for defining the bottom of watersheds
Recommended citation: Condon, L. E., Markovich, K. H., Kelleher, C. A., McDonnell, J. J., Ferguson, G., & McIntosh, J. C. (2020). Where is the bottom of a watershed? Water Resources Research, 56, e2019WR026010. https://doi.org/10.1029/2019WR026010
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Sensitivity of Simulated Mountain Block Hydrology to Subsurface Conceptualization
Published in Water Resources Research, 2020
Recommended citation: Rapp, G. A., Condon, L. E., & Markovich, K. H. (2020). Sensitivity of simulated mountain block hydrology to subsurface conceptualization. Water Resources Research, 56, e2020WR027714. https://doi.org/10.1029/2020WR027714
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A Mountain-Front Recharge Component Characterization Approach Combining Groundwater Age Distributions, Noble Gas Thermometry, and Fluid and Energy Transport Modeling
Published in Water Resources Research, 2021
Recommended citation: Markovich, K. H., Condon, L.E., Carroll, K. C., Purtschert,R., & McIntosh, J. C. (2021). A mountain-front recharge component characterization approach combining groundwater age distributions, noble gas thermometry, and fluid and energy transport modeling. Water Resources Research, 57, e2020WR027743. https://doi.org/10.1029/2020WR027743
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Sequential and batch data assimilation approaches to cope with groundwater model error: An empirical evaluation
Published in Environmental Modelling and Software, 2022
Recommended citation: Markovich, K. H., White, J.T., and Knowling, M.J. (2022). Sequential and batch data assimilation approaches to cope with groundwater model error: An empirical evaluation. Environmental Modelling and Software, 156. https://doi.org/10.1016/j.envsoft.2022.105498.
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Jupyter Notebooks for Parameter Estimation, Uncertainty Analysis, and Optimization with PEST++
Published in Groundwater, 2024
Technical note reviewing the GMDSI notebooks for decision support modeling anlayses using PEST/PEST++
Recommended citation: Ford, C., Ha, W., Markovich, K. and Zwinger, J. (2024), Jupyter Notebooks for Parameter Estimation, Uncertainty Analysis, and Optimization with PEST++. Groundwater, 62: 825-829. https://doi.org/10.1111/gwat.13447
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Self-Guided Decision Support Groundwater Modelling with Python
Published in Journal of Open Science Education, 2024
The GMDSI tutorial notebooks repository provides learners with a comprehensive set of tutorials for self-guided training on decision-support groundwater modelling using Python-based tools
Recommended citation: Hugman, R.T., White, J.T., Fienen, M.N., Hemmings, B., and Markovich, K.H. (2024). Self-Guided Decision Support Groundwater Modelling with Python. Journal of Open Source Education, 7(82), 240, https://doi.org/10.21105/jose.00240
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MF6-ADJ: A Non-Intrusive Adjoint Sensitivity Capability for MODFLOW 6
Published in Groundwater, 2025
Recommended citation: Hayek, M., White, J.T., Markovich, K.H., Hughes, J.D. and Lavenue, M. (2025), MF6-ADJ: A Non-Intrusive Adjoint Sensitivity Capability for MODFLOW 6. Groundwater. https://doi.org/10.1111/gwat.70025
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Variations in Groundwater Recharge and Water Table Elevations Across the Holocene in a Semi-Arid Alluvial Basin
Published in Water Resources Research, 2025
Recommended citation: Noyes, C., Ferguson, G., Seltzer, A., Ng, J., Carroll, K. C., Tyne, R., Markovich, K., Purtschert, R., Stute, M., Severinghaus, J., and McIntosh, J. (2025). Variations in groundwater recharge and water table elevations across the Holocene in a semi-arid alluvial basin. Water Resources Research, 61, e2024WR037606. https://doi.org/10.1029/2024WR037606
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Reliable Trade-offs Between Environment and Economy: Implications for Mine Dewatering and Managed Aquifer Recharge
Published in Mine Water and the Environment, 2025
Recommended citation: White, J., Coulon, C., Hugman, R., Markovich, K., 2025. Reliable Trade-offs Between Environment and Economy: Implications for Mine Dewatering and Managed Aquifer Recharge. Mine Water and the Environment. https://doi.org/10.1007/s10230-025-01070-z
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talks
teaching
Climate Change, Water, and Society
Graduate course, University of California, Davis, 2017
Applied Decision Support Groundwater Modeling with Python: A Guided Self-Study Course
Short course, Online, 2023
Applied Decision Support Groundwater Modeling with Python: A Guided Self-Study Course
Short course, Online, 2024
An Introduction to Predictive Modeling Workflows with python, pyEMU, and PEST++
Conference short course, MODFLOW and More 2024, 2024
Water in the Earth System (ENVS 423L) / Physical Hydrology (EPS 522)
Undergrad/Graduate course, University of New Mexico, 2025
Advanced Environmental Science (ENVS 430L)
Undergrad course, University of New Mexico, 2026
