Michelle Stern, PhD

Published

August 21, 2026

Michelle Stern headshotWalking on snowAt a monitoring stationHolding a droneSoil moisture station

Michelle Stern, PhD
Senior Environmental Scientist, Delta Science Program — Delta Stewardship Council
ORCID: 0000-0003-3030-7065

Google Scholar • ResearchGate • GitHub


Short bio

I study how changes in climate, wildfires, and land use affect water, soil, and water quality in California and the western United States. My work combines field observations, satellite data, and models to better understand water quantity and quality. My work supports resource management in the Sacramento San Joaquin Bay-Delta through open and transparent model and data practices, model development, and translating science through maps, synthesis, and other products. My current priority is to advance collaborative modeling through the Delta Modeling Collaboratory.


Research keywords

hydrology • sediment transport • soil moisture • post-fire runoff • remote sensing • climate change • watershed modeling • open data • harmful algal blooms • GIS


Selected projects


Selected publications

  1. Stern, M.; Flint, L.; Minear, J.; Flint, A.; Wright, S. (2016). “Characterizing changes in streamflow and sediment supply in the Sacramento River Basin, California, using hydrological simulation program—FORTRAN (HSPF).” Water, 8(10):432.
    https://www.mdpi.com/2073-4441/8/10/432

    Uses hydrologic modeling to document trends in streamflow and suspended-sediment supply across the Sacramento River Basin useful for watershed and Delta planning.

  2. Stern, M. A.; Flint, L. E.; Flint, A. L.; Knowles, N.; Wright, S. A. (2020). “The future of sediment transport and streamflow under a changing climate and the implications for long‑term resilience of the San Francisco Bay‑Delta.” Water Resources Research: e2019WR026245.
    https://doi.org/10.1029/2019WR026245

    Projects how climate-driven changes in streamflow and sediment will affect the Bay‑Delta system and discusses implications for long‑term resilience planning.

  3. Flint, L. E.; Flint, A. L.; Stern, M. A. (2021). “The Basin Characterization Model—A Monthly Regional Water balance software package.” USGS Techniques and Methods 6-H1.
    https://doi.org/10.3133/tm6H1

    Publicly available model documentation for the Basin Characterization Model (BCMv8) used to produce historical and future monthly climate and hydrology datasets across California.

  4. Baalousha, M.; Desmau, M.; Singerling, S. A.; Webster, J. P.; Matiasek, S. J.; Stern, M. A.; Alpers, C. N. (2022). “Discovery and potential ramifications of reduced iron‑bearing nanoparticles—magnetite, wüstite, and zero‑valent iron—in wildland–urban interface fire ashes.” Environmental Science: Nano, 9(11):4136–4149.
    https://doi.org/10.1039/d2en00248b

    Identifies iron‑bearing nanoparticles in wildfire ash and evaluates potential environmental and health implications after fires.

  5. Curtis, J. A.; Flint, L. E.; Stern, M. A. (2019). “A Multi‑Scale Soil Moisture Monitoring Strategy for California: Design and Validation.” JAWRA Journal of the American Water Resources Association, 55(3):740–758.
    https://doi.org/10.1111/1752-1688.12736

    Describes a multi‑scale monitoring design and validation approach to improve soil moisture observations that support water‑resource and drought monitoring.

  6. Stern, M. A.; Flint, L. E.; Flint, A. L.; Christensen, A. H. (2021). “A Basin‑Scale Approach to Estimating Recharge in the Desert: Anza‑Cahuilla Groundwater Basin, CA.” JAWRA Journal of the American Water Resources Association, 57(6):990–1003.
    https://doi.org/10.1111/1752-1688.12939

    Presents a basin‑scale method to estimate groundwater recharge in arid/desert basins to inform groundwater management decisions.

  7. Curtis, J. A.; Flint, L. E.; Stern, M. A.; Lewis, J.; Klein, R. D. (2021). “Amplified Impact of Climate Change on Fine‑Sediment Delivery to a Subsiding Coast, Humboldt Bay, California.” Estuaries and Coasts, 44(8):2173–2193.
    https://doi.org/10.1007/s12237-021-00992-x

    Shows how climate change increases fine‑sediment delivery to subsiding coastal bays, with implications for coastal resilience and habitat.

  8. Stern, M. A.; Flint, L. E.; Flint, A. L.; Boynton, R. M.; Stewart, J. A. E.; Wright, J. W.; Thorne, J. H. (2022). “Selecting the optimal fine‑scale historical climate data for assessing current and future hydrological conditions.” Journal of Hydrometeorology, 23(3):293–308.
    https://doi.org/10.1175/JHM-D-21-0121.1

    Evaluates historical climate datasets to identify the best options for hydrologic assessments under current and future climates.

  9. Stern, M.; Ferrell, R.; Flint, L.; Kozanitas, M.; Ackerly, D.; Elston, J.; Stachura, M.; Dai, E.; Thorne, J. (2024). “Fine‑scale surficial soil moisture mapping using UAS‑based L‑band remote sensing in a mixed oak‑grassland landscape.” Frontiers in Remote Sensing, 5:1337953.
    https://doi.org/10.3389/frsen.2024.1337953

    Demonstrates how an unoccupied aircraft system (UAS) L‑band radiometer can map soil moisture at fine scales to support fire‑risk and ecological monitoring.

  10. Wang, J.; Stern, M. A.; King, V. M.; Alpers, C. N.; Quinn, N. W. T.; Flint, A. L.; Flint, L. E. (2020). “PFHydro: A New Watershed-Scale Model for Post-Fire Runoff Simulation.” Environmental Modelling & Software, 123:104555.
    https://doi.org/10.1016/j.envsoft.2019.104555

    Introduces PFHydro, a watershed model that predicts how wildfire changes runoff and sediment delivery so managers can better plan post-fire flood and erosion responses.


Teaching & mentoring

  • Guest lectures and short courses on hydrologic modeling, soil moisture monitoring, and post‑fire hydrology.
  • Supervises and collaborates with graduate and undergraduate students on applied watershed and remote‑sensing projects.

Data & code

I am committed to open data and modeling practices. Most of my data releases and model archives are available through USGS data releases and institutional repositories (see publications for dataset DOIs). If you need a specific dataset or model archive, contact me.


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