Michael Bevis
Earth and Planetary Sciences · The Ohio State University
Publications
103
Citations
7,043
Est. group size
~1
Recurring co-author estimate
Active years
45
Publishing since 1981
Michael Bevis works on satellite geodesy (using GPS/GNSS and satellite gravity measurements) to study how the solid Earth deforms in response to ice loss, water storage changes, and earthquakes. His work spans theoretical modeling of Earth's elastic and gravitational response to surface mass changes as well as applied studies tracking glacier and ice sheet mass loss in Greenland, water level changes in the Great Lakes, and crustal motions before major subduction earthquakes in Chile and Japan. This research combines geophysical theory with observational data analysis to monitor and interpret changes in ice, water, and tectonic systems.
Publication output has been fairly steady over the last decade, fluctuating between 2 and 6 papers per year without a clear long-term increase or decline.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Joint inversion of GNSS and GRACE data for ice mass loads in Greenland
Earth and Planetary Science Letters · 2025
- Vertical Land Motion Due To Present‐Day Ice Loss From Greenland's and Canada's Peripheral Glaciers
Geophysical Research Letters · 2024
- Coupled poroelastic and gravitational deformation of a layered spherical Earth – I: load Love numbers
Geophysical Journal International · 2023
- Tracking the source direction of surface mass loads using vertical and horizontal displacements from satellite geodesy: A case study of the inter-annual fluctuations in the water level in the Great Lakes
Remote Sensing of Environment · 2022
- Estimating Ice Discharge at Greenland's Three Largest Outlet Glaciers Using Local Bedrock Uplift
Geophysical Research Letters · 2021
- Deformation due to surface temperature variation on a spherically layered, transversely isotropic and self-gravitating Earth
Geophysical Journal International · 2021
- Months-long thousand-kilometre-scale wobbling before great subduction earthquakes
Nature · 2020
- Centennial response of Greenland’s three largest outlet glaciers
Nature Communications · 2020
- Truncated Singular Value Decomposition Regularization for Estimating Terrestrial Water Storage Changes Using GPS: A Case Study over Taiwan
Remote Sensing · 2020
- A point dislocation in a layered, transversely isotropic and self-gravitating Earth. Part IV: exact asymptotic solutions of dislocation Love numbers for the special case of isotropy
Geophysical Journal International · 2020
- A point dislocation in a layered, transversely isotropic and self-gravitating Earth – Part III: internal deformation
Geophysical Journal International · 2020
- Reversals in geodetically observed surface motions suggests enhanced slab pull in the months preceding Maule Mw 8.8 and Tohoku-oki Mw 9.0 earthquakes
2020
- Geodetic and model data reveal different spatio-temporal patterns of transient mass changes over Greenland from 2007 to 2017
Earth and Planetary Science Letters · 2019
- A point dislocation in a layered, transversely isotropic and self-gravitating Earth. Part I: analytical dislocation Love numbers
Geophysical Journal International · 2019
- Downscaling GRACE Predictions of the Crustal Response to the Present‐Day Mass Changes in Greenland
Journal of Geophysical Research Solid Earth · 2019
- Geophysical Journal International×7
- Journal of Geophysical Research Solid Earth×4
- Earth and Planetary Science Letters×4
- Geophysical Research Letters×4
- Nature×2
- Kevin Ahlgren
Earth and Planetary Sciences · The Ohio State University
- Michael Bevis
Earth and Planetary Sciences · The Ohio State University
- Shin‐Chan Han
Earth and Planetary Sciences · The Ohio State University
- J. Guo
Earth and Planetary Sciences · The Ohio State University
- C. K. Shum
Earth and Planetary Sciences · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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