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Earth Science

D-Index
31
Citations
5518
World Ranking
8844
National Ranking
2867

Overview

Brendan J. Meade is affiliated with Harvard University in the United States and has a research focus primarily in Earth and Planetary Sciences. Their work spans several subfields including Geophysics, Artificial Intelligence, Computational Mechanics, Ocean Engineering, and Mechanics of Materials.

The scientist's research covers numerous topics with particular emphasis on earthquake and tectonic studies, high-pressure geophysics and materials, geological and geochemical analysis, seismology and earthquake studies, earthquake detection and analysis, seismic waves and analysis, and geophysics and sensor technology.

Brendan J. Meade has contributed to various scientific publications. Selected recent papers include:

  • A neural encoder for earthquake rate forecasting, 2023, Scientific Reports
  • A Global Set of Subduction Zone Earthquake Scenarios and Recurrence Intervals Inferred From Geodetically Constrained Block Models of Interseismic Coupling Distributions, 2021, Geochemistry Geophysics Geosystems
  • On the Choice and Implications of Rheologies That Maintain Kinematic and Dynamic Consistency Over the Entire Earthquake Cycle, 2022, Journal of Geophysical Research Solid Earth
  • Kinematic Afterslip Patterns, 2024, Geophysical Research Letters
  • Kinematic Representations of Linear and Power-Law Viscoelastic Deformation Through the Earthquake Cycle, 2022, Geophysical Research Letters

Their frequent co-authors consist of John P. Loveless, Rishav Mallick, Valère Lambert, Jeanne L. Hardebeck, and T. W. Becker.

Brendan J. Meade has published multiple works in platforms including Computers & Geosciences, Geophysical Research Letters, Zenodo (CERN European Organization for Nuclear Research), arXiv (Cornell University), and Earth and Space Science.

Best Publications

  • Block models of crustal motion in southern California constrained by GPS measurements

    Brendan J. Meade;Brendan J. Meade;Bradford H. Hager

  • Machine Learning in Seismology: Turning Data into Insights

    Qingkai Kong;Daniel T. Trugman;Zachary E. Ross;Michael J. Bianco

  • Present-day kinematics at the India-Asia collision zone

    Brendan J. Meade

  • Geodetic imaging of plate motions, slip rates, and partitioning of deformation in Japan

    John P. Loveless;Brendan J. Meade

  • Deep Learning of Aftershock Patterns Following Large Earthquakes

    Phoebe M. R. DeVries;Phoebe M. R. DeVries;Fernanda Viégas;Martin Wattenberg;Brendan J. Meade

  • Estimates of Seismic Potential in the Marmara Sea Region from Block Models of Secular Deformation Constrained by Global Positioning System Measurements

    Brendan J. Meade;Bradford H. Hager;Simon C. McClusky;Robert E. Reilinger

  • Spatial correlation of interseismic coupling and coseismic rupture extent of the 2011 MW = 9.0 Tohoku‐oki earthquake

    John P. Loveless;John P. Loveless;Brendan J. Meade

  • Algorithms for the calculation of exact displacements, strains, and stresses for triangular dislocation elements in a uniform elastic half space

    Brendan J. Meade

  • Orogen response to changes in climatic and tectonic forcing

    Kelin X. Whipple;Brendan J. Meade

  • Partitioning of Localized and Diffuse Deformation in the Tibetan Plateau from Joint Inversions of Geologic and Geodetic Observations

    John P. Loveless;Brendan J. Meade

  • Present day kinematics of the Eastern California Shear Zone from a geodetically constrained block model

    Simon C. McClusky;S.C. Bjornstad;Bradford H. Hager;R. W. King

  • Controls on the strength of coupling among climate, erosion, and deformation in two-sided, frictional orogenic wedges at steady state

    Kelin X. Whipple;Brendan J. Meade

  • Block Modeling with Connected Fault-Network Geometries and a Linear Elastic Coupling Estimator in Spherical Coordinates

    Brendan J. Meade;John P. Loveless

  • Two decades of spatiotemporal variations in subduction zone coupling offshore Japan

    John P. Loveless;Brendan J. Meade

  • Stress modulation on the San Andreas fault by interseismic fault system interactions

    John P. Loveless;Brendan J. Meade

  • Inference of Multiple Earthquake‐Cycle Relaxation Timescales from Irregular Geodetic Sampling of Interseismic Deformation

    Brendan J. Meade;Yann Klinger;Eric A. Hetland

  • Temporal variation in climate and tectonic coupling in the central Andes

    Nadine McQuarrie;Todd A. Ehlers;Jason B. Barnes;Brendan J. Meade

  • Spatial Variability of Erosion Rates Inferred from the Frequency Distribution of Cosmogenic 3He in Olivines from Hawaiian River Sediments

    Eric Gayer;Sujoy Mukhopadhyay;Brendan J. Meade

  • Geodetic imaging of coseismic slip and postseismic afterslip: Sparsity promoting methods applied to the great Tohoku earthquake

    Eileen Louise Evans;Brendan J. Meade

  • Viscoelastic deformation for a clustered earthquake cycle

    Brendan J. Meade;Brendan J. Meade;Bradford H. Hager

  • Enabling large-scale viscoelastic calculations via neural network acceleration

    Phoebe M. R. DeVries;T. Ben Thompson;Brendan J. Meade

Frequent Co-Authors

Martin Wattenberg
Martin Wattenberg Harvard University
Fernanda B. Viégas
Fernanda B. Viégas Harvard University
Simon McClusky
Simon McClusky Australian National University
Yann Klinger
Yann Klinger Institut de Physique du Globe de Paris
Kelin X. Whipple
Kelin X. Whipple Arizona State University
James F. Dolan
James F. Dolan University of Southern California
Clinton P. Conrad
Clinton P. Conrad University of Oslo
Sujoy Mukhopadhyay
Sujoy Mukhopadhyay University of California, Davis

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