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Earth Science

D-Index
44
Citations
8819
World Ranking
4645
National Ranking
1772

Overview

Kim B. Olsen is affiliated with San Diego State University in the United States and has an active research portfolio focused primarily on Earth and Planetary Sciences and Engineering. Their work spans several interconnected fields with a strong emphasis on geophysics and civil and structural engineering, addressing complex phenomena related to seismic activity and earthquake engineering.

The scientist's research contributions have been published across various respected venues. Frequent publication outlets include the Bulletin of the Seismological Society of America, Geophysical Journal International, Earthquake Spectra, Frontiers in High Performance Computing, and Zenodo, reflecting a diverse engagement with both theoretical and computational aspects of seismic studies.

Kim B. Olsen has explored multiple topics within their research, notably in seismic waves and analysis, earthquake and tectonic studies, and seismic performance and analysis. Their interests also cover seismology and earthquake studies, seismic imaging and inversion techniques, as well as scientific computing and data management and particle accelerators and beam dynamics, demonstrating an interdisciplinary approach to earth sciences and engineering.

Recent publications illustrate the scientist's focus on seismic wave propagation, fault zone imaging, and computational simulation of earthquake physics. Key papers include:

  • "High-Resolution Imaging of Complex Shallow Fault Zones Along the July 2019 Ridgecrest Ruptures" (2021, Geophysical Research Letters)
  • "0-5 Hz deterministic 3-D ground motion simulations for the 2014 La Habra, California, Earthquake" (2022, Geophysical Journal International)
  • "A High-Order Finite-Difference Method on Staggered Curvilinear Grids for Seismic Wave Propagation Applications with Topography" (2021, Bulletin of the Seismological Society of America)
  • "Kinematic Rupture Generator Based on 3-D Spontaneous Rupture Simulations Along Geometrically Rough Faults" (2020, Journal of Geophysical Research Solid Earth)
  • "Estimation of Site Amplification from Geotechnical Array Data Using Neural Networks" (2021, Bulletin of the Seismological Society of America)

The scientist has collaborated frequently with several coauthors, including Te-Yang Yeh, Steven M. Day, D. Roten, Zhifeng Hu, and S. Callaghan, indicating active involvement in team-based research efforts primarily investigating seismic phenomena.

Best Publications

  • Three-Dimensional Dynamic Simulation of the 1992 Landers Earthquake

    K. B. Olsen;R. Madariaga;R. Madariaga;R. J. Archuleta;R. J. Archuleta

  • Finite‐difference solution of the eikonal equation along expanding wavefronts

    Fuhao Qin;Yi Luo;Kim Bak Olsen;Wenying Cai

  • Site Amplification in the Los Angeles Basin from Three-Dimensional Modeling of Ground Motion

    K. B. Olsen

  • The SCEC/USGS Dynamic Earthquake Rupture Code Verification Exercise

    R.A. Harris;M. Barall;R. Archuleta;E. Dunham

  • Three-dimensional simulation of earthquakes on the Los Angeles fault system

    Kim B. Olsen;Ralph J. Archuleta

  • Strong shaking in Los Angeles expected from southern San Andreas earthquake

    K. B. Olsen;S. M. Day;J. B. Minster;Y. Cui

  • Three-Dimensional Simulation of a Magnitude 7.75 Earthquake on the San Andreas Fault

    Kim B. Olsen;Ralph J. Archuleta;Joseph R. Matarese

  • Modeling dynamic rupture in a 3D earthquake fault model

    R. Madariaga;K. Olsen;R. Archuleta

  • Models of tremor and low-frequency earthquake swarms on Montserrat

    J Neuberg;R Luckett;B Baptie;K Olsen

  • A Suite of Exercises for Verifying Dynamic Earthquake Rupture Codes

    Ruth A. Harris;Michael Barall;Brad T. Aagaard;Shuo Ma

  • Estimation of Q for Long-Period (>2 sec) Waves in the Los Angeles Basin

    K. B. Olsen;S. M. Day;C. R. Bradley

  • Dynamic modeling of the 1992 Landers earthquake

    Sophie Peyrat;Kim Olsen;Raúl Madariaga

  • Hybrid Broadband Ground-Motion Simulations: Combining Long-Period Deterministic Synthetics with High-Frequency Multiple S-to-S Backscattering

    P. Martin Mai;Walter Imperatori;Kim B. Olsen

  • Unified Structural Representation of the southern California crust and upper mantle

    John H. Shaw;Andreas Plesch;Carl Tape;Carl Tape;M. Peter Suess

  • Scalable Earthquake Simulation on Petascale Supercomputers

    Yifeng Cui;Kim B. Olsen;Thomas H. Jordan;Kwangyoon Lee

  • On the implementation of perfectly matched layers in a three‐dimensional fourth‐order velocity‐stress finite difference scheme

    Carey Marcinkovich;Carey Marcinkovich;Kim Olsen

  • Stress-Breakdown Time and Slip-Weakening Distance Inferred from Slip-Velocity Functions on Earthquake Faults

    Takeshi Mikumo;Kim B. Olsen;Eiichi Fukuyama;Yuji Yagi

  • Model for Basin Effects on Long-Period Response Spectra in Southern California

    Steven M. Day;Robert Graves;Jacobo Bielak;Douglas Dreger

  • The ShakeOut earthquake scenario: Verification of three simulation sets

    Jacobo Bielak;Robert W. Graves;Kim B. Olsen;Ricardo Taborda

  • Frechet Kernels for Imaging Regional Earth Structure Based on Three-Dimensional Reference Models

    Li Zhao;Thomas H. Jordan;Kim B. Olsen;Po Chen

Frequent Co-Authors

Steven M. Day
Steven M. Day San Diego State University
Thomas H. Jordan
Thomas H. Jordan University of Southern California
Robert W. Graves
Robert W. Graves United States Geological Survey
Jacobo Bielak
Jacobo Bielak Carnegie Mellon University
Raul Madariaga
Raul Madariaga École Normale Supérieure
Ralph J. Archuleta
Ralph J. Archuleta University of California, Santa Barbara
Eiichi Fukuyama
Eiichi Fukuyama Kyoto University
Gerard T. Schuster
Gerard T. Schuster University of Utah
Jean-Paul Ampuero
Jean-Paul Ampuero Institut de Recherche pour le Développement
James N. Brune
James N. Brune University of Nevada Reno

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