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Overview

Herbert F. Wang is a researcher affiliated with the University of Wisconsin-Madison in the United States. Their work spans multiple fields, primarily focusing on Earth and Planetary Sciences as well as Engineering. Within these broader domains, Wang's research largely addresses subfields including Geophysics, Ocean Engineering, Artificial Intelligence, Mechanics of Materials, and Electrical and Electronic Engineering.

The topics that dominate Wang's scholarly contributions include seismic waves and analysis, seismology and earthquake studies, seismic imaging and inversion techniques, geophysical methods and applications, earthquake and tectonic studies, rock mechanics and modeling, and high-pressure geophysics and materials.

Wang has contributed to multiple recent publications, among them:

  • "PubDAS: A PUBlic Distributed Acoustic Sensing Datasets Repository for Geosciences," 2023, published in Seismological Research Letters
  • "Distributed Acoustic Sensing Using a Large-Volume Airgun Source and Internet Fiber in an Urban Area," 2021, published in Seismological Research Letters
  • "The Global DAS Month of February 2023," 2023, published in Seismological Research Letters
  • "Low Static Shear Modulus Along Foliation and Its Influence on the Elastic and Strength Anisotropy of Poorman Schist Rocks, Homestake Mine, South Dakota," 2020, published in Rock Mechanics and Rock Engineering
  • "High-Resolution Shallow Structure at Brady Hot Springs Using Ambient Noise Tomography (ANT) on a Trenched Distributed Acoustic Sensing (DAS) Array," 2021, published in Geophysical Monograph

Frequent collaborators in Wang's research include Hiroki Sone, Jonathan Ajo-Franklin, C. H. Thurber, Xiangfang Zeng, and K. L. Feigl. These coauthors have worked on multiple projects with Wang, reflecting ongoing collaborative efforts in related research areas.

Wang's publications are notably found in a variety of scientific venues, with repeated contributions in:

  • Seismological Research Letters
  • Geophysical Monograph
  • Rock Mechanics and Rock Engineering
  • Scientific Reports
  • Earth and Planetary Science Letters

In the realm of book publishing, Wang has contributed to works such as "Groundwater Storage in Confined Aquifers," published in 2020 by The Groundwater Project eBooks.

Best Publications

  • Theory of Linear Poroelasticity with Applications to Geomechanics and Hydrogeology

    Herbert F. Wang

  • Introduction to Groundwater Modeling: Finite Difference and Finite Element Methods

    Herbert Wang;Mary P. Anderson

  • Ultrasonic velocities in Cretaceous shales from the Williston basin

    Leonie E. A. Jones;Herbert F. Wang

  • The elastic coefficients of double‐porosity models for fluid transport in jointed rock

    James G. Berryman;Herbert F. Wang

  • Laboratory measurements of a complete set of poroelastic moduli for Berea sandstone and Indiana limestone

    David J. Hart;Herbert F. Wang

  • Elasticity of orthoenstatite

    Donald J. Weidner;Herbert Wang;Jun Ito

  • Fluid pressure response to undrained compression in saturated sedimentary rock

    Douglas H. Green;Herbert F. Wang

  • Ground motion response to an ML 4.3 earthquake using co-located distributed acoustic sensing and seismometer arrays

    Herbert F Wang;Xiangfang Zeng;Xiangfang Zeng;Douglas E Miller;Douglas E Miller;Dante Fratta

  • Thermal stress cracking in granite

    H. F. Wang;B. P. Bonner;S. R. Carlson;B. J. Kowallis

  • Elasticity of some mantle crystal structures: 1. Pleonaste and hercynite spinel

    Herbert Wang;Gene Simmons

  • Elasticity of some mantle crystal structures: 2. Rutile GeO2

    Herbert Wang;Gene Simmons

  • The pressure and temperature dependence of the elastic constants of pyrope garnet

    L. J. Bonczar;E. K. Graham;Herbert Wang

  • Thermobarometry, diffusion modelling and cooling rates of crustal garnet peridotites: Two examples from the Moldanubian zone of the Bohemian Massif

    L.G. Medaris;H.F. Wang;Z. Mísař;E. Jelínek

  • Elasticity of some mantle crystal structures 3. Spessartite-almandine garnet

    Herbert Wang;Gene Simmons

  • Velocity‐porosity‐clay content systematics of poorly consolidated sandstones

    B. J. Kowallis;L. E. A. Jones;H. F. Wang

  • Transient stress-coupling between the 1992 Landers and 1999 Hector Mine, California, earthquakes

    Timothy Masterlark;Herbert F. Wang

  • Specific Storage as a Poroelastic Coefficient

    D. H. Green;H. F. Wang

  • On the calculation of the seismic parameter ϕ at high pressure and high temperatures

    D. H. Chung;Herbert Wang;Gene Simmons

  • Variation of unjacketed pore compressibility using Gassmann’s equation and an overdetermined set of volumetric poroelastic measurements

    David J. Hart;Herbert F. Wang

  • Chrysoberyl (Al2BeO4): Anomaly in velocity-density systematics

    Herbert Wang;M. C. Gupta;Gene Simmons

Frequent Co-Authors

Zuyuan He
Zuyuan He Shanghai Jiao Tong University
Kurt L. Feigl
Kurt L. Feigl University of Wisconsin–Madison
Clifford H. Thurber
Clifford H. Thurber University of Wisconsin–Madison
Teruyuki Kato
Teruyuki Kato University of Tokyo
Scott W. Tyler
Scott W. Tyler University of Nevada Reno
Nikolas I. Christensen
Nikolas I. Christensen University of British Columbia
Mary P. Anderson
Mary P. Anderson University of Wisconsin–Madison
Donald J. Weidner
Donald J. Weidner Stony Brook University
Huifang Xu
Huifang Xu University of Wisconsin–Madison

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