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Herbert H. Einstein

Herbert H. Einstein

D-Index & Metrics

Engineering and Technology

D-Index
53
Citations
15520
World Ranking
3316
National Ranking
977

Earth Science

D-Index
52
Citations
15020
World Ranking
2970
National Ranking
1213

Overview

Herbert H. Einstein is affiliated with MIT in the United States and specializes in the field of engineering, with a focus on mechanics of materials, ocean engineering, civil and structural engineering, mechanical engineering, and environmental engineering. Their research spans multiple subfields, reflecting a multidisciplinary approach to engineering problems.

Their main topics of study include:

  • Rock mechanics and modeling
  • Hydraulic fracturing and reservoir analysis
  • Drilling and well engineering
  • Tunneling and rock mechanics
  • Groundwater flow and contamination studies
  • Landslides and related hazards
  • Geophysical methods and applications

Frequent publication venues show consistent contributions to specialized journals in relevant fields. These venues include:

  • Rock Mechanics and Rock Engineering
  • Tunnelling and Underground Space Technology
  • Water Resources Research
  • Journal of Rock Mechanics and Geotechnical Engineering
  • Journal of Geophysical Research Solid Earth

Einstein's recent papers cover various aspects of rock mechanics, tunneling, and fracture mechanics. Selected works include:

  • Lessons from accidents during tunnel construction, 2021, Tunnelling and Underground Space Technology
  • Toward the automation of mechanized tunneling "exploring the use of big data analytics for ground forecast in TBM tunnels", 2024, Tunnelling and Underground Space Technology
  • Fractures: Tension and Shear, 2021, Rock Mechanics and Rock Engineering
  • Normalized Radiated Seismic Energy From Laboratory Fracture Experiments on Opalinus Clayshale and Barre Granite, 2020, Journal of Geophysical Research Solid Earth
  • Laboratory study of fracture initiation and propagation in Barre granite under fluid pressure at stress state close to failure, 2022, Journal of Rock Mechanics and Geotechnical Engineering

Collaboration is an important aspect of Einstein's work. Frequent coauthors include:

  • Rita L. Sousa
  • John T. Germaine
  • Bing Q. Li
  • Wei Li
  • Saadeldin Mostafa

Throughout their career, Einstein has extensively contributed to understanding rock mechanics and tunneling technologies with a data-driven and experimental approach. Their interdisciplinary research integrates engineering mechanics, fluid dynamics, and geophysical methods to address challenges in underground construction and hydraulic processes.

Best Publications

  • Fracture coalescence in rock-type materials under uniaxial and biaxial compression

    A. Bobet;H.H. Einstein

  • Characterizing rock joint geometry with joint system models

    W. S. Dershowitz;H. H. Einstein

  • Crack Coalescence in Molded Gypsum and Carrara Marble: Part 1. Macroscopic Observations and Interpretation

    L. N. Y. Wong;H. H. Einstein

  • Systematic evaluation of cracking behavior in specimens containing single flaws under uniaxial compression

    L.N.Y. Wong;H.H. Einstein

  • Statistical description of rock properties and sampling.

    G.B. Baecher;N.A. Lanney;H.H. Einstein

  • The effect of discontinuity persistence on rock slope stability

    H.H. Einstein;D. Veneziano;G.B. Baecher;K.J. O'Reilly

  • Coalescence of fractures under shear stresses in experiments

    Baotang Shen;Ove Stephansson;Herbert H. Einstein;Bidjan Ghahreman

  • SIMPLIFIED ANALYSIS FOR TUNNEL SUPPORTS

    Herbert H. Einstein;Charles W. Schwartz

  • SUGGESTED METHODS FOR DETERMINING THE STRENGTH OF ROCK MATERIALS IN TRIAXIAL COMPRESSION: REVISED VERSION

    Kalman Kovári;Andreas Tisa;Herbert Einstein;John Franklin

  • Using RQD to estimate the deformation modulus of rock masses

    Lianyang Zhang;H.H. Einstein

  • Probabilistic and statistical methods in engineering geology

    H. H. Einstein;G. B. Baecher

  • Detection of Cracking Levels in Brittle Rocks by Parametric Analysis of the Acoustic Emission Signals

    Zabihallah Moradian;Zabihallah Moradian;Herbert H. Einstein;Gerard Ballivy

  • Crack Coalescence in Molded Gypsum and Carrara Marble: Part 2—Microscopic Observations and Interpretation

    Unknown

  • Artificial neural networks for predicting the maximum surface settlement caused by EPB shield tunneling

    Suchatvee Suwansawat;Herbert H. Einstein

  • Estimating the intensity of rock discontinuities

    Lianyang Zhang;H.H Einstein

  • Numerical modeling of fracture coalescence in a model rock material

    Antonio Bobet;Herbert H. Einstein

  • Investigation of Soil Arching with Centrifuge Tests

    Geraldo R. Iglesia;Herbert H. Einstein;Robert V. Whitman

  • Estimating the Mean Trace Length of Rock Discontinuities

    L. Zhang;H. H. Einstein

  • Risk analysis during tunnel construction using Bayesian Networks: Porto Metro case study

    Rita L. Sousa;Herbert H. Einstein

  • Cracking processes in Barre granite: fracture process zones and crack coalescence

    Stephen P. Morgan;Catherine A. Johnson;Herbert H. Einstein

  • Risk and risk analysis in rock engineering

    H.H. Einstein

Frequent Co-Authors

John T. Germaine
John T. Germaine Tufts University
Antonio Bobet
Antonio Bobet Purdue University West Lafayette
Lianyang Zhang
Lianyang Zhang University of Arizona
Peter Huggenberger
Peter Huggenberger University of Basel
Victor C. Li
Victor C. Li University of Michigan–Ann Arbor
Ove Stephansson
Ove Stephansson University of Potsdam
Farrokh Nadim
Farrokh Nadim Norwegian Geotechnical Institute
Louis Ngai Yuen Wong
Louis Ngai Yuen Wong University of Hong Kong

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