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Engineering and Technology

D-Index
36
Citations
4711
World Ranking
8765
National Ranking
561

Overview

Harvey J. Burd is affiliated with the University of Oxford in the United Kingdom and conducts research primarily in the field of engineering. Their work focuses extensively on civil and structural engineering, particularly within subfields such as geotechnical engineering, safety and risk assessment, building construction, mechanics of materials, and geology.

Their research topics cover several areas related to geotechnical engineering and structural behavior, including:

  • Geotechnical Engineering and Underground Structures
  • Geotechnical Engineering and Soil Mechanics
  • Geotechnical Engineering and Analysis
  • Structural Behavior of Reinforced Concrete
  • Geotechnical Engineering and Soil Stabilization
  • Structural Health Monitoring Techniques
  • Masonry and Concrete Structural Analysis

Among recent publications authored by Harvey J. Burd, notable papers include:

  • "Application of the PISA design model to monopiles embedded in layered soils," 2020, published in Géotechnique
  • "Soil-foundation interaction model for the assessment of tunnelling-induced damage to masonry buildings," 2021, published in Tunnelling and Underground Space Technology

Burd frequently collaborates with several co-authors in their research. These include Byron W. Byrne, Sinan Acikgoz, Derya Burcu Gulen, Stephen K. Suryasentana, and Ross A. McAdam, with multiple joint publications recorded.

Their work is published in various academic venues, with multiple contributions to:

  • SSRN Electronic Journal
  • Tunnelling and Underground Space Technology
  • Géotechnique
  • Journal of Waterway Port Coastal and Ocean Engineering
  • Computers and Geotechnics

Harvey J. Burd's research spans a total of over 60 publications categorized under engineering, emphasizing the integration of geotechnical and structural analysis techniques in engineering projects.

Best Publications

  • Numerical studies of bearing-capacity factor Nγ

    Sam Frydman;Harvey J. Burd

  • BEARING CAPACITY OF PLANE-STRAIN FOOTINGS ON LAYERED SOILS

    H J Burd;S Frydman

  • ANALYTICAL AND MODEL STUDIES OF REINFORCEMENT OF A LAYER OF GRANULAR FILL ON A SOFT CLAY SUBGRADE

    J. P. Love;H. J. Burd;G. W. E. Milligan;G. T. Houlsby

  • Numerical modelling of the accommodating lens.

    H.J. Burd;S.J. Judge;J.A. Cross

  • New design methods for large diameter piles under lateral loading for offshore wind applications

    Byron W. Byrne;Lidija Zdravkovic;Ross McAdam;Harvey J. Burd

  • Modelling tunnelling-induced settlement of masonry buildings

    H. J. Burd;G. T. Houlsby;C. E. Augarde;G. Liu

  • Model testing of closely spaced tunnels in clay

    S. H. Kim;H. J. Burd;G. W. E. Milligan

  • PISA: New Design Methods for Offshore Wind Turbine Monopiles

    B. W. Byrne;Ross A. McAdam;H. J. Burd;G. T. Houlsby

  • PISA design model for monopiles for offshore wind turbines: application to a stiff glacial clay till

    Byron W. Byrne;Guy T. Houlsby;Harvey J. Burd;Kenneth G. Gavin

  • PISA design model for monopiles for offshore wind turbines: application to a marine sand

    Harvey J. Burd;David M. G. Taborda;Lidija Zdravković;Christelle N. Abadie

  • PISA: new design methods for offshore wind turbine monopiles

    Byron W. Byrne;Harvey J. Burd;Lidija Zdravković;Ross A. McAdam

  • Finite-element analysis of a deep excavation case history

    Y. P. Dong;H. J. Burd;G. T. Houlsby

  • Numerical modelling of large diameter piles under lateral loading for offshore wind applications

    L. Zdravković;D. M G Taborda;D. M. Potts;R. J. Jardine

  • Finite-element modelling of laterally loaded piles in a dense marine sand at Dunkirk

    David M. G. Taborda;Lidija Zdravković;David M. Potts;Harvey J. Burd

  • Field testing of large diameter piles under lateral loading for offshore wind applications

    BW Byrne;RA McAdam;HJ Burd;GT Houlsby

  • Monotonic laterally loaded pile testing in a stiff glacial clay till at Cowden

    B Byrne;RA McAdam;HJ Burd;Wjap Beuckelaers

  • An equivalent beam method to model masonry buildings in 3D finite element analysis

    J. A. Pickhaver;H. J. Burd;G. T. Houlsby

  • A NEW APPROACH TO THE DESIGN OF UNPAVED ROADS--PART 1

    Gwe Milligan;R A Jewell;G T Houlsby;H J Burd

  • Shear modulus data for the human lens determined from a spinning lens test.

    G.S. Wilde;H.J. Burd;S.J. Judge

  • Monotonic laterally loaded pile testing in a dense marine sand at Dunkirk

    Ross A. McAdam;Byron W. Byrne;Guy T. Houlsby;William J.A.P. Beuckelaers

  • Numerical modelling of compensation grouting above shallow tunnels

    C. Wisser;C. E. Augarde;H. J. Burd

  • Three-dimensional finite element analysis of lined tunnels

    C. E. Augarde;H. J. Burd

Frequent Co-Authors

Guy T. Houlsby
Guy T. Houlsby University of Oxford
Byron W. Byrne
Byron W. Byrne University of Oxford
Richard J. Jardine
Richard J. Jardine Imperial College London
Lidija Zdravković
Lidija Zdravković Imperial College London
Kenneth Gavin
Kenneth Gavin Delft University of Technology
David M. Potts
David M. Potts Imperial College London
Charles E. Augarde
Charles E. Augarde Durham University
M. L. G. Oldfield
M. L. G. Oldfield University of Oxford
Patrick Doherty
Patrick Doherty King's College London
Christopher D. F. Rogers
Christopher D. F. Rogers University of Birmingham

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