World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
66
Citations
15206
World Ranking
491
National Ranking
26

Overview

M.H. Aliabadi is affiliated with Imperial College London in the United Kingdom. Their primary field of study is Engineering, with a specialization that spans several subfields, including Mechanics of Materials, Civil and Structural Engineering, Statistics, Probability and Uncertainty, Mechanical Engineering, and Computational Theory and Mathematics.

The scientist's research focuses mainly on Structural Health Monitoring Techniques, Ultrasonics and Acoustic Wave Propagation, and Probabilistic and Robust Engineering Design. Other notable topics in their work include Non-Destructive Testing Techniques, Numerical methods in engineering, Mechanical Behavior of Composites, as well as Fatigue and fracture mechanics.

Recent publications by M.H. Aliabadi include:

  • Damage detection in large composite stiffened panels based on a novel SHM building block philosophy, 2021, Smart Materials and Structures
  • A novel multi-fidelity modelling-based framework for reliability-based design optimisation of composite structures, 2020, Engineering With Computers
  • Hierarchical approach for uncertainty quantification and reliability assessment of guided wave-based structural health monitoring, 2020, Structural Health Monitoring
  • Digital clone testing platform for the assessment of SHM systems under uncertainty, 2021, Mechanical Systems and Signal Processing
  • An up-scaling temperature compensation framework for guided wave-based structural health monitoring in large composite structures, 2022, Structural Health Monitoring

Frequent coauthors who have collaborated with Aliabadi include Zahra Sharif Khodaei, Llewellyn Morse, Ilias N. Giannakeas, Haolin Li, and Dong Xiao.

The scientist has published extensively in various venues, with multiple contributions in the following:

  • AIP conference proceedings
  • SSRN Electronic Journal
  • Procedia Structural Integrity
  • Mechanical Systems and Signal Processing
  • Structural Health Monitoring

M.H. Aliabadi has also contributed to book publications, notably with Imperial College Press, releasing the title Probabilistic Optimisation of Composite Structures in 2024.

Best Publications

  • The dual boundary element method: Effective implementation for crack problems

    A. Portela;M. H. Aliabadi;D. P. Rooke

  • Numerical Fracture Mechanics

    M. H. Aliabadi;D. P. Rooke

  • Boundary Element Formulations in Fracture Mechanics

    M. H. Aliabadi

  • Dual boundary element method for three-dimensional fracture mechanics analysis

    Y. Mi;M.H. Aliabadi

  • Dual boundary element incremental analysis of crack propagation

    A. Portela;M.H. Aliabadi;D.P. Rooke

  • Assessment of delay-and-sum algorithms for damage detection in aluminium and composite plates

    Z Sharif-Khodaei;M H Aliabadi

  • Fundamentals of metal fatigue analysis

    Unknown

  • THREE-DIMENSIONAL CRACK GROWTH SIMULATION USING BEM

    Y. Mi;M.H. Aliabadi

  • Determination of impact location on composite stiffened panels

    Z Sharif-Khodaei;M Ghajari;M H Aliabadi

  • Taylor expansions for singular kernels in the boundary element method

    M. H. Aliabadi;W. S. Hall;T. G. Phemister

  • Multi-scale boundary element modelling of material degradation and fracture

    G.K. Sfantos;M.H. Aliabadi

  • Decomposition of the mixed-mode J-integral—revisited

    R.H. Rigby;M.H. Aliabadi

  • A three-dimensional cohesive-frictional grain-boundary micromechanical model for intergranular degradation and failure in polycrystalline materials

    I. Benedetti;I. Benedetti;M.H. Aliabadi

  • The dual boundary element method for thermoelastic crack problems

    N. N. V. Prasad;M. H. Aliabadi;D. P. Rooke

  • Fracture mechanics analysis of anisotropic plates by the boundary element method

    P. Sollero;M. H. Aliabadi

  • Identification of impact force for smart composite stiffened panels

    M Ghajari;Z Sharif-Khodaei;M H Aliabadi;A Apicella

  • Crack growth analysis in concrete using boundary element method

    A.L. Saleh;M.H. Aliabadi

  • A boundary cohesive grain element formulation for modelling intergranular microfracture in polycrystalline brittle materials

    G. K. Sfantos;M. H. Aliabadi

  • A new generation of boundary element methods in fracture mechanics

    M.H. Aliabadi

  • A fast 3D dual boundary element method based on hierarchical matrices

    I. Benedetti;M.H. Aliabadi;G. Davì

  • Efficient boundary element analysis of sharp notched plates

    A. Portela;M. H. Aliabadi;D. P. Rooke

Frequent Co-Authors

Carlos Alberto Brebbia
Carlos Alberto Brebbia Wessex Institute of Technology
Mario Guagliano
Mario Guagliano Polytechnic University of Milan
Brian Falzon
Brian Falzon RMIT University
Vladimir Sladek
Vladimir Sladek Slovak Academy of Sciences
Ugo Galvanetto
Ugo Galvanetto University of Padua
Alberto Carpinteri
Alberto Carpinteri Shantou University
Luiz C. Wrobel
Luiz C. Wrobel Brunel University London
Erasmo Viola
Erasmo Viola University of Bologna
José M. Lorenzo
José M. Lorenzo Universidade de Vigo
Ching-Shyang Chen
Ching-Shyang Chen University of Southern Mississippi

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