World's Best Scientists 2026 revealed!
Mohammad Kazemi

Mohammad Kazemi

Overview

Mohammad Kazemi is affiliated with the University of Isfahan in Iran and has contributed to research primarily in the fields of Engineering and Environmental Science. Their work spans multiple subfields including Building and Construction, Environmental Engineering, Civil and Structural Engineering, Computational Mechanics, and Industrial and Manufacturing Engineering.

The scientist's research topics focus on a range of areas related to building materials, energy optimization, and structural performance. The main topics of their work include:

  • Building Energy and Comfort Optimization
  • Urban Heat Island Mitigation
  • Hygrothermal properties of building materials
  • Innovative concrete reinforcement materials
  • Structural Behavior of Reinforced Concrete
  • Recycled Aggregate Concrete Performance
  • Concrete and Cement Materials Research

Kazemi has published in several frequent venues, showing a pattern of research dissemination across journals that focus on structures, building engineering, environmental concerns, and sustainability. The venues include:

  • Structures
  • Energy and Buildings
  • Building and Environment
  • Journal of Building Engineering
  • Sustainability

The scientist has collaborated often with several co-authors, contributing to multiple publications with these researchers:

  • Luc Courard (9 publications)
  • Shady Attia (5 publications)
  • Mohammad Saberian (4 publications)
  • Soheil Jahandari (3 publications)
  • Jie Li (3 publications)

Among the notable recent papers by Mohammad Kazemi are:

  • Geotechnical properties of lime-geogrid improved clayey subgrade under various moisture conditions, 2021, Road Materials and Pavement Design
  • In-situ strength estimation of polypropylene fibre reinforced recycled aggregate concrete using Schmidt rebound hammer and point load test, 2020, Journal of Sustainable Cement-Based Materials
  • A comparative study of mechanical properties and life cycle assessment of high-strength concrete containing silica fume and nanosilica as a partial cement replacement, 2022, Structures
  • Mechanical Properties of Recycled Aggregate Concretes Containing Silica Fume and Steel Fibres, 2021, Materials
  • Overheating analysis of optimized nearly Zero-Energy dwelling during current and future heatwaves coincided with cooling system outage, 2023, Energy and Buildings

Best Publications

  • Determination of fracture energy, process zone longth and brittleness number from size effect, with application to rock and conerete

    Z. P. Bazant;M. T. Kazemi

  • RANDOM PARTICLE MODEL FOR FRACTURE OF AGGREGATE OR FIBER COMPOSITES

    Zdenek P. Bazant;Mazen R. Tabbara;Mohammad T. Kazemi;Gilles Pijaudier-Cabot

  • Size Effect in Fracture of Ceramics and Its Use To Determine Fracture Energy and Effective Process Zone Length

    Zdenek P. Bazant;Mohammad T. Kazemi

  • Size Effect in Brazilian Split-Cylinder Tests: Measurements and Fracture Analysis

    Zdenek P. Bazant;Mohammad Taghi Kazemi;Toshiaki Hasegawa;Jacky Mazars

  • Vibration of two-dimensional imperfect functionally graded (2D-FG) porous nano-/micro-beams

    Navvab Shafiei;Seyed Sajad Mirjavadi;Behzad MohaselAfshari;Samira Rabby

  • IDENTIFICATION OF NONLINEAR FRACTURE PROPERTIES FROM SIZE EFFECT TESTS AND STRUCTURAL ANALYSIS BASED ON GEOMETRY-DEPENDENT R-CURVES

    Z.P. Bažant;R. Gettu;M.T. Kazemi

  • Size dependence of concrete fracture energy determined by RILEM work-of-fracture method

    Zdeněk P. Bažant;Mohammad T. Kazemi

  • The effect of water to cement ratio on fracture parameters and brittleness of self-compacting concrete

    Morteza H.A. Beygi;Mohammad T. Kazemi;Iman M. Nikbin;Javad. Vaseghi Amiri

  • Buckling analysis on the bi-dimensional functionally graded porous tapered nano-/micro-scale beams

    Navvab Shafiei;Mohammad Kazemi

  • Fracture properties of steel fiber reinforced high strength concrete using work of fracture and size effect methods

    M.T. Kazemi;H. Golsorkhtabar;M.H.A. Beygi;M. Gholamitabar

  • The influence of coarse aggregate size and volume on the fracture behavior and brittleness of self-compacting concrete

    Morteza H.A. Beygi;Mohammad Taghi Kazemi;Iman M. Nikbin;Javad Vaseghi Amiri

  • Nonlinear vibration of axially functionally graded tapered microbeams

    Navvab Shafiei;Mohammad Kazemi;Majid Ghadiri

  • A comprehensive investigation into the effect of water to cement ratio and powder content on mechanical properties of self-compacting concrete

    I.M. Nikbin;M.H.A. Beygi;M.T. Kazemi;J. Vaseghi Amiri

  • Effect of coarse aggregate volume on fracture behavior of self compacting concrete

    I.M. Nikbin;M.H.A. Beygi;M.T. Kazemi;J. Vaseghi Amiri

  • Erosional impact on organic matter content and productivity of selected Iowa soils

    T.E. Fenton;M. Kazemi;M.A. Lauterbach-Barrett

  • On size-dependent vibration of rotary axially functionally graded microbeam

    Navvab Shafiei;Mohammad Kazemi;Majid Ghadiri

  • Nonlinear buckling of functionally graded nano-/micro-scaled porous beams

    Navvab Shafiei;Mohammad Kazemi

  • Nonlinear vibration of axially functionally graded non-uniform nanobeams

    Navvab Shafiei;Mohammad Kazemi;Mohsen Safi;Majid Ghadiri

  • Evaluation of the effect of maximum aggregate size on fracture behavior of self compacting concrete

    Morteza H.A. Beygi;Mohammad Taghi Kazemi;Javad Vaseghi Amiri;Iman M. Nikbin

  • Seismic shear strengthening of R/C columns with ferrocement jacket

    Mohammad Taghi Kazemi;Reza Morshed

Frequent Co-Authors

Navvab Shafiei
Navvab Shafiei Imam Khomeini International University
Zdeněk P. Bažant
Zdeněk P. Bažant Northwestern University
Gilles Pijaudier-Cabot
Gilles Pijaudier-Cabot University of Pau and the Adour Region
Tolga M. Duman
Tolga M. Duman Bilkent University
Amir R. Khoei
Amir R. Khoei Sharif University of Technology
Murim Choi
Murim Choi Seoul National University
Shrikant Mane
Shrikant Mane Yale University
Hongyu Zhao
Hongyu Zhao Yale University
Richard P. Lifton
Richard P. Lifton Rockefeller University

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