World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
35
Citations
5570
World Ranking
8945
National Ranking
2495

Overview

Kevin B. McGrattan is affiliated with the National Institute of Standards and Technology in the United States. Their research contributions primarily focus on fire dynamics and safety, environmental science, and engineering, with a significant emphasis on the interaction of fire with ecosystems and built environments.

Recent publications highlight a range of topics including fire behavior modeling, ventilation in tunnels, and fire plume dynamics. Notable papers include:

  • A Multi-Fidelity Framework for Wildland Fire Behavior Simulations over Complex Terrain, 2021, Atmosphere
  • Modeling longitudinal ventilation in tunnels using fire dynamics simulator, 2023, Fire Safety Journal
  • Determining flow resistance through vegetation canopy, 2020, Fire and Materials
  • Wall and Corner Effects on Fire Plumes as a Function of Offset Distance, 2020, Fire Technology
  • Response to "Unexpected Oscillations in Fire Modelling Inside a Long Tunnel" by Ang et al., 2021, Fire Technology

Collaboration is evident with several frequent coauthors, indicating interdisciplinary and team-based research approaches. These collaborators include:

  • Randall McDermott
  • Marcos Vanella
  • Glenn P. Forney
  • William Mell
  • Emanuele Gissi

Their work has been published in several journals, pointing to a network across multiple domains within fire safety and environmental research. The most frequent publication venues are:

  • Fire Technology
  • Atmosphere
  • Fire Safety Journal
  • Fire and Materials

Kevin B. McGrattan's main fields of study span engineering and environmental science. More specific subfields include:

  • Global and Planetary Change
  • Safety, Risk, Reliability and Quality
  • Ocean Engineering
  • Computational Mechanics
  • Earth-Surface Processes

Their research topics further focus on areas aligned with fire effects, dynamics, and safety, such as:

  • Fire effects on ecosystems
  • Fire dynamics and safety research
  • Evacuation and Crowd Dynamics
  • Lattice Boltzmann Simulation Studies
  • Plant Water Relations and Carbon Dynamics
  • Aeolian processes and effects
  • Hydrology and Sediment Transport Processes

This profile demonstrates that Kevin B. McGrattan's work integrates computational modeling and physical analysis to better understand fire phenomena and their environmental and safety impacts, contributing to both the scientific literature and practical applications in fire science and related fields.

Best Publications

  • Fire dynamics simulator (Version 3) - Technical reference guide

    Kevin B McGrattan;Simo Hostikka;Jason E Floyd;Howard R Baum

  • Fire dynamics simulator technical reference guide volume 1 :: mathematical model

    Kevin B McGrattan;Randall McDermott;Craig Weinschenk;Kristopher Overholt

  • Large eddy simulations of smoke movement

    K.B. McGrattan;HR Baum;Ronald G. Rehm

  • Fire Dynamics Simulator (Version 3): User's Guide (NISTIR 6784) | NIST

    Kevin B. McGrattan;Glenn P. Forney;J E. Floyd;Simo A. Hostikka

  • Thermal radiation from large pool fires

    Unknown

  • Application of a large eddy simulation model to study room airflow

    Steven J. Emmerich;Kevin B. McGrattan

  • Adiabatic Surface Temperature for Calculating Heat Transfer to Fire Exposed Structures. | NIST

    U Wickstrom;Dat Duthinh;Kevin B. McGrattan

  • Fire-Driven Flows in Enclosures

    Unknown

  • Numerical simulation of smoke plumes from large oil fires

    Kevin B. McGrattan;Howard R. Baum;Ronald G. Rehm

  • Computational fluid dynamics modelling of fire

    Kevin McGrattan;Randall McDermott;Jason Floyd;Simo Hostikka

  • Numerical Modeling Of Pool Fires Using Les And Finite Volume Method For Radiation

    Simo A. Hostikka;Kevin B. McGrattan;Anthony P. Hamins

  • Simulating fire whirls

    Francine Battaglia;Kevin B. McGrattan;Ronald G. Rehm;Howard R. Baum

  • Fire dynamics simulation of a turbulent buoyant flame using a mixture-fraction-based combustion model

    Y Xin;Jay P. Gore;Kevin B. McGrattan;Ronald G. Rehm

  • Numerical simulation of combustion in fire plumes

    William E. Mell;Kevin B. McGrattan;Howard R. Baum

  • Numerical modeling of radiative heat transfer in water sprays

    Simo A. Hostikka;Kevin B. McGrattan

  • In Situ Burning of Oil Spills.

    David D. Evans;George W. Mulholland;Howard R. Baum;William D. Walton

  • Three Dimensional Simulations Of Fire Plume Dynamics

    H.R. Baum;K.B. Mcgrattan;R.G. Rehm

  • Improved Radiation And Combustion Routines For A Large Eddy Simulation Fire Model

    Kevin B. McGrattan;J E. Floyd;Glenn P. Forney;Howard R. Baum

  • Mathematical modeling and computer simulation of fire phenomena

    H. R. Baum;O. A. Ezekoye;K. B. McGrattan;R. G. Rehm

  • CFD Fire Simulation Using Mixture Fraction Combustion and Finite Volume Radiative Heat Transfer

    J. E. Floyd;K. B. McGrattan;S. Hostikka;H. R. Baum

  • Effects of slow wind on localied radiative ignition and transition to flame spread in microgravity

    T. Kashiwagi;K.B. McGrattan;S.L. Olson;O. Fujita

  • Verification and Validation of Selected Fire Models for Nuclear Power Plant Applications. Volume 2. Experimental Uncertainty (NUREG 1824) | NIST

    Anthony P. Hamins;Kevin B. McGrattan

  • Numerical and experimental gravity currents related to backdrafts

    Charles M. Fleischmann;K.B. McGrattan

Frequent Co-Authors

Anthony P. Hamins
Anthony P. Hamins National Institute of Standards and Technology
Takashi Kashiwagi
Takashi Kashiwagi National Institute of Standards and Technology
Gregory T. Linteris
Gregory T. Linteris National Institute of Standards and Technology
Jay P. Gore
Jay P. Gore Purdue University West Lafayette
Jose L. Torero
Jose L. Torero University College London

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