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Engineering and Technology

D-Index
44
Citations
7094
World Ranking
5841
National Ranking
192

Overview

Manfred Krafczyk is affiliated with Technische Universität Braunschweig in Germany. Their research primarily focuses on engineering with a strong emphasis on computational mechanics. The scope of their work also extends to electrical and electronic engineering, ocean engineering, safety, risk, reliability and quality, as well as information systems and management.

The scientist's work covers several specialized topics, including:

  • Lattice Boltzmann Simulation Studies
  • Fluid Dynamics and Turbulent Flows
  • Aerosol Filtration and Electrostatic Precipitation
  • Fluid Dynamics and Vibration Analysis
  • Heat and Mass Transfer in Porous Media
  • Evacuation and Crowd Dynamics
  • Fire dynamics and safety research

The recent publications of Manfred Krafczyk include the following papers:

  • "The lattice Boltzmann method for nearly incompressible flows," 2020, Journal of Computational Physics
  • "Under-resolved and large eddy simulations of a decaying Taylor-Green vortex with the cumulant lattice Boltzmann method," 2020, Theoretical and Computational Fluid Dynamics
  • "NFDI4Ing - the National Research Data Infrastructure for Engineering Sciences," 2020, TUbilio (Technical University of Darmstadt)
  • "A Parallel Coupled Lattice Boltzmann-Volume of Fluid Framework for Modeling Porous Media Evolution," 2021, Materials
  • "Simulation of Fire with a Gas Kinetic Scheme on Distributed GPGPU Architectures," 2020, Computation

Manfred Krafczyk has collaborated frequently with several co-authors, including:

  • Martin Geier
  • Li-Shi Luo
  • Konstantin Kutscher
  • Hussein Alihussein
  • Stephan Lenz

The scientist has published in a variety of venues, with frequent contributions in:

  • LeoPARD - TU Braunschweig Publications And Research Data
  • Journal of Computational Physics
  • Theoretical and Computational Fluid Dynamics
  • TUbilio (Technical University of Darmstadt)
  • Computation

Best Publications

  • The cumulant lattice Boltzmann equation in three dimensions: Theory and validation

    Martin Geier;Martin Schönherr;Andrea Pasquali;Manfred Krafczyk

  • TeraFLOP computing on a desktop PC with GPUs for 3D CFD

    J. Tolke;M. Krafczyk

  • Forcing term in single-phase and Shan-Chen-type multiphase lattice Boltzmann models.

    Haibo Huang;Haibo Huang;Manfred Krafczyk;Xiyun Lu

  • Benchmark computations based on Lattice-Boltzmann, Finite Element and Finite Volume Methods for laminar Flows

    Sebastian Geller;Manfred Krafczyk;Jonas Tölke;Stefan Turek

  • LARGE-EDDY SIMULATIONS WITH A MULTIPLE-RELAXATION-TIME LBE MODEL

    Manfred Krafczyk;Jonas Tölke;Li-Shi Luo

  • Prediction of capillary hysteresis in a porous material using lattice-Boltzmann methods and comparison to experimental data and a morphological pore network model

    B. Ahrenholz;J. Tölke;P. Lehmann;A. Peters

  • Comparison of a Lattice-Boltzmann Model, a Full-Morphology Model, and a Pore Network Model for Determining Capillary Pressure–Saturation Relationships

    H.-J. Vogel;J. Tölke;V. P. Schulz;M. Krafczyk

  • Lattice Boltzmann simulations of binary fluid flow through porous media.

    Jonas Tölke;Manfred Krafczyk;Manuel Schulz;Ernst Rank

  • An adaptive scheme using hierarchical grids for lattice Boltzmann multi-phase flow simulations

    Jonas Tölke;Sören Freudiger;Manfred Krafczyk

  • Analysis of 3D transient blood flow passing through an artificial aortic valve by Lattice–Boltzmann methods

    M. Krafczyk;M. Cerrolaza;M. Schulz;E. Rank

  • Spatial Characteristics of Roughness Sublayer Mean Flow and Turbulence Over a Realistic Urban Surface

    M. G. Giometto;A. Christen;C. Meneveau;Jiannong Fang

  • Intercomparison of 3D pore-scale flow and solute transport simulation methods

    Xiaofan Yang;Yashar Mehmani;William A. Perkins;Andrea Pasquali

  • Numerical investigation of double-diffusive (natural) convection in vertical annuluses with opposing temperature and concentration gradients

    Sheng Chen;Sheng Chen;Jonas Tölke;Manfred Krafczyk

  • Rotation of spheroidal particles in Couette flows

    Haibo Huang;Xin Yang;Manfred Krafczyk;Xi-Yun Lu

  • Extended lattice Boltzmann method for numerical simulation of thermal phase change in two-phase fluid flow.

    Hesameddin Safari;Mohammad Hassan Rahimian;Manfred Krafczyk

  • Multi-thread implementations of the lattice Boltzmann method on non-uniform grids for CPUs and GPUs

    Unknown

  • An upwind discretization scheme for the finite volume lattice Boltzmann method

    Unknown

  • Free surface flow simulations on GPGPUs using the LBM

    Unknown

  • Two-dimensional simulation of fluid–structure interaction using lattice-Boltzmann methods

    M. Krafczyk;J. Tölke;E. Rank;M. Schulz

  • Tomographical Imaging and Mathematical Description of Porous Media Used for the Prediction of Fluid Distribution

    P. Lehmann;P. Wyss;A. Flisch;E. Lehmann

  • The lattice Boltzmann method for nearly incompressible flows

    Pierre Lallemand;Li-Shi Luo;Manfred Krafczyk;Wen-An Yong

  • A Complex Automata approach for in-stent restenosis: two-dimensional multiscale modelling and simulations

    Alfonso Caiazzo;David Evans;Jean-Luc Falcone;Jan Hegewald

  • a Lb-Based Approach for Adaptive Flow Simulations

    Bernd Crouse;Ernst Rank;Manfred Krafczyk;Jonas Tölke

  • A lattice Boltzmann approach for free-surface-flow simulations on non-uniform block-structured grids

    Christian Janssen;Manfred Krafczyk

  • Extension of a hybrid thermal LBE scheme for Large-Eddy simulations of turbulent convective flows

    Christoph van Treeck;Ernst Rank;Manfred Krafczyk;Jonas Tölke

  • Entropy generation in turbulent natural convection due to internal heat generation

    Sheng Chen;Sheng Chen;Manfred Krafczyk

  • From dissipative particle dynamics scales to physical scales: a coarse-graining study for water flow in microchannel

    Anurag Kumar;Yutaka Asako;Eiyad Abu-Nada;Manfred Krafczyk

  • Implicit discretization and nonuniform mesh refinement approaches for FD discretizations of LBGK Models

    Jonas Tölke;Manfred Krafczyk;Manuel Schulz;Ernst Rank

  • Fixed-grid fluid–structure interaction in two dimensions based on a partitioned Lattice Boltzmann and p-FEM approach

    S. Kollmannsberger;S. Geller;A. Düster;J. Tölke

Frequent Co-Authors

Ernst Rank
Ernst Rank Technical University of Munich
Li-Shi Luo
Li-Shi Luo Old Dominion University
Bastien Chopard
Bastien Chopard University of Geneva
Peter Lehmann
Peter Lehmann ETH Zurich
Alexander Düster
Alexander Düster Hamburg University of Technology
Haibo Huang
Haibo Huang University of Science and Technology of China
Xi-Yun Lu
Xi-Yun Lu University of Science and Technology of China
Stephan T. Grilli
Stephan T. Grilli University of Rhode Island
David Evans
David Evans University of Bristol

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