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Engineering and Technology

D-Index
39
Citations
7258
World Ranking
7622
National Ranking
151

Overview

Chris R. Kleijn is affiliated with Delft University of Technology in the Netherlands and focuses their research within the field of Engineering. Their work spans several subfields of study, including Mechanical Engineering, Computational Mechanics, Biomedical Engineering, Applied Mathematics, and Radiology, Nuclear Medicine and Imaging.

Their main research topics include:

  • Additive Manufacturing Materials and Processes
  • Welding Techniques and Residual Stresses
  • Heat and Mass Transfer in Porous Media
  • Nanofluid Flow and Heat Transfer
  • Gas Dynamics and Kinetic Theory
  • Laser Material Processing Techniques
  • Advanced Welding Techniques Analysis

Recent publications by Chris R. Kleijn cover several aspects of heat transfer, welding, and laser melting processes. Significant papers include:

  • "Numerical study of molten metal melt pool behaviour during conduction-mode laser spot melting," 2020, Journal of Physics D Applied Physics
  • "The influence of laser characteristics on internal flow behaviour in laser melting of metallic substrates," 2022, Materials & Design
  • "A simulation-based approach to characterise melt-pool oscillations during gas tungsten arc welding," 2020, International Journal of Heat and Mass Transfer
  • "The effects of process parameters on melt-pool oscillatory behaviour in gas tungsten arc welding," 2021, Journal of Physics D Applied Physics
  • "The Effect of Groove Shape on Molten Metal Flow Behaviour in Gas Metal Arc Welding," 2021, Materials

Kleijn frequently publishes in venues such as the Journal of Physics D Applied Physics, International Journal of Heat and Fluid Flow, Materials & Design, International Journal of Heat and Mass Transfer, and Materials.

Collaboration is a consistent aspect of Kleijn's work, with frequent co-authors including Saša Kenjereš, Amin Ebrahimi, I. M. Richardson, M. J. M. Hermans, and Manu Chakkingal. These partnerships have contributed to advancing knowledge in welding, heat transfer, and additive manufacturing processes.

Best Publications

  • Revealing internal flow behaviour in arc welding and additive manufacturing of metals

    Lee Aucott;Hongbiao Dong;Wajira Mirihanage;Robert Atwood

  • Inertial and Interfacial Effects on Pressure Drop of Taylor Flow in Capillaries

    Michiel T. Kreutzer;Freek Kapteijn;Jacob A. Moulijn;Chris R. Kleijn

  • μ-PIV study of the formation of segmented flow in microfluidic T-junctions

    Volkert van Steijn;Michiel T. Kreutzer;Chris R. Kleijn

  • Predictive model for the size of bubbles and droplets created in microfluidic T-junctions.

    Volkert van Steijn;Chris R. Kleijn;Michiel T. Kreutzer

  • Benchmark numerical simulations of segmented two-phase flows in microchannels using the Volume of Fluid method

    Duong A. Hoang;Volkert van Steijn;Luis M. Portela;Michiel T. Kreutzer

  • Dynamics of droplet breakup in a T-junction

    D. A. Hoang;L. M. Portela;C. R. Kleijn;M. T. Kreutzer

  • Flows around confined bubbles and their importance in triggering pinch-off.

    Volkert van Steijn;Chris R. Kleijn;Michiel T. Kreutzer

  • The effect of oxygen on transitional Marangoni flow in laser spot welding

    C.X. Zhao;C. Kwakernaak;Y. Pan;I.M. Richardson

  • A Mathematical Model of the Hydrodynamics and Gas‐Phase Reactions in Silicon LPCVD in a Single‐Wafer Reactor

    C. R. Kleijn

  • Return flows in horizontal MOCVD reactors studied with the use of TiO2 particle injection and numerical calculations

    E.P. Visser;C.R. Kleijn;C.A.M. Govers;C.J. Hoogendoorn

  • Integrated tool chain for model-based design of Cyber-Physical Systems: The INTO-CPS project

    Peter Gorm Larsen;John Fitzgerald;Jim Woodcock;Peter Fritzson

  • Sensitivity of Numerical Predictions to the Permeability Coefficient in Simulations of Melting and Solidification Using the Enthalpy-Porosity Method

    Amin Ebrahimi;Chris R. Kleijn;Ian M. Richardson

  • Computational modeling of transport phenomena and detailed chemistry in chemical vapor deposition : a benchmark solution

    Chris R. Kleijn

  • Computational Simulations of Magnetic Particle Capture in Arterial Flows

    J. W. Haverkort;S. Kenjereš;C. R. Kleijn

  • A Mathematical Model for LPCVD in a Single Wafer Reactor

    C. R. Kleijn;Th. H. van der Meer;C. J. Hoogendoorn

  • Optimizing transport in nanostructured catalysts: A computational study

    Gang Wang;Eivind Johannessen;Chris R. Kleijn;Simon W. de Leeuw

  • Multi-scale modeling of chemical vapor deposition processes for thin film technology

    C.R. Kleijn;R. Dorsman;K.J. Kuijlaars;M. Okkerse

  • Modeling and Optimization of the Step Coverage of Tungsten LPCVD in Trenches and Contact Holes

    A. Hasper;J. Holleman;J. Middelhoek;C. R. Kleijn

  • Velocity fluctuations of segmented flow in microchannels

    V. van Steijn;M.T. Kreutzer;C.R. Kleijn

  • A STUDY OF 2- AND 3-D TRANSPORT PHENOMENA IN HORIZONTAL CHEMICAL VAPOR DEPOSITION REACTORS

    C.R. Kleijn;C.J. Hoogendoorn

  • Hydraulic permeability of ordered and disordered single-layer arrays of cylinders

    M.P. Sobera;C.R. Kleijn

  • Transport Phenomena in Tungsten LPCVD in a Single‐Wafer Reactor

    C.R. Kleijn;C.J. Hoogendoorn;A. Hasper;J. Holleman

Frequent Co-Authors

Sasa Kenjeres
Sasa Kenjeres Delft University of Technology
Michiel T. Kreutzer
Michiel T. Kreutzer Delft University of Technology
H.E.A. van den Akker
H.E.A. van den Akker Delft University of Technology
Cornelis Vuik
Cornelis Vuik Delft University of Technology
Marc-Olivier Coppens
Marc-Olivier Coppens University College London
J. Ruud van Ommen
J. Ruud van Ommen Delft University of Technology
Helen V. Atkinson
Helen V. Atkinson Cranfield University
Nicola Marzari
Nicola Marzari École Polytechnique Fédérale de Lausanne
Freek Kapteijn
Freek Kapteijn Delft University of Technology
Ernst J. R. Sudhölter
Ernst J. R. Sudhölter Delft University of Technology

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