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D-Index & Metrics

Engineering and Technology

D-Index
37
Citations
5411
World Ranking
8404
National Ranking
164

Overview

Bendiks Jan Boersma is affiliated with Delft University of Technology in the Netherlands. Their research primarily spans the field of engineering, with a focus on subfields such as computational mechanics, mechanical engineering, biomedical engineering, industrial and manufacturing engineering, and ocean engineering.

The scientist's recent publications cover a range of topics related to fluid dynamics, heat transfer, and multiphase flow. Notable research contributions include studies on fluid dynamics and heat transfer, fluid dynamics and mixing, heat transfer mechanisms, heat transfer and boiling studies, heat transfer and optimization, heat transfer and supercritical fluids, as well as particle dynamics in fluid flows.

  • Numerical investigation on the Thermal-hydraulic performance of the modified channel supercritical CO2 printed circuit heat exchanger (2022), Applied Thermal Engineering
  • Direct numerical simulation of turbulent bubbly down flow using an efficient CLSVOF method (2020), International Journal of Multiphase Flow
  • Reprocessing Zamak laryngoscope blades into new instrument parts; an 'all-in-one' experimental study (2022), Heliyon
  • An experimental study on friction reducing polymers in turbulent pipe flow (2023), Ocean Engineering
  • Thermodynamic Evaluation of a Combined SOFC-PEMFC Cycle System (2023), Modelling and Optimisation of Ship Energy Systems 2023

Bendiks Jan Boersma frequently collaborates with several researchers, including Niek Gerald Henri Goselink, Lindert van Biert, Jordi Poblador-Ibanez, N. Valle, and Jian Wang.

  • Applied Thermal Engineering
  • International Journal of Multiphase Flow
  • Heliyon
  • Ocean Engineering
  • Modelling and Optimisation of Ship Energy Systems 2023

Their work contributes predominantly to engineering, emphasizing computational and mechanical aspects, with practical applications in heat and fluid dynamics research.

Best Publications

  • A numerical investigation on the effect of the inflow conditions on the self-similar region of a round jet

    B. J. Boersma;G. Brethouwer;F. T. M. Nieuwstadt

  • The influence of wall permeability on turbulent channel flow

    W.P. Breugem;B.J. Boersma;R.E. Uittenbogaard

  • Turbulent channel flow near maximum drag reduction: simulations, experiments and mechanisms

    PK Ptasinski;BJ Boersma;Ftm Nieuwstadt;MA Martien Hulsen

  • Large-eddy simulation of highly underexpanded transient gas jets

    V. Vuorinen;J. Yu;S. Tirunagari;O. Kaario

  • Dynamics of prolate ellipsoidal particles in a turbulent channel flow

    P.H. Mortensen;H.I. Andersson;J.J.J. Gillissen;B.J. Boersma

  • Direct numerical simulations of turbulent flow over a permeable wall using a direct and a continuum approach

    W. P. Breugem;B. J. Boersma

  • Collision model for fully resolved simulations of flows laden with finite-size particles

    Pedro Costa;Bendiks Jan Boersma;Jerry Westerweel;Wim-Paul Breugem

  • An evaluation of the assumed beta probability density function subgrid-scale model for large eddy simulation of nonpremixed, turbulent combustion with heat release

    Clifton Wall;Bendiks Jan Boersma;Parviz Moin

  • Semi-local scaling and turbulence modulation in variable property turbulent channel flows

    Ashish Patel;Jurriaan W. R. Peeters;Bendiks J. Boersma;Rene Pecnik

  • Mean statistics of a heated turbulent pipe flow at supercritical pressure

    Hassan Nemati;Ashish Patel;Bendiks Jan Boersma;Rene Pecnik

  • Simulation of the mixing of a passive scalar in a round turbulent jet

    C. L. Lubbers;Geert Brethouwer;B. J. Boersma

  • On the orientation of ellipsoidal particles in a turbulent shear flow

    P.H. Mortensen;H.I. Andersson;J.J.J. Gillissen;B.J. Boersma

  • Direct numerical simulation of bifurcating jets

    Ionut Danaila;Bendiks Jan Boersma

  • High speed PIV applied to aerodynamic noise investigation

    V. Koschatzky;P. D. Moore;J. Westerweel;F. Scarano

  • Hydrodynamic stability of a sheared liquid film

    Rob Miesen;Bendiks Jan Boersma

  • Numerical simulation of drop impact on a liquid-liquid interface with a multiple marker front-capturing method

    Emil Coyajee;Bendiks Jan Boersma

  • On the implementation of low-dissipative Runge–Kutta projection methods for time dependent flows using OpenFOAM®

    Ville Vuorinen;Jukka-Pekka Keskinen;Christophe Duwig;Bendiks Jan Boersma

  • Turbulence attenuation in simultaneously heated and cooled annular flows at supercritical pressure

    Jurriaan W. R. Peeters;R. Pecnik;M. Rohde;T. H. J. J. van der Hagen

  • A Chebyshev Collocation Method for Solving Two-Phase Flow Stability Problems

    Unknown

  • DIRECT NUMERICAL SIMULATION OF PARTICLE DEPOSITION ONTO A FREE-SLIP AND NO-SLIP SURFACE

    Bas van Haarlem;Bendiks J. Boersma;Frans T. M. Nieuwstadt

  • Large eddy simulation of a Mach 0.9 turbulent jet

    Bendiks Boersma;Sanjiva Lele

  • Large-Eddy Simulation of Turbulent Flow in a Curved Pipe

    B. J. Boersma;F. T. M. Nieuwstadt

  • Optimization of turbulent jet mixing

    A Hilgers;B J Boersma

Frequent Co-Authors

Jerry Westerweel
Jerry Westerweel Delft University of Technology
Helge I. Andersson
Helge I. Andersson Norwegian University of Science and Technology
Ville Vuorinen
Ville Vuorinen Aalto University
Parviz Moin
Parviz Moin Stanford University
Amit Agrawal
Amit Agrawal Indian Institute of Technology Bombay
Fulvio Scarano
Fulvio Scarano Delft University of Technology
Sanjiva K. Lele
Sanjiva K. Lele Stanford University
Piero Colonna
Piero Colonna Delft University of Technology
MA Martien Hulsen
MA Martien Hulsen Eindhoven University of Technology
Wiebren de Jong
Wiebren de Jong Delft University of Technology

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