Voorzitter van de vakgroep Technische Stromingsleer (Engineering Fluid Dynamics) De onderzoeksthemas geleid door leden van de wetenschappelijke staf in de groep zijn:

  • Onderzoek en onderwijs in stromingsleer. Onderzoeksthemas van de groep zijn:
  • Roterende stromingsmachines
  • Numerieke Stromingsleer, Ontwerp van Algorithmes en Toepassing
  • Aeroakoestiek en Aerodynamica
  • Biomedische stromingsleer
  • stromingsleer van functionele materialen

Hoofd onderwijs van het departement Thermal Fluid Engineering. Daarnaast coordinator van de ME MSc tracks "Aeronautics" en "Energy and Flow".

Expertises

  • Material Science

    • Film Thickness
  • Physics

    • Model
    • Variations
    • Pressure
    • Boundary Layer
  • Engineering

    • Turbulence
    • Trailing Edge
    • Thickness

Organisaties

Nevenwerkzaakheden

  • NWOMember Permanent Committee Large-Scale Research Infrastructure

Publicaties

2024
Entropy-Patch-Choked-Nozzle Interaction: Quasi-Steady-Modeling-Regime Limits ProbedIn 30th AIAA/CEAS Aeroacoustics Conference (2024). Kowalski, K., Hulshoff, S. J., Ströer, P., Withag, J., Genot, A., Morgans, A. S., Bake, F., Venner, K., Sanders, M. & Hirschberg, L.https://doi.org/10.2514/6.2024-3113Comparison Between Band-Stop and Broadband Noise Absorbers for Propellers in Non-Uniform InflowIn 30th AIAA/CEAS Aeroacoustics Conference (2024). Castelucci, L. A., Sanders, M., Wijnant, Y., Venner, K. & Hirschberg, L.https://doi.org/10.2514/6.2024-3043Scalable Jet-Based Fabrication of PEI-Hydrogel Particles for CO2 Capture, Article e12748 (E-pub ahead of print/First online). Jiang, J., van Daatselaar, E., Wijnja, H., de Koning Gans, T., Schellevis, M., Venner, C. H., Brilman, D. W. F. & Visser, C. W.https://doi.org/10.1002/eem2.12748Boundary layer development and flow-induced noise of airfoils: The effect of high inflow turbulence on trailing-edge noise generation. University of Twente. Botero Bolivar, L.https://doi.org/10.3990/1.9789036559904Physical and perceptual prediction of wind turbine noise. University of Twente. Bresciani, A. P. C.https://doi.org/10.3990/1.9789036559546Trailing-edge far-field noise and noise source characterization in high inflow turbulence conditions, 803-816. Botero-Bolívar, L., Santos, F. L. d., Venner, C. H. & Santana, L. D. d.https://doi.org/10.1121/10.0024611Experimental study of surface noise mitigation for propeller in boundary layer ingestion configurationIn Proceedings of the 10th Convention of the European Acoustics Association Forum Acusticum 2023. Castelucci, L. A., Venner, C. H. & Wijnant, Y. H.https://doi.org/10.61782/fa.2023.0814
2023
Propeller Influence on Surface Pressure Fluctuation Under Boundary Layer Ingestion ConditionIn INTER-NOISE and NOISE-CON Congress and Conference Proceedings. Institute of Noise Control Engineering. Castelucci, L. A. & Venner, C. H.https://doi.org/10.3397/in_2023_0417Numerical study of inflow turbulence distortion and noise for airfoils, Article 115112. Ribeiro, A. F. P., dos Santos, F. L., Venner, K. & de Santana, L. D.https://doi.org/10.1063/5.01690003D printing of foams for acoustic applications. Ipskamp Printing. Rastogi, P.https://doi.org/10.3990/1.9789036558563Broadband Flow-Induced Noise for Airfoils: Inflow Turbulence Distortion Effect on Leading-Edge Noise Generation and Prediction. University of Twente. Dos Santos, F. L.https://doi.org/10.3990/1.9789036558006Experimental and predicted leading- and trailing-edge noise of symmetric airfoils under zero mean-loading, Article 109579. Botero-Bolívar, L., dos Santos, F. L., Venner, C. H. & de Santana, L. D.https://doi.org/10.1016/j.apacoust.2023.109579Wall-pressure spectra, spanwise correlation, and far-field noise measurements of a NACA 0008 airfoil under uniform and turbulent inflows, Article 109546. dos Santos, F. L., Botero-Bolívar, L., Venner, C. H. & de Santana, L. D.https://doi.org/10.1016/j.apacoust.2023.109546HeatQuiz: Combining Flipped-Classroom, Game-Based Learning, and Systematic Problem Analysis in Heat Transfer EducationIn Proceedings of the 17th International Heat Transfer Conference, IHTC-17. Rohlfs, W., Venner, C. H., Alarouri, M., Kuiphuis, D. J. G. & Kneer, R.Response of elastic/viscoelastic layers on an elastic half-space in rolling contacts: Towards a new modeling approach for elastohydrodynamic lubrication, Article 108545. Zhao, Y., Liu, H. C., Morales-Espejel, G. E. & Venner, C. H.https://doi.org/10.1016/j.triboint.2023.108545Engineering of branched fluidic networks that minimise energy dissipation, Article A6. Smink, J. S., Venner, C. H., Visser, C. W. & Hagmeijer, R.https://doi.org/10.1017/jfm.2023.433Aerodynamics Flapping-Flight Robotic Bird using Unsteady Lifting-Line Method. Groot Koerkamp, L. H., Hoeijmakers, H. W. M., Venner, C. H. & Stramigioli, S.https://doi.org/10.2514/6.2023-4527Schlieren Visualization of Dual Injection in Supersonic Crossflow. Hoeijmakers, H. W. M., Smink, J. S., de Maag, S. & Venner, C. H.Analysis of the remote microphone probe technique for the determination of turbulence quantities, Article 109387. dos Santos, F. L., Botero-Bolívar, L., Venner, C. H. & de Santana, L. D.https://doi.org/10.1016/j.apacoust.2023.109387Design of energy efficient adaptive hearing protection device. University of Twente. Mahajan, J. N.Leading Edge Vortex Formation on a Flapping Wing Robotic Bird. Groot Koerkamp, L. H., Hoeijmakers, H. W. M., Venner, C. H. & Stramigioli, S.https://doi.org/10.2514/6.2023-4243Mechanistic driving force for martensite decay in rolling contact fatigue, Article 108470. Andric, P., Echeverri Restrepo, S., Lai, J., Venner, C. H. & Vegter, E.https://doi.org/10.1016/j.triboint.2023.108470A thermal EHL investigation for finite line contact under starved condition on bush-pin hinge pairs in industrial chains, 1119-1132. Zhang, M., Wang, J., Venner, C. H. & Sun, H.https://doi.org/10.1177/13506501221143071Influence of the Freestream Turbulence on Wall-Pressure Fluctuations Along an Airfoil Chord, 2309-2313. Botero-Bolívar, L., Dos Santos, F. L., Venner, C. H. & de Santana, L.https://doi.org/10.2514/1.J062567Study of the development of a boundary layer using the remote microphone probe technique, Article 88. Botero-Bolívar, L., dos Santos, F. L., Venner, C. H. & de Santana, L. D.https://doi.org/10.1007/s00348-023-03630-x

Onderzoeksprofielen

Vakken collegejaar 2023/2024

Vakken in het huidig collegejaar worden toegevoegd op het moment dat zij definitief zijn in het Osiris systeem. Daarom kan het zijn dat de lijst nog niet compleet is voor het gehele collegejaar.

Vakken collegejaar 2022/2023

Adres

Universiteit Twente

Horst Complex (gebouwnr. 20), kamer N246
De Horst 2
7522 LW Enschede

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Universiteit Twente

Horst Complex (gebouwnr. 20), kamer N236
De Horst 2
7522 LW Enschede

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Organisaties

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