Drops: Impacts on Solid II

ORAL · X20 · ID: 1767515





Presentations

  • ORAL

    Publication: The characteristic rupture height of the mediating air film beneath an impacting drop on atomically smooth mica. Kaviani and Kolinski, Arxiv: https://doi.org/10.48550/arXiv.2302.12740

    Presenters

    • John M Kolinski

      • Ecole Polytechnique Federale de Lausanne
      • EMSI - IGM - STI - EPFL

    Authors

    • Ramin Kaviani

      • EPFL-STI-IGM-EMSI
    • John M Kolinski

      • Ecole Polytechnique Federale de Lausanne
      • EMSI - IGM - STI - EPFL

    View abstract →

  • ORAL

    Presenters

    • Joe El Ghossein

      • Kevin T. Crofton Department of Aerospace and Ocean Engineering, Virginia Tech, Blacksburg, VA 24060, USA

    Authors

    • Joe El Ghossein

      • Kevin T. Crofton Department of Aerospace and Ocean Engineering, Virginia Tech, Blacksburg, VA 24060, USA
    • Olivier Coutier-Delgosha

      • Kevin T. Crofton Department of Aerospace and Ocean Engineering, Virginia Tech, Blacksburg, VA 24060, USA
      • Virginia Tech
      • Graduate Advisor
    • Chinmay Kendurkar

      • Kevin T. Crofton Department of Aerospace and Ocean Engineering, Virginia Tech, Blacksburg, VA 24060, USA

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  • ORAL

    Presenters

    • Christophe Josserand

      • CNRS

    Authors

    • Christophe Josserand

      • CNRS
    • Julien Xu

      • LadHyX
    • Rodolphe Grivet

      • LadhyX-Ecole polytechnique
      • LadhyX, Ecole polytechnique-CNRS, Palaiseau, France
    • Wladimir Sarlin

      • LadHyX
    • Axel Huerre

      • MSC
      • MSC, Université Paris Cité-CNRS, Paris, France
      • MSC, CNRS-Université Paris Cité
    • Virgile Thievenaz

      • Sorbonne University
    • Thomas Seon

      • Institut ∂'Alembert, CNRS, Sorbonne Université
      • Institut ∂'Alembert, CNRS-Sorbonne Université, Paris, France

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  • ORAL

    Publication: Dynamics and interaction of multiple evaporating droplets on compliant substrates, https://doi.org/10.48550/arXiv.2302.00641

    Presenters

    • George Karapetsas

      • Aristotle University of Thessaloniki

    Authors

    • George Karapetsas

      • Aristotle University of Thessaloniki
    • Anna Malachtari

      • Aristotle Univeristy of Thessaloniki
      • Department of Chemical Engineering, Aristotle University of Thessaloniki
    • Ioannis Tsakelidis

      • Aristotle University of Thessaloniki

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  • ORAL

    Publication: M. Kok, J. G. Smith Jr, C. J. Wohl, E. J. Siochi, and T. M. Young, "Critical considerations in the mitigation of insect residue contamination on aircraft surfaces–A review," Progress in Aerospace Sciences, vol. 75, pp. 1–14, 2015.
    -W. S. Coleman, "Roughness due to insects," Boundary Layer and Flow Control, pp. 682747, Jan. 1961, doi: 10.1016/B978-1-4832-1323-1.50006-3 82
    K. G. H. Krishnan, A. Milionis, M. Starr, and E. Loth, "Fruit fly impact outcomes and residue components on an aerodynamic surface," in 53rd AIAA Aerospace Sciences Meeting, 2015, p. 1279.
    K. G. H. Krishnan et al., "Characterization of insect residue on an aerodynamic leading edge," in 8th AIAA Atmospheric and Space Environments Conference, 2016, p. 3445.
    K. G. Krishnan, A. Milionis, F. Tetteh, and E. Loth, "Fruit fly impact on an aerodynamic surface: Types of outcomes and residue components," Aerosp Sci Technol, vol. 69, pp. 181–192, 2017.
    T. M. Lorenzi, C. J. Wohl, R. K. Penner, J. G. Smith, and E. J. Siochi, "Insect residue contamination on wing leading edge surfaces: a materials investigation for mitigation," in 242nd American Chemical Society National Meeting and Exposition, 2011, no. NF1676L12548.
    M. Kok, T. Mertens, D. Raps, and T. M. Young, "Influence of surface characteristics on insect residue adhesion to aircraft leading edge surfaces," Prog Org Coat, vol. 76, no. 11, pp. 1567–1575, 2013.
    M. Kok, E. F. Tobin, P. Zikmund, D. Raps, and T. M. Young, "Laboratory testing of insect contamination with application to laminar flow technologies, Part I: Variables affecting insect impact dynamics," Aerosp Sci Technol, vol. 39, pp. 605–613, 2014.
    K. G. Krishnan, A. Milionis, E. Loth, T. E. Farrell, J. D. Crouch, and D. H. Berry, "Influence of hydrophobic and superhydrophobic surfaces on reducing aerodynamic insect residues," Appl Surf Sci, vol. 392, pp. 723–731, 2017 83
    J. G. Smith, R. Robison, and E. Loth, "An overview of insect residue accretion and mitigation strategies on aerodynamic surfaces," Contamination Mitigating Polymeric Coatings for Extreme Environments, pp. 217–233, 2018.

    Presenters

    • Pierre Lesbats

      • York University

    Authors

    • Pierre Lesbats

      • York University
    • Alidad Amirfazli

      • York Univ

    View abstract →