Kleiser, Leonhard

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Number of items: 8.

Journal Article

Grieser, Bernhard; Kleiser, Leonhard; Obrist, Dominik (2016). Identifying Mechanisms Behind the Tullio Phenomenon: a Computational Study Based on First Principles. Journal of the Association for Research in Otolaryngology JARO, 17(2), pp. 103-118. Springer 10.1007/s10162-016-0553-0

John, Michael; Obrist, Dominik; Kleiser, Leonhard (2016). Secondary instability and subcritical transition of the leading-edge boundary layer. Journal of fluid mechanics, 792, pp. 682-711. Cambridge University Press 10.1017/jfm.2016.117

John, Michael O.; Obrist, Dominik; Kleiser, Leonhard (2014). A class of exact Navier-Stokes solutions for homogeneous flat-plate boundary layers and their linear stability. Journal of fluid mechanics, 752, pp. 462-484. Cambridge University Press 10.1017/jfm.2014.346

John, Michael O.; Obrist, Dominik; Kleiser, Leonhard (2014). Stabilization of subcritical bypass transition in the leading-edge boundary layer by suction. Journal of Turbulence, 15(11), pp. 795-805. Taylor & Francis 10.1080/14685248.2014.933226

Bühler, Stefan; Obrist, Dominik; Kleiser, Leonhard (2014). Laminar and turbulent nozzle-jet flows and their acoustic near-field. Physics of Fluids, 26(8), 086103. AIP Publishing 10.1063/1.4890493

Edom, Elisabeth; Obrist, Dominik; Henniger, Rolf; Kleiser, Leonhard; Sim, Jae-Hoon; Huber, Alexander (2013). The effect of rocking stapes motions on the cochlear fluid flow and on the basilar membrane motion. Journal of the Acoustical Society of America, 134(5), pp. 3749-3758. AIP Publishing 10.1121/1.4824159

Conference or Workshop Item

Grieser, Bernhard; Kleiser, Leonhard; Obrist, Dominik (22 December 2014). Fluid-structure interaction of an elastic pipe immersed inside a coaxial rigid pipe: a model for the Tullio phenomenon. Proceedings in Applied Mathematics and Mechanics, 14(1), pp. 491-492. Wiley 10.1002/pamm.201410233

John, Michael O.; Obrist, Dominik; Kleiser, Leonhard (2014). Stabilizing a leading-edge boundary layer subject to wall suction by increasing the Reynolds number. IUTAM Procedia.

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