Turbulence transition in shear flows: What can we learn from pipe flow?

Prof. Dr. Bruno Eckhardt, Philipps-Universität Marburg

4 Nov 2009, 15:15; Location: S1|10-103

According to textbook wisdom, flow down a pipe becomes turbulent near a Reynolds number of about 2000. This simple statement misses many subtleties of the transition: the absence of a linear stability of the laminar flow, the sensitive dependence on perturbations that sometimes succed and sometimes fail to induce turbulence and the unexpected observation that the turbulent state, once achieved, is not persistent but can decay. All these observations are compatible with the formation of a strange saddle in the state space of the system. I will focus on three aspects: on the appearance of 3-d coherent states, on the information contained in lifetime statistics and on results on the boundary between laminar and turbulent regions. They suggest a generic structuring of state space in flows where turbulent and laminar flow coexist, such as plane Couette flow, Poiseuille flow and perhaps even boundary layers.

This talk is provided together with Study Center of Mechanics.

Category: CE Seminar


Technische Universität Darmstadt

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D-64293 Darmstadt

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