Biomedical Fluid Dynamics: Rich Flow Physics in Pulsatile Flow (Keynote)
Michael W. Plesniak, Sean D. Peterson
Abstract
Michael W. Plesniak, Sean D. Peterson
Abstract
Many biological flows, e.g. speech production and the vasculature, are pulsatile and consequently exhibit a rich array of flow physics not observed in steady flows. A classical example in biomedical flows is flow in a rigid walled pipe subjected to non-zero mean harmonic forcing. This flow, solved analytically by Womersley [1], has retrograde flow in the Stokes layer during portions of the cycle. This paper will highlight some of interesting flow phenomena that result from pulsatile flow.
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Many biological flows, e.g. speech production and the vasculature, are pulsatile and consequently exhibit a rich array of flow physics not observed in steady flows. A classical example in biomedical flows is flow in a rigid walled pipe subjected to non-zero mean harmonic forcing. This flow, solved analytically by Womersley [1], has retrograde flow in the Stokes layer during portions of the cycle. This paper will highlight some of interesting flow phenomena that result from pulsatile flow.
Key concepts: Pulsatile flow, Flow (mathematics), Mechanics, Fluid dynamics, Physics, Stokes flow, Medicine, Cardiology