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Cardiac-cycle-inspired turbulent drag reduction.
Flows through pipes and channels are in practice almost always turbulent and the eddying motion is responsible for the major part of the encountered friction losses and pumping costs. Conversely, for pulsatile flows, in ... -
Experimental observation of the origin and structure of elastoinertial turbulence
Choueiri, George H.; López, José Manuel; Varshney, Atul; Sankar, Sarath; Hof, Björn (National Academy of Sciences of the United States of America, 2021-11-03) -
Turbulence suppression by cardiac-cycle-inspired driving of pipe flow.
Scarselli, Davide; López-Alonso, José Manuel; Varshney, Atul; Hof, Bjoern (Nature Publishing Group UK, 2023-09-06)Flows through pipes and channels are, in practice, almost always turbulent, and the multiscale eddying motion is responsible for a major part of the encountered friction losses and pumping costs1. Conversely, for pulsatile ...