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Issue title: Special Issue for the Fifth International Congress of Biorheology. Part II. Baden-Baden, F.R. Germany, 20–24 August 1983
Guest editors: Alfred L. Copley and Siegfried Witte
Article type: Research Article
Authors: Liepsch, D.; * | Moravec, St.
Affiliations: Labor für Fluidmechanik, der Fachhochschule München, Munchen, W. Germany
Note: [*] As a visiting scholar from Sept. 1983–February 1984 at the University of Houston, Department of Mechanical Engineering, Houston, Texas 77004
Abstract: In addition to biochemical factors, hydromechanical influences are responsible for atherogenesis and deposits of blood platelets at bends and bifurcations of human arteries. Hence the flow patterns were simulated in a true-to-scale three-dimensional bifurcation of a human renal artery model and of an arteria femoralis with Newtonian and non-Newtonian blood like fluid. Investigations were made with steady and pulsatile flow. The velocity profiles (at physiological Re-numbers) were measured after the bifurcations with a laser-Doppler-anemometer. In previous works Newtonian fluids were used to investigate the flow in bends and bifurcations of rigid and elastic simplified models. In this paper, emphasis is placed on the difference between rigid and elastic models and also Newtonian and non Newtonian flow behavior. Differences between Newtonian and non Newtonian fluids may especially be expected to occur after branches where the flow has local strong convective elements such as in reverse zones and flow separation points.
Keywords: Laser-Doppler-Anemometer, velocity measurements, bifurcations, haemodynamic, atherogenesis
DOI: 10.3233/BIR-1984-21416
Journal: Biorheology, vol. 21, no. 4, pp. 571-586, 1984
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