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Issue title: Proceedings of the Fourth International Congress of Biorheology. Jikei University School of Medicine, Tokyo, Japan, 27 July – 1 August 1981. Dedicated to Alex Silberberg
Guest editors: Alfred L. Copley
Article type: Research Article
Authors: Whittington, R.B.a | Harkness, J.b
Affiliations: [a] Bioengineering Unit, University of Liverpool, England | [b] Musgrove Park Hospital, Taunton, Somerset, England
Note: [1] Paper prepared at the 4th International Congress of Biorheology, Tokyo, 1981.
Note: [] Accepted by: Editor S. Oka
Abstract: The viscometers used were: (a) a proprietary rotational coaxial-cylinder instrument; and (b) a Harkness capillary-tube viscometer. In (a), the mean shear-rate is selected by the choice of rotational speed. In (b), the wall shear-stress is selected by the choice of driving-pressure. If the Viscosity is varied, the mean shear-rate varies, at constant wall shear-stress. The present paper attempts to show how, in principle, a complete family of “constant-rate” (rotational) curves can be computer-plotted from two suitably-spaced capillary-tube measurements. The reverse process, involving the correction of “playback” errors, is touched upon. A variable “Einstein coefficient” is derived from the principal parameters in the computer solution; and the basic problems of compatibility in “rates of shear” are discussed.
Keywords: Viscosity, haematocrit, shear
DOI: 10.3233/BIR-1982-191-220
Journal: Biorheology, vol. 19, no. 1-2, pp. 175-184, 1982
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