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Non-Newtonian Behavior of Blood in Oscillatory Flow

机译:振荡流中血液的非牛顿行为

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摘要

Sinusoidal oscillatory flow of blood and of aqueous glycerol solutions was produced in rigid cylindrical tubes. For aqueous glycerol, the amplitude of the measured pressure gradient wave form conformed closely to that predicted by Womersley's theory of oscillatory flow, up to Reynolds numbers approaching 2000. Blood differed significantly from aqueous glycerol solutions of comparable viscosity, especially at low frequencies and high hematocrits. As frequency increased, the hydraulic impedance of blood decreased to a minimum at a frequency of about 1-2 CPS, increasing monotonically at higher frequencies. The dynamic apparent viscosity of blood, calculated from Womersley's theory, decreased with increasing flow amplitude. The reactive component of the hydraulic impedance increased with frequency as predicted by theory; the resistive component decreased with increasing frequency, differing from the resistance of a Newtonian fluid which increased with frequency.
机译:在刚性圆柱管中产生血液和甘油水溶液的正弦振荡流。对于甘油水溶液,测得的压力梯度波形的振幅与Womersley振荡流动理论所预测的振幅非常接近,直到雷诺数接近2000。血液与粘度相当的甘油水溶液存在显着差异,尤其是在低频和高血细胞比容下。随着频率增加,血液的水力阻抗在大约1-2 CPS的频率下降至最低,在较高的频率下单调增加。根据沃默斯利(Womersley)理论计算的血液动态表观粘度随流量振幅的增加而降低。根据理论预测,水力阻抗的无功分量随频率增加。电阻分量随频率增加而减小,这不同于牛顿流体的电阻随频率增加而增加。

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