Rodkiewicz C M, Sinha P, Kennedy J S
Department of Mechanical Engineering, University of Alberta, Edmonton, Canada.
J Biomech Eng. 1990 May;112(2):198-206. doi: 10.1115/1.2891172.
In consideration of the pulsatile blood flow in a conduit, the constitutive equation for the whole human blood of F. J. Walburn and D. J. Schneck (Biorheology, Vol. 13, 1976, pp. 201-210) is utilized. Governing equations are solved numerically yielding the velocity and the shear stress distributions. These results are discussed and compared with the Newtonian fluid, Casson's fluid, and Bingham fluid applications.
考虑到管道中脉动血流的情况,采用了F. J. 瓦尔伯恩和D. J. 施内克(《生物流变学》,第13卷,1976年,第201 - 210页)提出的全血本构方程。通过数值求解控制方程得到速度和剪应力分布。对这些结果进行了讨论,并与牛顿流体、卡森流体和宾汉流体的应用情况进行了比较。