Department of Mathematics and Computer Science, Emory University, 400 Dowman Drive, Atlanta, GA 30322, USA.
Int J Numer Method Biomed Eng. 2013 Nov;29(11):1192-213. doi: 10.1002/cnm.2568. Epub 2013 Jun 24.
We discuss in this paper the validation of an open source framework for the solution of problems arising in hemodynamics. The proposed framework is assessed through experimental data for fluid flow in an idealized medical device with rigid boundaries and a numerical benchmark for flow in compliant vessels. The core of the framework is an open source parallel finite element library that features several algorithms to solve both fluid and fluid-structure interaction problems. The numerical results for the flow in the idealized medical device (consisting of a conical convergent, a narrow throat, and a sudden expansion) are in good quantitative agreement with the measured axial components of the velocity and pressures for three different flow rates corresponding to laminar, transitional, and turbulent regimes. We emphasize the crucial role played by the accuracy in performing numerical integration, mesh, and time step to match the measurements. The numerical fluid-structure interaction benchmark deals with the propagation of a pressure wave in a fluid-filled elastic tube. The computed pressure wave speed and frequency of oscillations, and the axial velocity of the fluid on the tube axis are close to the values predicted by the analytical solution associated with the benchmark. A detailed account of the methods used for both benchmarks is provided.
本文讨论了开源框架在解决血液动力学问题中的验证。通过刚性边界理想化医疗器械内的流场实验数据和顺应性容器流场的数值基准对所提出的框架进行评估。该框架的核心是一个开源并行有限元库,该库具有多种算法,可用于解决流体和流固相互作用问题。理想医疗器械(由锥形收敛段、狭窄喉道和突然扩张段组成)内流场的数值结果与三个不同流速(对应层流、过渡流和湍流)下测量得到的轴向速度和压力分量具有良好的定量一致性。我们强调了在进行数值积分、网格和时间步长以匹配测量值时,准确性所起的关键作用。数值流固相互作用基准涉及充满液体的弹性管中压力波的传播。计算出的压力波速度和振荡频率以及管轴上的流体轴向速度与基准相关联的解析解预测值接近。为两个基准都提供了详细的方法说明。