Agić Ante, Mijović Budimir, Nikolić Tatjana
Faculty of Chemical Engineering and Technology, University of Zagreb, Zagreb, Croatia.
Coll Antropol. 2007 Jun;31(2):523-9.
The cardiovascular disease is one of most frequent cause deaths in modern society. The objective of this work is analyse the effect of dynamic vascular geometry (curvature, torsion, bifurcation) and pulsatile blood nature on secondary flow, wall shear stress and platelet deposition. The problem was examined as multi-scale physical phenomena using perturbation analysis and numerical modelling. The secondary flow determined as influence pulsatile pressure, vascular tube time-dependent bending and torsion on the main axial flow. Bifurcation and branching phenomena are analysed experimentally through, blood-like fluid pulsatile flow across elastic rubber-like Y-model model. The problem complex geometry near branching in platelet deposit modelling is resolved numerically as Falker-Skan flow.
心血管疾病是现代社会中最常见的死亡原因之一。这项工作的目的是分析动态血管几何形状(曲率、扭转、分叉)和脉动血液特性对二次流、壁面剪应力和血小板沉积的影响。该问题作为多尺度物理现象,采用摄动分析和数值模拟进行研究。二次流被确定为脉动压力、血管管随时间变化的弯曲和扭转对主流轴向流的影响。通过在弹性橡胶状Y型模型中进行类血液流体的脉动流实验来分析分叉和分支现象。在血小板沉积建模中,靠近分支处复杂的几何问题通过数值方法求解为Falker-Skan流。