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首页> 外文期刊>European Physical Journal Plus >Suspension model for blood flow through a catheterized arterial stenosis with peripheral layer of plasma free from cells
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Suspension model for blood flow through a catheterized arterial stenosis with peripheral layer of plasma free from cells

机译:悬液模型通过导管动脉狭窄的血流,血浆外周层无细胞

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摘要

The present article describes the blood flow in a catheterized artery with radially symmetric and axially asymmetric stenosis. To understand the effects of red cell concentration, plasma layer thickness and catheter size simultaneously, blood is considered by a two-layered model comprising a core region of suspension of all the erythrocytes (particles) supposed to be a particle-fluid mixture and a peripheral zone of cell-free plasma. The analytical expressions for flow features, such as fluid phase and particle phase velocities, flow rate, wall shear stress and resistive force are obtained. It is witnessed that the presence of the catheter causes a substantial increase in the frictional forces on the walls of arterial stenosis and catheter, shear stress and flow resistance, in addition to that, have occurred due to the presence of red cells concentration (volume fraction density of the particles) and the absence of peripheral plasma layer near the wall of the stenosed artery. The introduction of an axially asymmetric nature of stenosis and plasma layer thickness causes significant reduction in flow resistance. One can notice that the two-phase fluid (suspension model) is more profound to the thickness of peripheral plasma layer and catheter than the single-phase fluid.
机译:本文介绍了具有径向对称和轴向不对称狭窄的导管动脉中的血流。为了同时了解红细胞浓度,血浆层厚度和导管尺寸的影响,通过两层模型来考虑血液,该模型包括所有被认为是颗粒-流体混合物的红细胞(颗粒)的悬浮液核心区域和周围区域无细胞血浆区域。得到了流体特征的解析表达式,例如流体相和颗粒相的速度,流速,壁切应力和阻力。可以看到,导管的存在导致动脉狭窄和导管壁上的摩擦力大大增加,此外,由于存在红细胞浓度(体积分数),还产生了剪切应力和流动阻力。密度)和狭窄的动脉壁附近没有外围血浆层。狭窄和血浆层厚度的轴向不对称性质的引入导致流动阻力的显着降低。可以注意到,两相流体(悬浮模型)比单相流体对周围血浆层和导管的厚度更深。

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