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A Computational Study on the Stenosis Circularity for a Severe Stenosed Idealized Artery

机译:严重狭窄理想动脉狭窄循环的计算研究

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Narrowing of blood vessels (stenosis) changes the nature of blood flow through the arteries. The altered flow structures at the downstream of stenosis may generate adverse effects on the arterial wall. Hence, an understanding of the effect of stenosis circularity on the flow behavior at the downstream of stenosis is clinically beneficial. The present study has been carried out on idealized stenosed artery model with severe case of stenosis (75% area reduction) but with the same cross-sectional area that has been selected for the study. The effect of different physiological states (pulse rates) study has been examined through using FLUENT Inc. solver by finite volume method, controlled through user-defined functions. The results indicate that the velocity profiles, oscillatory shear stress, and fluid residence time are significantly affected by the shape of the stenotic region. Fluid residence time in the downstream plays a significant role in understanding the hotspots for the secondary deposition/plaque.
机译:血管缩小(狭窄)改变了通过动脉的血流的性质。在狭窄下游的改变的流动结构可能会对动脉壁产生不利影响。因此,理解狭窄循环对狭窄下游流动行为的影响是临床有益的。本研究已经在理想化的狭窄动脉模型中进行,具有严重的狭窄(减少75%的面积),但具有相同的横截面积,这些研究已经选择了该研究。通过使用Fluent Inc.求解器通过有限体积方法进行了通过使用用户定义的功能来检查不同生理状态(脉冲率)研究的效果。结果表明,速度谱,振荡剪切应力和流体停留时间受到狭窄区域的形状的显着影响。下游的流体停留时间在理解二次沉积/斑块的热点方面发挥着重要作用。

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