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Numerical analysis of blood flow through discrete stenosis: role of eccentricity and spacing ratio

机译:通过离散狭窄的血流数值分析:偏心和间距比的作用

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Stenosis or narrowing of arteries induces a turbulent flow region downstream. Multiple stenosis may lead to flow interference and further disturb the blood flow. This has important clinical implications [1], such as disturbed blood flow and flow recirculation which were correlated with the development of atherosclerosis by upregulating the endothelial cells genes and proteins that cause atherogenesis [2]. Numerical simulation of concentric stenoses by Lee et al [3] have shown that the recirculation zone following the first concentric stenosis affected the flow field at the downstream of the second one, which was dependent on the spacing ratio and degree of stenosis. However, the majority of stenosis is eccentric [2] and the detailed fluid dynamics of multiple stenoses with eccentric constrictions is lacking. The aim of this study is to investigate the interactions between double stenoses with eccentricity using computational fluid dynamics (CFD) simulation. The role of spacing ratio on the recirculation zone and turbulence intensity (TI) were characterized and also compared to concentric cases.
机译:狭窄或狭窄动脉诱导下游的湍流区域。多个狭窄可能导致流动干扰并进一步扰乱血液流动。这具有重要的临床意义[1],例如受干扰的血流和流量再循环,其与动脉粥样硬化的发育相关,这些内皮细胞基因和导致动脉发生的蛋白质[2]。 Lee等[3]的同心缩放的数值模拟表明,第一同心狭窄后的再循环区影响了第二个下游的流场,这取决于间距比和狭窄程度。然而,大多数狭窄是偏心[2],并且缺乏具有偏心收缩的多个狭窄的详细流体动力学。本研究的目的是使用计算流体动力学(CFD)模拟来研究双韵与偏心率之间的相互作用。间距比对再循环区和湍流强度(TI)的作用,并与同心案例相比。

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