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The effect of turbulence model on predicting the development and progression of coronary artery atherosclerosis

机译:湍流模型对预测冠状动脉粥样硬化发展和进展的影响

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A severe case of stenosis in coronary arteries results in turbulence in the blood flow which may lead to the formation or progression of atherosclerosis. This study investigated the turbulent blood flow in a coronary artery with rigid walls, as well as 80% single and double stenoses on blood flow. A finite element-based software package, ADINA 8.8, was employed to model the blood flow. The hemodynamic parameters of blood, such as the Oscillatory Shear Index (OSI) and the Mean Wall Shear Stress (Mean WSS) were obtained by both k-ε and k-ω turbulence models and then compared. According to the results, the negative pressure predicted by the k-ω turbulence model was several times greater than that by the k-ε turbulence model for both single and double stenoses. This, in turn, leads to the collapse of artery walls and irreparable injuries to the downstream extremity. Furthermore, the k-ω model predicted a larger reverse flow region in the post-stenotic region. In other words, the k-ω turbulence model predicts a larger part of the post-stenotic region to be prone to disease and the k-ε turbulence model predicted a higher rate of plaque growth. Moreover, the k-ω model predicted a much more intense reverse flow region than the k-ε model, which itself can lead to blood pressure disease.
机译:冠状动脉中狭窄的严重情况导致血液流动的湍流,这可能导致动脉粥样硬化的形成或进展。本研究调查了刚性壁的冠状动脉中的湍流血流,以及血流上的80%单缩小。采用有限元基软件包Adina 8.8来模拟血液流动。通过K-ε和K-ω湍流模型获得血液的血流动力学参数,例如振荡剪切指数(OSI)和平均壁剪切应力(平均壁剪切应力(平均壁剪切应力(平均壁剪切应力(平均壁剪切应力)。根据结果​​,K-ω湍流模型预测的负压比单一和双狭窄的K-ε湍流模型的数倍大。反过来,这导致动脉墙壁的崩溃以及下游肢体的无法弥补的伤害。此外,K-ω模型预测了后狭窄区域中的较大的反向流动区域。换句话说,k-ω湍流模型预测较大的后狭窄区域的较大部分易于疾病,K-ε湍流模型预测了较高的斑块生长速率。此外,K-Ω模型预测了比K-ε模型更强烈的反向流动区域,它本身可以导致血压疾病。

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