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A computational study on spiral blood flow in stenosed arteries with and without an upstream curved section

机译:有和没有上游弯曲段的狭窄动脉螺旋血流计算研究

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摘要

Spiral and non-spiral blood flows through three-dimensional models of 75% axisymmetric arterial stenosis are investigated by using two-equation standard k  -ω transitional model and Large Eddy Simulation (LES). The arterial stenosis models chosen are straight stenosed tubes without and with upstream curved segments of various angles of curvature. The Reynolds numbers investigated are 500,1000,1500 and 2000. Spiral effect is introduced by taking one-sixth of the bulk velocity as a tangential velocity at the inlet, and the inlet turbulence intensity was introduced for matching experimental results. LES results with a right amount of inlet turbulence intensity matches experimental results better than the k  -ω results. The results show that the spiral flow affects the turbulence kinetic energy in the post stenosis region. Other important results such as the wall pressure and shear stress remain almost unchanged by the spiral velocity. But the presence of the upstream curved segment in artery moderately affects the results of the maximum pressure drop and wall shear stress.
机译:通过使用两方程式标准kω过渡模型和大涡模拟(LES),研究了75%轴对称动脉狭窄的三维模型中的螺旋和非螺旋血流。所选的动脉狭窄模型是不带和具有不同曲率角的上游弯曲段的直管。研究的雷诺数分别为500、1000、1500和2000。通过将六分之一的体速度作为入口处的切线速度引入螺旋效应,并引入入口湍流强度以匹配实验结果。入口湍流强度适中的LES结果与实验结果相比,比kω结果更好。结果表明,螺旋流影响狭窄后区域的湍流动能。其他重要结果,例如壁压力和剪应力,在螺旋速度的作用下几乎保持不变。但是动脉中上游弯曲段的存在会适度影响最大压降和壁切应力的结果。

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  • 作者

    Hye, M.A.; Paul, M.C.;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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