首页> 外文期刊>Journal of Biomechanics >Numerical study on the effect of steady axial flow development in the human aorta on local shear stresses in abdominal aortic branches.
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Numerical study on the effect of steady axial flow development in the human aorta on local shear stresses in abdominal aortic branches.

机译:人体主动脉轴流稳定发展对腹主动脉分支局部切应力影响的数值研究。

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The three-dimensional flow through a rigid model of the human abdominal aorta complete with iliac and renal arteries was predicted numerically using the steady-state Navier Stokes equations for an incompressible. Newtonian fluid. The model adapted for our purposes was determined from data obtained from cine-CT images taken of a glass chamber that was constructed based on anatomical averages. The iliac arteries had a bifurcation angle of approximately 35 and a branch-to-trunk area ratio of 1.27. whereas the renal arteries had left and right branch angles of 40 and an area ratio of 0.73. The numerical tool FLOW3D (AEA Industrial Technology, Oxfordshire, UK) utilized body-fitted coordinates and a finite volume discretization procedure. Purely axial velocity profiles were introduced at the entrance of the model for a range of cardiac outputs. The four-branch numerical model developed for this investigation produced flow and shear conditions comparable to those found in other reported works. The total wall shear stress distribution in the iliac and renal arteries followed standard trends. with maximum shear stresses occurring in the apex region and lower shear stresses occurring along the lateral walls. Shear stresses and flow rate ratios in the downstream arteries were more effected by inlet Re than the upstream arteries. These results will be used to compare further simulations which take into effect the rotational component of flow which is present in the aortic arch.
机译:使用稳态Navier Stokes方程对不可压缩的人体腹主动脉的刚性模型进行完整的三维流动,该模型带有和肾动脉。牛顿流体。根据从解剖平均数构建的玻璃腔室的电影CT图像获得的数据,确定了适合我们目的的模型。动脉的分叉角约为35,分支与躯干的面积比为1.27。肾动脉的左右分支角为40,面积比为0.73。数值工具FLOW3D(AEA工业技术,英国牛津)使用了拟合坐标和有限体积离散化程序。对于各种心输出量,在模型的入口处引入了纯轴向速度曲线。为该研究开发的四分支数值模型产生的流动和剪切条件可与其他已报道的工作相媲美。 wall动脉和肾动脉的总壁切应力分布遵循标准趋势。最大的剪应力出现在顶点区域,而较低的剪应力沿着侧壁出现。入口Re对下游动脉的剪应力和流速比的影响比上游动脉更大。这些结果将用于比较其他模拟,这些模拟将影响主动脉弓内血流的旋转分量。

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