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Numerical simulation of the non-Newtonian blood flow through aortic Bileaflet mechanical heart valve using fluid-structure interaction approach

机译:使用流体 - 结构相互作用方法对非牛顿血流的数值模拟通过主动脉双翼翼机械心瓣

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Numerical simulation of blood flowing through Bileaflet Mechanical Heart valves (BMHV) has been widely performed in the past to achieve the unprecedented details of the cardiac mechanics of BMHV and the associated blood flow field. However, most of the past studies have assumed the blood to be Newtonian fluid. Although in large arteries like aorta, blood behaves as a Newtonian fluid, however its Non-Newtonian effects can become important as it passes through regions with low shear rates. This paper has modelled blood as a non-Newtonian incompressible fluid and complete physiological cardiac cycle has been simulated. Arbitrary Lagrangian Eulerian approach has been employed to establish blood-leaflet interaction. The results indicated a 58% higher average wall shear stress on the fully closed leaflets when modelling blood as non-Newtonian fluid compared to Newtonian modelling. Therefore, the paper concludes that the blood must be modelled as non-Newtonian fluid to achieve accurate hemodynamics.
机译:过去的血液流动的数值模拟已经在过去广泛进行,实现了BMHV和相关血流场心脏力学的前所未有的细节。然而,过去的大多数研究已经假定血液成为牛顿液。虽然在像主动脉这样的大动脉中,血液表现为牛顿液,但是由于它通过具有低剪切速率的地区,但其非牛顿效应可能变得重要。本文对非牛顿不可压缩的流体和完整的生理心脏周期进行了模拟的血液。已采用任意拉格朗日欧拉的方法建立血细胞传单。结果表明,与牛顿建模相比,在将血液为非牛顿流体时,完全封闭的传单上的平均壁剪切应力增加了58%。因此,本文得出结论,血液必须以非牛顿液体建模以实现准确的血流动力学。

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