首页> 外文期刊>International journal for numerical methods in biomedical engineering >Turbulence and turbulent flow structures in a ventricular assist device-A numerical study using the large-eddy simulation
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Turbulence and turbulent flow structures in a ventricular assist device-A numerical study using the large-eddy simulation

机译:室心辅助装置中的湍流和湍流结构 - 一种使用大涡模拟的数值研究

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Numerical flow simulations that analyze the turbulent flow characteristics within a turbopump are important for optimizing the efficiency of such machines. In the case of ventricular assist devices (VADs), turbulent flow characteristics must be also examined in order to improve hemocompatibility. Turbulence increases the shear stresses in the VAD flow, which can lead to an increased damage to the transported blood components. Therefore, an understanding of the turbulent flow patterns and their significance for the numerical blood damage prediction is particularly important for flow optimizations in VADs in order to identify and thus minimize flow regions where blood could be damaged due to high turbulent stresses. Nevertheless, the turbulence occurring in VADs and the local turbulent structures that lead to increased turbulent stresses have not yet been analyzed in detail in these machines. Therefore, this study aims to investigate the turbulence in an axial VAD in a comprehensive and double tracked way. First, the flow in an axial VAD was computed using the large-eddy simulation method, and it was verified that the majority of the turbulence was directly resolved by the simulation. Then, the turbulent flow state of the VAD was quantified globally. For this purpose, a self-designed evaluation method, the power loss analysis, was used. Subsequently, local flow regions and flow structures were identified where significant turbulent stresses prevail. It will be shown that the identified regions are universal and will also occur in other axial blood pumps as well, for example, in the HeartMate II.
机译:分析涡轮泵内的湍流特性的数值流量模拟对于优化这种机器的效率很重要。在心室辅助装置(VADS)的情况下,还必须检查湍流特性以改善血液振动性。湍流增加了VAD流中的剪切应力,这可能导致对输送的血液成分的损伤增加。因此,对湍流图案的理解及其对数值血压预测的重要性对于VAD中的流动优化尤其重要,以便识别,从而最小化由于高湍流应力而可能损坏血液的流量区域。然而,在这些机器中尚未详细分析VAD中发生的湍流和导致湍流应力增加的局部湍流结构。因此,本研究旨在以全面和双追踪的方式研究轴向VAD中的湍流。首先,在轴向VAD流使用大涡模拟方法计算,并且可以确认,大部分的湍流的直接通过仿真解决。然后,在全球范围内量化VAD的湍流状态。为此目的,使用自动设计的评估方法,功率损耗分析。随后,鉴定了局部流量区域和流动结构,其中在显着的湍流应力普遍存在。将表明,所识别的区域是通用的,并且还将在其他轴向泵中发生,例如,在心脏内II中。

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