首页> 外文会议>ASME Turbine Technical Conference and Exposition >LARGE-EDDY AND UNSTEADY REYNOLDS-AVERAGED NAVIER-STOKES SIMULATIONS OF AN AXIAL FLOW PUMP FOR CARDIAC SUPPORT
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LARGE-EDDY AND UNSTEADY REYNOLDS-AVERAGED NAVIER-STOKES SIMULATIONS OF AN AXIAL FLOW PUMP FOR CARDIAC SUPPORT

机译:大型和不稳定的雷诺斯 - 平均轴向泵用于心脏支撑泵的轴流泵模拟

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The use of implantable pumps for cardiac support (Ventricular Assist Devices) has proven to be a promising option for the treatment of advanced heart failure. Avoiding blood damage and achieving high efficiencies represent two main challenges in the optimization process. To improve VADs, it is important to understand the turbulent flow field in depth in order to minimize losses and blood damage. The application of the Large-eddy simulation (LES) is an appropriate approach to simulate the flow field because turbulent structures and flow patterns, which are connected to losses and blood damage, are directly resolved. The focus of this paper is the comparison between an LES and an Unsteady Reynolds-Averaged Navier-Stokes simulation (URANS) because the latter one is the most frequently used approach for simulating the flow in VADs. Integral quantities like pressure head and efficiency are in a good agreement between both methods. Additionally, the mean velocity fields show similar tendencies. However, LES and URANS show different results for the turbulent kinetic energy. Deviations of several tens ofpercent can be also observed for a blood damage parameter, which depend on velocity gradients. Possible reasons for the deviations will be investigated in future works.
机译:使用用于心脏载体(心室辅助装置)的可植入泵已经证明是治疗晚期心力衰竭的有希望的选择。避免血液损坏和实现高效代表优化过程中的两个主要挑战。为了改善VAD,重要的是要深入了解湍流场,以最大限度地减少损失和血液损伤。大涡模拟(LES)的应用是一种模拟流场的适当方法,因为湍流结构和流动模式连接到损耗和血液损坏,直接解决。本文的重点是LES和一个不稳定的雷诺斯 - 平均 - 平均的Navier-Stokes仿真(Urans)之间的比较,因为后者是模拟VAD中流量的最常用方法。两种方法之间的压力头和效率等整体量是良好的一致性。另外,平均速度场显示出类似的趋势。然而,LES和urans对湍流动能显示不同的结果。对于血液损伤参数,也可以观察到几十%的偏差,这取决于速度梯度。将在将来的作品中调查偏差的可能原因。

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