脉动流
计算流体力学
机械
瞬态(计算机编程)
心室辅助装置
流量(数学)
湍流
计算机科学
模拟
心脏病学
物理
医学
心力衰竭
操作系统
作者
Antonio Gil,R. Navarro,P. Quintero,Andrea Mares Bou
摘要
Abstract Computational Fluid Dynamics (CFD) simulations are widely used to develop and analyze blood-contacting medical devices such as Left Ventricular Assist Devices (LVADs). This work presents an analysis of the transient behavior of two centrifugal LVADs with different designs: HeartWare VAD and HeartMate3. A scale-resolving methodology is followed through Large Eddy Simulations, which allows for the visualization of turbulent structures. The 3D LVAD models are coupled to a 0D 2-element Windkessel model, which accounts for the vascular resistance and compliance of the arterial system downstream of the device. Furthermore, both continuous- and pulsatile-flow operation modes are analyzed. For the pulsatile conditions, the artificial pulse of HeartMate3 is imposed, leading to a larger variation of performance variables in HeartWare VAD than in HeartMate3. Moreover, CFD results of pulsatile-flow simulations are compared to those obtained by accessing the quasi-steady maps of the pumps. The quasi-steady approach is a predictive tool used to provide a preliminary approximation of the pulsatile evolution of flow rate, pressure head, and power, by only imposing a speed pulse and vascular parameters. This preliminary quasi-steady solution can be useful for deciding the characteristics of the pulsatile speed law before running a transient CFD simulation, as the former entails a significant reduction in computational cost in comparison to the latter.
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