Computational fluid dynamics analysis and PIV validation of a bionic vortex flow pulsatile LVAD.
نویسندگان
چکیده
BACKGROUND Hemocompatibility is highly affected by the flow field in Left Ventricular Assistant Devices (LVAD). OBJECTIVE An asymmetric inflow and outflow channel arrangement with a 45° intersection angle with respect to the blood chamber is proposed to approximate the vascular structure of the aorta and left atrium on the left ventricle. The structure is expected to develop uninterruptible vortex flow state which is similar to the flow state in human left ventricle. METHODS The Computational Fluid Dynamics (CFD) asymmetric model is simulated using ANSYS workbench. To validate the velocity field calculated by CFD, a Particle Image Velocimetry (PIV) experiment is conducted. RESULTS The CFD results show that the proposed blood chamber could generate a shifting vortex flow that would be redirected to the aorta during ejection to form a persistent recirculating flow state, which is similar to the echocardiographic flow state in left ventricle. Both the PIV and the CFD results show the development of a persistent vortex during the pulsatile period. Comparison of the qualitative flow pattern and quantitative probed velocity histories in a pulsatile period shows a good agreement between the CFD and PIV data. CONCLUSION The goal of developing persistent quasi intra-ventricle vortex flow state in LVAD is realized.
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ورودعنوان ژورنال:
- Technology and health care : official journal of the European Society for Engineering and Medicine
دوره 23 Suppl 2 شماره
صفحات -
تاریخ انتشار 2015