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首页> 外文期刊>Journal of biomechanical engineering. >Wall shear-rate estimation within the 50cc Penn State artificial heart using particle image velocimetry.
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Wall shear-rate estimation within the 50cc Penn State artificial heart using particle image velocimetry.

机译:使用粒子图像测速仪估算50cc Penn State人造心脏内的壁剪切率。

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摘要

Particle image velocimetry (PIV) has been gaining acceptance as a routine tool to evaluate the flow fields associated with fluid mechanical devices. We have developed algorithms to investigate the wall shear-rates within the 50cc Penn State artificial heart using low magnification, conventional particle image velocimetry (PIV). Wall shear has been implicated in clot formation, a major post-implant problem with artificial hearts. To address the issues of wall scattering and incomplete measurement volumes, associated with near wall measurements, we have introduced a zero masking and a fluid centroid shifting technique. Simulations using different velocity fields were conducted with the techniques to assess their viability. Subsequently, the techniques were applied to the experimental data collected. The results indicate that the size of the interrogation region should be chosen to be as small as possible to maximize resolution while large enough to ensure an adequate number of particles per region. In the current study, a 16 x 16 interrogation window performed well with good spatial resolution and particle density for the estimation of wall shear rate. The techniques developed with PIV allow wall shear-rate estimates to be obtained from a large number of sites at one time. Because a planar image of a flow field can be determined relatively rapidly, PIV may prove useful in any preliminary design procedure.
机译:粒子图像测速仪(PIV)已被接受为评估与流体机械设备相关的流场的常规工具。我们已经开发出算法,可以使用低倍率,常规粒子图像测速技术(PIV)研究50cc Penn State人造心脏内的壁剪切率。壁剪与血凝块的形成有关,这是人工心脏植入后的主要问题。为了解决与近壁测量相关的壁散射和不完整的测量体积的问题,我们引入了零掩蔽和流体质心偏移技术。使用不同的速度场进行了仿真,以评估其可行性。随后,将技术应用于收集的实验数据。结果表明,应将查询区域的大小选择为尽可能小,以最大程度地提高分辨率,同时又要足够大,以确保每个区域有足够数量的粒子。在当前的研究中,一个16 x 16的询问窗口表现良好,具有良好的空间分辨率和粒子密度,可用于估算壁切速率。用PIV开发的技术允许一次从大量位置获得壁面剪切速率估算值。由于可以相对快速地确定流场的平面图像,因此PIV在任何初步设计过程中都可能有用。

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