...
首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >Role of vortices in cavitation formation in the flow at the closure of a bileaflet mitral mechanical heart valve
【24h】

Role of vortices in cavitation formation in the flow at the closure of a bileaflet mitral mechanical heart valve

机译:涡流在双叶二尖瓣机械性心脏瓣膜关闭时血流形成中的作用

获取原文
获取原文并翻译 | 示例

摘要

Bubble cavitation occurs in the flow field when local pressure drops below vapor pressure. One hypothesis states that low-pressure regions in vortices created by instantaneous valve closure and occluder rebound promote bubble formation. To quantitatively analyze the role of vortices in cavitation, we applied particle image velocimetry (PIV) to reduce the instantaneous fields into plane flow that contains information about vortex core radius, maximum tangential velocity, circulation strength, and pressure drop. Assuming symmetrical flow along the center of the St. Jude Medical 25-mm valve, flow fields downstream of the closing valve were measured using PIV in the mitral position of a circulatory mock loop. Flow measurements were made during successive time phases immediately following the impact of the occluder with the housing (O/H impact) at valve closing. The velocity profile near the vortex core clearly shows a typical Rankine vortex. The vortex strength reaches maximum immediately after closure and rapidly decreases at about 10 ms, indicating viscous dissipation; vortex strength also intensifies with rising pulse rate. The maximum pressure drop at the vortex center is approximately 20 mmHg, an insignificant drop relative to atmospheric vapor pressures, which implies vortices play a minor role in cavitation formation.
机译:当局部压力降至蒸气压以下时,在流场中会发生气泡空化。一种假设指出,瞬时阀门关闭和封堵器反弹所形成的涡流中的低压区域会促进气泡的形成。为了定量分析涡流在空化中的作用,我们应用了粒子图像测速技术(PIV)将瞬时场减少到平面流中,该流包含有关涡流芯半径,最大切向速度,循环强度和压降的信息。假设沿着St. Jude Medical 25毫米阀的中心对称流动,则使用PIV在循环模拟回路的二尖瓣位置测量关闭阀下游的流场。在紧接封堵器在阀关闭时对外壳造成冲击(O / H冲击)之后的连续时间阶段中进行流量测量。涡旋核心附近的速度分布清楚地显示出典型的兰金涡旋。涡流强度在闭合后立即达到最大值,并在约10 ms时迅速下降,表明有粘性消散。涡流强度也随着脉冲率的上升而增强。涡旋中心的最大压降约为20 mmHg,相对于大气蒸气压而言微不足道,这意味着涡旋在空化形成中的作用很小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号