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首页> 外文期刊>Journal of Aerosol Science >RECIRCULATING FLOW IN AN EXPANDING ALVEOLAR MODEL: EXPERIMENTAL EVIDENCE OF FLOW-INDUCED MIXING FO AEROSOLS IN THE PULMONARY ACINUS
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RECIRCULATING FLOW IN AN EXPANDING ALVEOLAR MODEL: EXPERIMENTAL EVIDENCE OF FLOW-INDUCED MIXING FO AEROSOLS IN THE PULMONARY ACINUS

机译:扩展的肺泡模型中的循环流动:肺动脉内流动诱发的混合FO气溶胶的实验证据

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摘要

Mixing processes of aerosol particles in the pulmonary acinus by rhythmic expansion of alveolar walls have recently been simulated within a realistic geometric model of the alveolar duct (Tsuda et al., 1995). We studied the velocity fields in an expanding large-scaled silicone copy of this alveolar model applying particle-image-velocimetry. Without wall expansion the flow fields are characterized by a large recirculation region within the alveolar sac and a separation streamline separating this region from the duct flow. With wall expansion, the topology of hte flow entirely changed. A separation streamline at the alveolar opening disappeared. There was convective flow exchange between duct and alveolus. Large recirculation flows were foten observed in the expanding alveolus, indicating the occurrence of stagnation saddle point in the alveolar flow. Such singularity point is characteristic for the occurrence of chaotic flow mixing, which in turn leads to significant increase in deposition of fine aerosols in the pulmonary acinus.
机译:最近,在一个真实的肺泡管几何模型中,通过肺泡壁的节律扩张模拟了肺泡中气溶胶颗粒的混合过程(Tsuda等,1995)。我们使用粒子图像测速技术研究了该肺泡模型的扩大规模的大型硅胶副本中的速度场。没有壁膨胀,流场的特征是肺泡囊内有一个较大的回流区域,并且有一条分离流线将这一区域与导管流隔开。随着壁的膨胀,热流的拓扑结构完全改变了。肺泡开口处的分离流线消失了。导管与肺泡之间存在对流流动交换。在扩大的肺泡中观察到大的回流,表明在肺泡流中出现了停滞鞍点。这种奇异点是发生混乱的气流混合的特征,这反过来导致细小气雾剂在肺腺泡中的沉积显着增加。

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