Wang S M, Inthavong K, Wen J, Tu J Y, Xue C L
School of Energy and Power Engineering, Xi'an Jiaotong University, 710049, China.
Respir Physiol Neurobiol. 2009 May 15;166(3):142-51. doi: 10.1016/j.resp.2009.02.014. Epub 2009 Mar 13.
Knowledge regarding particle deposition processes in the nasal cavity is important in aerosol therapy and inhalation toxicology applications. This paper presents a comparative study of the deposition of micron and submicron particles under different steady laminar flow rates using a Lagrangian approach. A computational model of a nasal cavity geometry was developed from CT scans and the simulation of the fluid and particle flow within the airway was performed using the commercial software GAMBIT and FLUENT. The air flow patterns in the nasal cavities and the detailed local deposition patterns of micron and submicron particles were presented and discussed. It was found that the majority of micron particles are deposited near the nasal valve region and some micron particles are deposited on the septum wall in the turbinate region. The deposition patterns of micron particles in the left cavity are different compared with that in the right one especially in the turbinate regions. In contrast, the deposition for nanoparticles shows a moderately even distribution of particles throughout the airway. Furthermore the particles releasing position obviously influences the local deposition patterns. The influence of the particle releasing position is mainly shown near the nasal valve region for micron particle deposition, while for submicron particles deposition, both the nasal valve and turbinate region are influenced. The results of the paper are valuable in aerosol therapy and inhalation toxicology.
了解鼻腔内的颗粒沉积过程在气溶胶疗法和吸入毒理学应用中至关重要。本文采用拉格朗日方法,对不同稳定层流速率下微米和亚微米颗粒的沉积进行了对比研究。利用CT扫描建立了鼻腔几何结构的计算模型,并使用商业软件GAMBIT和FLUENT对气道内的流体和颗粒流动进行了模拟。展示并讨论了鼻腔内的气流模式以及微米和亚微米颗粒的详细局部沉积模式。研究发现,大多数微米颗粒沉积在鼻瓣区域附近,一些微米颗粒沉积在鼻甲区域的鼻中隔壁上。左鼻腔内微米颗粒的沉积模式与右鼻腔不同,尤其是在鼻甲区域。相比之下,纳米颗粒的沉积在整个气道中呈现出适度均匀的颗粒分布。此外,颗粒释放位置明显影响局部沉积模式。颗粒释放位置的影响主要体现在微米颗粒沉积时靠近鼻瓣区域,而对于亚微米颗粒沉积,鼻瓣和鼻甲区域均受影响。本文的结果在气溶胶疗法和吸入毒理学中具有重要价值。