Oliveira Ricardo F, Teixeira Senhorinha F C F, Silva Luís F, Teixeira José C F, Antunes Henedina
Mechanical Engineering Department, School of Engineering, University of Minho, 4800-058, Guimarães, Portugal.
Comput Methods Biomech Biomed Engin. 2012;15(8):825-33. doi: 10.1080/10255842.2011.563359. Epub 2011 May 24.
Asthma is a widespread disease, affecting more than 300 million individuals. The treatment in children is based upon an administration of a pressurised metered-dose inhaler added with a spacer. The efficiency of drug delivery to the patient is strongly affected by the transient airflow pattern inside the spacer device. This paper presents a computational fluid dynamics (CFD) analysis of airflow inside a commercially available spacer device with wide application. This study, carried out in Fluent™, was the basis of an optimisation procedure developed to improve the geometry of the spacer and develop a more efficient product. The results show that an appropriate control of the boundary layer development, by changing the spacer shape, reduces the length of the recirculation zones and improves the flow. It can be concluded that CFD is a powerful technique that can be successfully applied to optimise the geometry of such medical devices.
哮喘是一种广泛传播的疾病,影响着超过3亿人。儿童的治疗基于使用配有储雾罐的压力定量吸入器。药物输送到患者体内的效率受到储雾罐装置内部瞬态气流模式的强烈影响。本文对一种广泛应用的市售储雾罐装置内部的气流进行了计算流体动力学(CFD)分析。这项在Fluent™中进行的研究是为优化储雾罐几何形状并开发更高效产品而制定的优化程序的基础。结果表明,通过改变储雾罐形状对边界层发展进行适当控制,可以减少回流区的长度并改善气流。可以得出结论,CFD是一种强大的技术,可以成功应用于优化此类医疗设备的几何形状。