Ijaz Masooma, Fhrighil Sorcha Ni, Brett Rory, Connolly Jack, Conneely Alan, O'Connor Gerard, O'Halloran Martin, Yousefian Sajjad
Mechanical Engineering, College of Engineering and Informatics, National University of Ireland, Galway, Ireland.
BioInnovate Ireland, National University of Ireland, Galway, Ireland.
Eur J Mech B Fluids. 2023 Jan-Feb;97:93-110. doi: 10.1016/j.euromechflu.2022.09.007. Epub 2022 Sep 30.
The Covid-19 global pandemic has reshaped the requirements of healthcare sectors worldwide. Following the exposure risks associated with Covid-19, this paper aims to design, optimise, and validate a wearable medical device that reduces the risk of transmission of contagious droplets from infected patients in a hospital setting. This study specifically focuses on those receiving high-flow nasal oxygen therapy. The design process consisted of optimising the geometry of the visor to ensure that the maximum possible percentage of harmful droplets exhaled by the patient can be successfully captured by a vacuum tube attached to the visor. This has been completed by deriving a number of concept designs and assessing their effectiveness, based on numerical analysis, computational fluid dynamics (CFD) simulations and experimental testing. The CFD results are validated using various experimental methods such as Schlieren imaging, particle measurement testing and laser sheet visualisation. Droplet capturing efficiency of the visor was measured through CFD and validated through experimental particle measurement testing. The results presented a 5% deviation between CFD and experimental results. Also, the modifications based on the validated CFD results improved the visor effectiveness by 47% and 38% for breathing and coughing events, respectively.
新冠疫情全球大流行重塑了全球医疗保健行业的需求。鉴于与新冠病毒相关的暴露风险,本文旨在设计、优化并验证一种可穿戴医疗设备,以降低医院环境中感染患者传染性飞沫传播的风险。本研究特别关注那些接受高流量鼻导管给氧治疗的患者。设计过程包括优化面罩的几何形状,以确保患者呼出的有害飞沫的最大可能百分比能够被连接到面罩上的真空管成功捕获。这是通过推导多个概念设计并基于数值分析、计算流体动力学(CFD)模拟和实验测试评估其有效性来完成的。CFD结果通过多种实验方法进行验证,如纹影成像、颗粒测量测试和激光片层可视化。通过CFD测量面罩的飞沫捕获效率,并通过实验颗粒测量测试进行验证。结果显示CFD与实验结果之间存在5%的偏差。此外,基于经验证的CFD结果进行的改进分别将面罩在呼吸和咳嗽事件中的有效性提高了47%和38%。