Towards optimal design of patient isolation units in emergency rooms to prevent airborne virus transmission: From computational fluid dynamics to data-driven modeling

Jong Hyeon Lee,Jae Woo Shim, Min Hyuk Lim, Changhoon Baek,Byoungjun Jeon,Minwoo Cho,Sungwoo Park,Dong Hyun Choi, Byeong Soo Kim,Dan Yoon,Young Gyun Kim, Seung Yeon Cho, Kyung-Min Lee, Myoung-Souk Yeo, Hangman Zo, Sang Do Shin,Sungwan Kim

Computers in Biology and Medicine(2024)

引用 0|浏览1
暂无评分
摘要
Background Patient isolation units (PIUs) can be an effective method for effective infection control. Computational fluid dynamics (CFD) is commonly used for PIU design; however, optimizing this design requires extensive computational resources. Our study aims to provide data-driven models to determine the PIU settings, thereby promoting a more rapid design process. Method Using CFD simulations, we evaluated various PIU parameters and room conditions to assess the impact of PIU installation on ventilation and isolation. We investigated particle dispersion from coughing subjects and airflow patterns. Machine-learning models were trained using CFD simulation data to estimate the performance and identify significant parameters. Results Physical isolation alone was insufficient to prevent the dispersion of smaller particles. However, a properly installed fan filter unit (FFU) generally enhanced the effectiveness of physical isolation. Ventilation and isolation performance under various conditions were predicted with a mean absolute percentage error of within 13%. The position of the FFU was found to be the most important factor affecting the PIU performance. Conclusion Data-driven modeling based on CFD simulations can expedite the PIU design process by offering predictive capabilities and clarifying important performance factors. Reducing the time required to design a PIU is critical when a rapid response is required.
更多
查看译文
关键词
COVID-19,Airborne virus,Patient isolation unit,Computational fluid dynamics,Data-driven machine-learning-based modeling
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要