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阻塞性真实人体上呼吸道内流动特性的数值研究

Numerical Investigation of Flow Characteristics in the Obstructed Realistic Human Upper Airway.

作者信息

Liu Xingli, Yan Weiwei, Liu Yang, Choy Yat Sze, Wei Yikun

机构信息

College of Metrology and Measurement Engineering, China Jiliang University, Hangzhou, China.

Department of Mechanical Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong.

出版信息

Comput Math Methods Med. 2016;2016:3181654. doi: 10.1155/2016/3181654. Epub 2016 Sep 20.

Abstract

The flow characteristics in the realistic human upper airway (HUA) with obstruction that resulted from pharyngeal collapse were numerically investigated. The 3D anatomically accurate HUA model was reconstructed from CT-scan images of a Chinese male patient (38 years, BMI 25.7). The computational fluid dynamics (CFD) with the large eddy simulation (LES) method was applied to simulate the airflow dynamics within the HUA model in both inspiration and expiration processes. The laser Doppler anemometry (LDA) technique was simultaneously adopted to measure the airflow fields in the HUA model for the purpose of testifying the reliability of LES approach. In the simulations, the representative respiration intensities of 16.8 L/min (slight breathing), 30 L/min (moderate breathing), and 60 L/min (severe breathing) were conducted under continuous inspiration and expiration conditions. The airflow velocity field and static pressure field were obtained and discussed in detail. The results indicated the airflow experiences unsteady transitional/turbulent flow in the HUA model under low Reynolds number. The airflow fields cause occurrence of forceful injection phenomenon due to the narrowing of pharynx caused by the respiratory illness in inspiration and expiration. There also exist strong flow separation and back flow inside obstructed HUA owing to the vigorous jet flow effect in the pharynx. The present results would provide theoretical guidance for the treatment of obstructive respiratory disease.

摘要

对因咽部塌陷导致阻塞的真实人体上呼吸道(HUA)中的流动特性进行了数值研究。从一名中国男性患者(38岁,BMI 25.7)的CT扫描图像重建了三维解剖学精确的HUA模型。采用大涡模拟(LES)方法的计算流体动力学(CFD)来模拟HUA模型在吸气和呼气过程中的气流动力学。同时采用激光多普勒测速(LDA)技术测量HUA模型中的气流场,以验证LES方法的可靠性。在模拟中,在连续吸气和呼气条件下进行了16.8 L/min(轻度呼吸)、30 L/min(中度呼吸)和60 L/min(重度呼吸)的代表性呼吸强度模拟。详细获得并讨论了气流速度场和静压场。结果表明,在低雷诺数下,HUA模型中的气流经历了不稳定的过渡/湍流流动。由于呼吸道疾病导致的咽部变窄,气流场在吸气和呼气时会出现强力喷射现象。由于咽部强烈的射流效应,阻塞性HUA内部还存在强烈的流动分离和回流。目前的结果将为阻塞性呼吸道疾病的治疗提供理论指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a07a/5048098/b68ef655ed6d/CMMM2016-3181654.001.jpg

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