Mathematical Modeling of Airflow on Respiratory Narrowing Due to Mumps Using Finite Element Method

A. Fatahillah, Dafik, S. Aisyah
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Abstract

Mumps can cause narrowing of the airway respiratory when the swelling occurs toward the chest because it can suppress the airways (trachea). This research will be constructed a mathematical model airway on respiratory narrowing due to mumps and solve it by using finite element method. The main problem in this research, how the results of simulation analysis airflow velocity airway on respiratory narrowing due to mumps are influenced by the size of radius of respiratory tract and the initial velocity. After the simulated, will be searched a relative error to be compared with the value of tolerance. Based on the simulation result using MATLAB found that the first simulation influence the size of radius with an initial velocity 0.4 m/s during normal condition (r=0.025 m) velocity in the narrowing airway 0.4010 m/s. If r=0.020 m and r=0.015 m the velocity will be increased being 1.0060 m/s and 3.2199 m/s with relative error value 0.005964. The second simulation an initial velocity and r=0.01631 m and velocity are 0.2 m/s, 0.4 m/s and 0.6 m/s found that the velocity in the narrowing airways increase being 1.0024 m/s, 2.2982 m/s and 4.0929 m/s with relative error value 0.002394.
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基于有限元法的腮腺炎呼吸狭窄气流数学模型
当肿胀发生在胸部时,腮腺炎会导致呼吸道狭窄,因为它会抑制气道(气管)。本研究将建立流行性腮腺炎呼吸道狭窄的数学模型,并采用有限元法求解。本研究的主要问题是,模拟分析流行性腮腺炎呼吸道狭窄气道的气流速度的结果如何受到呼吸道半径大小和初始速度的影响。仿真完成后,将搜索出一个相对误差值与公差值进行比较。基于MATLAB仿真结果发现,在正常情况下(r=0.025 m)初始速度为0.4 m/s时,第一次仿真对半径大小的影响为0.4010 m/s。当r=0.020 m和r=0.015 m时,速度分别增加1.0060 m/s和3.2199 m/s,相对误差值为0.005964。第二次模拟,初始速度r=0.01631 m,速度分别为0.2 m/s、0.4 m/s和0.6 m/s,发现变窄气道内的速度分别增加了1.0024 m/s、2.2982 m/s和4.0929 m/s,相对误差值为0.002394。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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