计算流体力学
格子Boltzmann方法
激光多普勒测速
气流
机械
鼻腔
有限体积法
物理
模拟
材料科学
血流
医学
计算机科学
外科
心脏病学
热力学
作者
Manuel Berger,Martin Pillei,Andreas Mehrle,Wolfgang Recheis,Florian Kral,Michael Kraxner,Z Bárdosi,Wolfgang Freysinger
标识
DOI:10.1016/j.resp.2020.103533
摘要
Objective parameters to assess the physical flow conditions of breathing are scarce and decisions for surgery, e.g. nasal septum correction, mainly rely on subjective surgeon judgment. To define decision supporting parameters, we compare laser Doppler anemometry (LDA) and numerical computational fluid dynamic simulations (CFD) of the airflow velocity vector fields in the nasal cavity, including lattice Boltzmann (LB) and finite volume methods (FVM). The simulations are based on an anonymous patient CT dataset with septal deviation. LDA measurements are preformed using a 3D printed model. Nasal airflow geometry is randomly deformed in order to approximate surgical changes. The root-mean-square velocity error near the nasal valve of laser Doppler anemometry and lattice Boltzmann simulations is 0.071. Changes in geometry similarly affect both measurement and simulation.
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