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Simulation Analysis of Airfoil Deformation of Agricultural UAV under Airflow Disturbance Based on ANSYS

机译:基于ANSYS的农业无人机气流扰动翼型变形仿真分析。

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In order to meet the needs of analysis and correction of measurement errors in airborne distributed POS systems, the simulation analysis method of airfoil deformation of agricultural unmanned aerial vehicle (UAV) based on ANSYS, which is carried out under airflow disturbance, is discussed in this paper. The Pro/E virtual model data is imported into the ANSYS STRUCTURAL module, and the airfoil structure and material property parameters are set; the atmospheric turbulence model based on the k-epsilon model is established by using the ANSYS Fluent fluid dynamics module, the fluid boundary conditions are set in combination with the airfoil virtual structure, then the surface pressure value of the airfoil is obtained by finite element analysis; finally, combining the virtual structure and material information of the airfoil, the deformation parameters of different points of the airfoil relative to the fixed end can be simulated and solved. The method and result are studied in this paper to provide a reference for the analysis of the influence of airflow disturbance on the airfoil morphology and the evaluation of the POS measurement error.
机译:为了满足机载分布式POS系统中测量误差分析和校正的需要,本文讨论了在气流扰动下基于ANSYS的农用无人机(UAV)翼型变形仿真分析方法。纸。将Pro / E虚拟模型数据导入ANSYS STRUCTURAL模块,并设置翼型结构和材料特性参数。利用ANSYS Fluent流体动力学模块建立基于k-ε模型的大气湍流模型,结合翼型虚拟结构设置流体边界条件,然后通过有限元分析获得翼型的表面压力值。 ;最后,结合翼型的虚拟结构和材料信息,可以模拟和求解翼型不同点相对于固定端的变形参数。本文对方法和结果进行了研究,为分析气流扰动对翼型形态的影响以及评估POS测量误差提供参考。

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