微型飞行器低雷诺数旋翼叶片气动特性分析

M. Kamruzzaman, Sushil Nepal, Mushfiq Al Arafa
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引用次数: 0

摘要

微型飞行器(MAV)旋翼叶片空气动力学的数值模拟是旋翼空气动力学研究领域中极具挑战性的课题。本文的目的是利用Spalart-Allmaras湍流模型对低雷诺数下微型飞行器旋翼叶片的空气动力学进行计算流体力学(CFD)研究。KA152313翼型,这是专门为中小型旋翼机,如MAV选择设计旋翼叶片。研究了GP13º、GP12º和GP11º三种不同节距构型下的动叶,并对其气动特性进行了分析。利用CFD分析结果比较了不同节距配置下动叶弦面压力力、剪切力和俯仰力矩等气动特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aerodynamic Analysis of Micro Aerial Vehicle Rotor Blade at Low Reynolds Number
The numerical simulation of micro aerial vehicle (MAV) rotor blade aerodynamics is highly challenging in the field of rotor aerodynamics. The aim of this paper is to present a computational fluid dynamics (CFD) study on the aerodynamics analysis of micro aerial vehicle rotor blade at low-Reynolds number by means of Spalart-Allmaras turbulence model. The KA152313 airfoil, which is dedicated to mid to small-scale rotorcraft, e.g. MAV is chosen to design the rotor blade. The rotor blade was investigated in three different pitch configurations, which are GP13º, GP12º and GP11º and the aerodynamics characteristics are analyzed respectively. The CFD results of the analysis is used to compare the aerodynamic characteristics, e.g. pressure force, shear force and pitching moment on the chord surface of the rotor blades at different pitch configurations.
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