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The efficiency analysis of high-altitude propeller based on vortex lattice lifting line theory

机译:基于涡格提升线理论的高空螺旋桨效率分析

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摘要

In this paper, we proposed a simple approach to analyse the efficiency and propulsive characteristics of the high-altitude propeller in accordance to the Vortex Lattice Lifting line Method (VLM) theory, which is commonly used in preliminary design and parametric studies of propeller propulsion. The Computational Fluid Dynamics (CFD) method was used to obtain aerofoil aerodynamic data. The optimal pitch angle and propeller blade chord length (along the radial direction) can be calculated using the information from the database. The propeller wake model sees helical slipstreams applied to both lightly and moderately loaded propellers. The proposed method is capable of identifying the optimal efficiency through varying the number of propeller blades, radius and the rotational speed. The relationship between the optimal efficiency and design parameters is then established. This method was verified using CFD calculations.
机译:在本文中,我们提出了一种简单的方法,即根据涡形格子举升线法(VLM)理论来分析高空螺旋桨的效率和推进特性,该理论通常用于螺旋桨推进的初步设计和参数研究。计算流体动力学(CFD)方法用于获得机翼空气动力学数据。可以使用数据库中的信息来计算最佳桨距角和螺旋桨叶片弦长(沿径向方向)。螺旋桨尾流模型看到轻载和中载螺旋桨均施加螺旋滑流。所提出的方法能够通过改变螺旋桨叶片的数量,半径和转速来确定最佳效率。然后建立最佳效率和设计参数之间的关系。使用CFD计算验证了该方法。

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