非轴向内流条件下螺旋桨瞬态载荷的风洞研究

Catharina Moreira, N. Herzog, Christian Breitsamter
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摘要

电动垂直起降飞行器(eVTOL)的最新发展表明,需要更好地了解非轴向流入条件下螺旋桨的瞬态气动载荷。从叶片几何形状、叶片数量和一般集成概念来看,各种飞行器配置的螺旋桨都不尽相同,这导致螺旋桨上的气动载荷不同于传统固定翼飞机螺旋桨或直升机旋翼上的气动载荷。这种不同的空气动力载荷必须在车辆的整体设计和各自电力推进系统的详细设计中加以考虑。因此,对两种不同的螺旋桨叶片几何形状和不同数量的叶片进行了实验,目的是探索非轴向流入条件下的特性。实验数据与低保真叶片元素动量理论(BEMT)方法的计算结果进行了比较。结果表明,平均推力和侧向力系数随流入角的增大而增大,所采用的数值方法捕捉到了这一趋势。测量结果表明,推力和侧向力在叶片通过频率及其谐波处发生振荡,在流入角较大或叶片数量较少时振幅较大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wind Tunnel Investigation of Transient Propeller Loads for Non-Axial Inflow Conditions
Recent developments in electrical Vertical Take-off and Landing (eVTOL) vehicles show the need for a better understanding of transient aero-mechanical propeller loads for non-axial inflow conditions. The variety of vehicle configurations conceptualized with different propellers in terms of blade geometry, number of blades, and their general integration concept results in aerodynamic loads on the propellers which are different from those on conventional fixed-wing aircraft propellers or helicopter rotors. Such varying aerodynamic loads have to be considered in the vehicle design as a whole and also in the detailed design of their respective electric propulsion systems. Therefore, an experimental approach is conducted on two different propeller blade geometries and a varying number of blades with the objective to explore the characteristics at non-axial inflow conditions. Experimental data are compared with calculated results of a low-fidelity Blade Element Momentum Theory (BEMT) approach. Average thrust and side force coefficients are shown to increase with inflow angle, and this trend is captured by the implemented numerical method. Measured thrust and in-plane forces are shown to oscillate at the blade passing frequency and its harmonics, with higher amplitudes at higher angles of inflow or lower number of blades.
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