首页|期刊导航|南京航空航天大学学报(英文版)|重载eVTOL飞行器重叠旋翼气动干扰特性数值模拟研究

重载eVTOL飞行器重叠旋翼气动干扰特性数值模拟研究OA

Numerical Simulation Study on Aerodynamic Interference Characteristics of Overlapping Rotors in Heavy-Load eVTOL Aircraft

中文摘要英文摘要

针对重载电动垂直起降(Electric vertical takeoff and landing,eVTOL)飞行器重叠旋翼气动干扰机理不明的问题,本文通过数值模拟方法研究了重叠旋翼布局在悬停状态下的气动干扰特性及其流场演化规律.基于Reynolds-averaged Navier-Stokes(RANS)方程与Spalart-Allmaras(S-A)湍流模型,构建了旋翼流场及气动特性计算模型.结合运动嵌套网格技术实现了旋翼旋转运动的动态模拟,并通过网格无关性验证与试验数据对比确保了计算方法的可靠性.研究结果表明:重叠旋翼系统中,旋翼Ⅱ因持续受到相邻旋翼尾流及桨-涡干扰影响,拉力下降,功率波动显著,悬停效率降低;桨尖涡在重叠区域发生断裂、融合及二次卷起,形成大尺度湍流结构,导致诱导速度场衰减与气动效率损失;旋翼下洗流与机身干扰引发"喷泉效应"及机身表面压力突增,加剧了流场畸变.基于上述机理,通过优化相邻桨叶转速相位差的配置策略,可实现重叠旋翼构型的安全飞行,为重载eV-TOL飞行器的旋翼布局设计与气动性能提升提供了理论依据.

Focusing on the unclear mechanism of aerodynamic interference in overlapping rotors of heavy-load electric vertical take-off and landing(eVTOL)aircraft,this paper aims to reveal the aerodynamic interference characteristics and flow field evolution laws of overlapping rotor configurations in hovering conditions through numerical simulation methods.The research method involves constructing a computational model for rotor flow fields and aerodynamic characteristics based on the Reynolds-averaged Navier-Stokes(RANS)equations and the Spalart-Allmaras(S-A)turbulence model.The dynamic simulation of rotor rotational motion was achieved by using the moving nested grid technology.The reliability of the computational method was ensured through the grid independence verification and the comparison with experimental data.The research results indicate that in overlapping rotor systems,rotor Ⅱexperiences a decrease in thrust,significant power fluctuations,and reduced hovering efficiency due to continuous interference from the adjacent rotor's wake and blade-vortex interactions.Blade-tip vortices undergo breakage,fusion,and secondary rolling in the overlapping region,forming large-scale turbulent structures that lead to attenuation of the induced velocity field and aerodynamic efficiency losses.Additionally,the interaction between the rotor downwash and the fuselage triggers a"fountain effect"and a sudden increase in surface pressure on the fuselage,exacerbating flow field distortion.Based on the aforementioned mechanisms,the safe flight of overlapping rotor configurations can be achieved by optimizing the configuration strategy of the rotational speed phase difference between adjacent blades.This study provides a theoretical basis for the rotor layout design and the aerodynamic performance enhancement of heavy-load eVTOL aircraft.

杜思亮;邓凯;王博

淮安大学机械与材料工程学院,淮安 223003,中国||南京航空航天大学直升机动力学全国重点实验室,南京 210016,中国南京航空航天大学直升机动力学全国重点实验室,南京 210016,中国南京航空航天大学直升机动力学全国重点实验室,南京 210016,中国

航空航天

电动垂直起降飞行器重叠旋翼气动干扰数值模拟桨-涡干扰

electric vertical takeoff and landing(eVTOL)aircraftoverlapping rotorsaerodynamic interferencenumerical simulationrotor vortex interference

《南京航空航天大学学报(英文版)》 2026 (1)

40-54,15

This work was supported by the Na-tional Natural Science Foundation of China(No.11872211).

10.16356/j.1005-1120.2026.01.004

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