纵列式倾转机翼和多旋翼在过渡状态下的气动干扰研究OA
Investigation on Aerodynamic Interaction of Tandem Tilt-Wing and Multi-rotor in Transition Condition
纵列式倾转机翼和多旋翼之间的复杂气动干扰直接影响机翼表面流动和旋翼拉力,是该种构型旋翼飞行器倾转过渡过程中的关键影响因素.为此,采用基于虚拟作用盘模型的CFD方法对该种干扰特性进行了研究,通过向Navier-Stokes方程中添加动量源项来模拟多旋翼的气动效应,在保证气动干扰计算精度的同时有效降低了计算成本.对比分析了有无气动干扰情况下,不同倾转角度时纵列式倾转机翼与多旋翼的气动力及相应流场变化,并比较了动态倾转过渡与固定倾转角状态下的气动力差异.结果表明:多旋翼的气动干扰在不同倾转角度下均明显增加了前倾转机翼的升力,在本文计算的15°倾转角工况下,多旋翼干扰下的机翼升力较孤立机翼提升了40%以上,这与多旋翼干扰引起的来流速度增加及翼面流动分离抑制有关;同时,机翼的阻塞效应会增大旋翼拉力,尤其在30°和45°倾转角附近更为显著;受前机翼下洗流影响,气动干扰对后机翼升力与后旋翼拉力的增加作用并不明显;动态倾转的非定常效应对气动干扰影响较小,动态倾转过渡过程中的旋翼和机翼气动力与固定倾转角状态相差不大.
The complex aerodynamic interaction between tandem tilt-wing and multi-rotor directly affects the wing surface flow and rotor thrust,making it a critical factor during the tilt transition process of this configuration of rotorcraft.The aerodynamic interaction of tandem tilt-wing and multi-rotor is investigated based on the CFD method.The aerodynamic effect of multi tilt-rotor is simulated as virtual disk modeling by adding source terms to the Navier-Stokes equations,effectively reducing the calculation time while maintaining the accuracy of aerodynamic interaction calculations.Aerodynamic forces and flow field characteristics of the tandem tilt-wing and multi-rotor under different tilt angles are compared between cases with and without aerodynamic interaction.Furthermore,the differences in aerodynamic forces between dynamic tilt transition and fixed-angle conditions were compared.The results show that the aerodynamic interaction of multi-rotor obviously increases the lift of front tilt-wing at different tilt angles,the wing lift under interaction is increased by more than 40%compared with isolated wing at tilt angle of 15°for the computation in this paper,which is related to the increase of wing flow velocity and the suppression of flow separation caused by multi-rotor;the wing blocking effect will increase rotor thrust,especially near the tilt angles of 30° and 45°;the increases of rear wing lift and rear rotor thrust under aerodynamic interaction are not significant because of suppression by the front wing's downwash;the unsteady effects during dynamic tilting have a relatively minor impact on aerodynamic interaction,with the aerodynamic forces on the rotors and wings during the dynamic tilting process showing little difference from those under corresponding fixed tilt angles.
邓景辉;袁明川;黄水林;孙会迅;张子瀚
中国直升机设计研究所直升机动力学全国重点实验室,景德镇 333000,中国中国直升机设计研究所直升机动力学全国重点实验室,景德镇 333000,中国中国直升机设计研究所直升机动力学全国重点实验室,景德镇 333000,中国中国直升机设计研究所直升机动力学全国重点实验室,景德镇 333000,中国中国直升机设计研究所直升机动力学全国重点实验室,景德镇 333000,中国
航空航天
气动干扰纵列式倾转机翼多旋翼过渡状态
aerodynamic interactiontandemtilt-wingmulti tilt-rotorstransition condition
《南京航空航天大学学报(英文版)》 2026 (1)
1-14,14
This work was supported by the Na-tional Key Laboratory of Helicopter Aeromechanics Fund(No.2024-CXPT-GF-JJ-093-05).
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