首页> 外文会议>AHS International 62nd Annual Forum Proceedings vol.1: Vertical Flight: Leading through Innovation >DEVELOPMENT OF ROTORCRAFT WAKE CAPTURING METHODOLOGY USING FULLY COUPLED CFD AND PARTICLE VORTEX TRANSPORT METHOD
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DEVELOPMENT OF ROTORCRAFT WAKE CAPTURING METHODOLOGY USING FULLY COUPLED CFD AND PARTICLE VORTEX TRANSPORT METHOD

机译:全耦合CFD和颗粒涡传输方法的旋翼机尾流捕获方法的开发

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Rotorcraft flow field is extremely difficult to simulate since it is dominated by complex vorticity field generated by the rotor. Traditional Computational Fluid Dynamics (CFD) can predict the generation of these vortices very well but normally cannot handle the evolution of the vortices over a long period of time because of limitations imposed by numerical dissipation and regeneration of grid. The evolution of vortices can be handled satisfactorily using vortex transport method. The present study uses traditional CFD in the vicinity of rotor blades to capture the generation of the vortices, and uses Particle Vortex Transport Method (PVTM) for handling evolution of the vortices into the rest of the flow field. The fully coupled CFD-PVTM is implemented by proper information exchange between the two domains at every time step. The results show that this approach can satisfactorily capture rotor tip vortices as well as the vortex sheet in both hover and high speed forward flight. Comparisons of the blade loads obtained using this fully coupled CFD-PVTM and flight test data show good agreement.
机译:旋翼飞机的流场极难模拟,因为它受旋翼产生的复杂涡流场支配。传统的计算流体动力学(CFD)可以很好地预测这些涡旋的产生,但由于网格的数值耗散和再生所施加的限制,通常不能长时间处理这些涡旋的演变。使用涡流传输方法可以令人满意地处理涡流的演变。本研究在转子叶片附近使用传统的CFD来捕获旋涡的生成,并使用粒子涡流传输方法(PVTM)处理旋涡向其余流场的演变。完全耦合的CFD-PVTM通过每个时间步在两个域之间进行适当的信息交换来实现。结果表明,该方法可以令人满意地捕获旋翼和高速前向飞行中的转子尖端涡旋以及涡旋片。使用此完全耦合的CFD-PVTM获得的叶片载荷与飞行测试数据的比较显示出很好的一致性。

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