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首页> 外文期刊>Journal of the American Helicopter Society >Helicopter Fuselage Model Drag Reduction by Active Flow Control Systems
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Helicopter Fuselage Model Drag Reduction by Active Flow Control Systems

机译:直升机机身模型通过主动流量控制系统减少减少

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摘要

A comprehensive experimental investigation of a helicopter blunt fuselage model was carried out to evaluate the effectiveness of active flow control (AFC) systems in reducing parasite fuselage drag. The main objective was to demonstrate the capability of different active technologies to decrease fuselage drag by alleviating the flow separation in the loading ramp region of large transport helicopters. The work was performed on a simplified blunt fuselage at model scale. Two different flow control actuators were considered for evaluation: steady blowing and unsteady blowing (i.e., pulsed jets). Laboratory tests of each individual actuator were performed to assess their performance and properties. The fuselage model was investigated with and without the AFC systems located along the loading ramp edges. Significant drag reductions were achieved for a wide range of fuselage angles of attack and sideslip angles without negatively affecting other aerodynamic characteristics.
机译:进行了直升机钝器模型的综合实验研究,以评价激活流量控制(AFC)系统在减少寄生虫机身拖曳中的有效性。主要目的是通过减轻大型输送直升机的装载斜坡区域中的流动分离来证明不同的活性技术来减少机身拖曳的能力。在模型规模的简化钝器机身上进行了这项工作。考虑两个不同的流量控制执行器进行评估:稳定吹气和不稳定吹(即,脉冲喷气机)。进行每个致动器的实验室测试以评估它们的性能和性质。使用沿装载斜坡边缘的AFC系统进行研究,研究了机身模型。对于广泛的攻击角度和侧滑角的各种机身角度,实现了显着的阻力,而不会对其他空气动力学特征产生负面影响。

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