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电控旋翼气动特性建模与风洞试验验证

陆洋 王超

陆洋, 王超. 电控旋翼气动特性建模与风洞试验验证[J]. 航空动力学报, 2013, 28(1): 60-66.
引用本文: 陆洋, 王超. 电控旋翼气动特性建模与风洞试验验证[J]. 航空动力学报, 2013, 28(1): 60-66.
LU Yang, WANG Chao. Aerodynamic characteristic modeling of electrically controlled rotor and wind tunnel test verification[J]. Journal of Aerospace Power, 2013, 28(1): 60-66.
Citation: LU Yang, WANG Chao. Aerodynamic characteristic modeling of electrically controlled rotor and wind tunnel test verification[J]. Journal of Aerospace Power, 2013, 28(1): 60-66.

电控旋翼气动特性建模与风洞试验验证

基金项目: 国防科技重点实验室基金项目(502090C40); 航空科技创新基金(08A52001)

Aerodynamic characteristic modeling of electrically controlled rotor and wind tunnel test verification

  • 摘要: 首先建立了带襟翼翼型的非定常气动力模型,继而基于Peters-He广义动态尾迹理论,考虑襟翼偏转对电控旋翼叶素环境的影响,建立了电控旋翼有限状态尾迹模型;进一步基于Theodorsen理论推导出电控旋翼桨叶挥舞响应与桨叶变距和襟翼操纵量的关系,综合以上建立了电控旋翼气动特性分析模型.以改进型电控旋翼试验系统为平台进行了风洞试验,测量了不同风速、不同襟翼操纵条件下的电控旋翼气动力、桨距、襟翼偏角及旋翼挥舞角的变化情况.理论计算结果与试验数据符合情况良好,验证了所建立的分析模型的正确性,并得出以下结论:旋翼转速一定时,桨叶变距与襟翼操纵基本呈线性关系;旋翼拉力随襟翼总距的增加而逐渐减小,襟翼总距较大时,其实际气动效率略有下降;前飞状态时,襟翼总距操纵会引起桨叶的纵向周期变距.

     

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出版历程
  • 收稿日期:  2012-01-14
  • 刊出日期:  2013-01-28

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