主管单位:中华人民共和国工业和信息化部
主办单位:西北工业大学  中国航空学会
地       址:西北工业大学友谊校区航空楼
中低空太阳能无人机高效螺旋桨设计方法
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南昌航空大学

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V211.3

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Method of high-efficiency propeller for solar-powered UAV in low altitude
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Nanchang Hangkong University

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    摘要:

    目前对于常规螺旋桨和高空螺旋桨的设计较多,而对中低空太阳能无人机螺旋桨的研究很少,因此提出一种针对中低空太阳能无人机的高效率螺旋桨设计方法。根据太阳能无人机的飞行跨度曲线,选取爬升和主要巡航高度为设计点,首先基于Betz 最小能量损失的设计准则和片条理论及其逆向推导,计算各设计点下的弦长与桨距角分布;然后根据飞行跨度曲线对各设计点的计算结果进行权值分配,得到最终的设计弦长与桨距角分布;最后基于CFD 数值模拟技术,在验证算法的基础上对设计的螺旋桨进行仿真计算。结果表明:与使用常规螺旋桨相比较,在允许功率范围下,本文设计的螺旋桨效率在整个任务周期的飞行包线内均有明显提升,满足设计要求。

    Abstract:

    Aiming to improve the endurance of solar-powered UAV in low altitude in a mission cycle, a high-efficiency propeller design method is proposed. According to the flight span curve of the solar-powered UAV, the climb and main cruise altitudes are selected as the design points. Firstly, based on the Betz minimum energy loss design criteria and the strip theory and its reverse derivation, the chord length and pitch under each design point are calculated Angular distribution, and then assign weights to the calculation results of each design point according to the flight span curve to obtain the final design chord length and pitch angle distribution. Finally, based on the CFD numerical simulation technology, the designed propeller is simulated and calculated on the basis of the verification algorithm. The results show that compared with the conventional propeller, the efficiency of the propeller designed in this paper is within the flight envelope of the entire mission cycle under the allowable power range. The interior has been significantly improved to meet the design requirements.

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邱辉壮,江善元,钟伯文.中低空太阳能无人机高效螺旋桨设计方法[J].航空工程进展,2022,13(4):83-90

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  • 收稿日期:2021-08-04
  • 最后修改日期:2021-09-24
  • 录用日期:2021-11-01
  • 在线发布日期: 2022-06-08
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