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
太阳能飞机全天巡航高度与翼载荷耦合参量敏度分析
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沈阳航空航天大学

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V221

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The Sensitivity Analysis of Coupling Parameters Between All-Day Cruise Altitude and Wing Load of Solar-Powered Airplane
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Shenyang Aerospace University

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    摘要:

    相对于传统常规动力式飞机,太阳能无人机具有飞行高度高和续航能力强的特点,可通过模块化换装任务载荷,执行特种任务。基于长航时太阳能无人机工作原理,分析太阳能无人机全天巡航高度与翼载荷在能量收支平衡设计体系下的耦合关系,并对其耦合参量(包括气动效率、太阳能光伏组件效率及铺设率、推进系统效率和负载功率因子、飞行季节与飞行维度)展开系统性的敏度分析。结果表明:长航时太阳能飞机应首先考虑设计或优化合适的升力系数及阻力系数,以达到最大的气动效率;当光伏组件的转换效率达到0.35 以上时,提高光伏组件铺设率对全天巡航高度影响较弱,但有助于提高翼载荷上限。

    Abstract:

    Compared to conventional powered aircraft, the solar-powered aircraft have characteristics of high-altitude and long-endurance. They can modularly change the task loads and carry out related special tasks. Based on the working principle of long endurance solar-powered aircraft, the coupling relationship between the all-day cruising altitude and wing load of solar-powered aircraft under the energy balance design system was analyzed. The coupling parameters, including aerodynamic parameters, solar panels efficiency and paving rate, propulsion system efficiency and load power factor, flight season and flight latitude, were systematically analyzed for sensitivity, The results indicate that the design or optimization of appropriate lift and drag coefficients should be the first consideration for long endurance solar-powered aircraft to achieve best aerodynamic efficiency; When the efficiency of solar panels reaches 0.35 or above, increasing the installation rate of solar panels has a weaker impact on the all-day cruising altitude, but it helps to increase the upper limit of wing load. The research results can serve as a reference for the overall design and improvement optimization of solar-powered aircraft.

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历史
  • 收稿日期:2023-07-05
  • 最后修改日期:2023-12-11
  • 录用日期:2023-12-18
  • 在线发布日期: 2024-06-12
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