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Design of Long-Endurance Unmanned Airplanes Incorporating Solar and Fuel Cell Propulsion

机译:结合太阳能和燃料电池推进的长寿无人飞机设计

摘要

Preliminary performance analysis and conceptual design are described for a class of unmanned airplanes possessing multi-day endurance capability. A mixed-mode electric power system incorporates solar cells for daytime energy production and a non-regenerative H2-02 fuel cell to supply energy for night flight. The power system provides energy for all onboard systems, including propulsion., payload, and avionics. Excess solar energy is available during significant portions of the day, and may be used for climbing, maneuvering, or payload functions. By jettisoning fuel cell reactant product (water) during flight, vehicle endurance may be increased under certain conditions. Empirical structure sizing algorithms are combined with low-Reynolds number aerodynamics algorithms to estimate airplane size and geometry to meet prescribed mission requirements. Initial calculations for summertime, high-altitude flight (above 40,000 ft (12 km)) at moderate latitude (31 deg N) indicate that mission endurance of several days may be possible for configurations having wing loadings on the order of 0.9 to 1.3 lb/ft(exp 2). These aircraft tend to be somewhat smaller than solar-powered aircraft previously conceived for multi-month endurance utilizing regenerative fuel cell systems for night flight.
机译:对具有多天耐力能力的一类无人飞机进行了初步性能分析和概念设计。混合模式电力系统结合了用于产生白天能量的太阳能电池和一个非再生H2-02燃料电池,为夜间飞行提供能量。动力系统为所有机载系统提供能量,包括推进力,有效载荷和航空电子设备。一天中的大部分时间都可以使用多余的太阳能,并且可以将其用于爬升,机动或有效载荷功能。通过在飞行过程中抛弃燃料电池反应产物(水),可以在某些条件下提高车辆的耐久性。将经验结构调整算法与低雷诺数空气动力学算法结合在一起,以估算飞机尺寸和几何形状,以满足规定的任务要求。对夏季,高纬度(31 deg N)的高空飞行(40,000 ft(12 km)以上)的初步计算表明,机翼负荷在0.9到1.3 lb / ft(exp 2)。这些飞机往往比以前设想的利用再生燃料电池系统进行夜间飞行数月耐力的太阳能飞机要小。

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