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Thermal Analysis on Cryogenic Liquid Hydrogen Tank on an Unmanned Aerial Vehicle System

机译:无人机系统低温液氢罐的热分析

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摘要

Thermal analyses are performed on the liquid hydrogen (LH2) tank designed for an unmanned aerial vehicle (UAV) powered by solar arrays and a regenerative proton-exchange membrane (PEM) fuel cell. A 14-day cruise mission at a 65,000 ft altitude is considered. Thermal analysis provides the thermal loads on the tank system and the boiling-off rates of LH2. Different approaches are being considered to minimize the boiling-off rates of the LH2. It includes an evacuated multilayer insulation (MLI) versus aerogel insulation on the LH2 tank and aluminum versus stainless steel spacer rings between the inner and outer tank. The resulting boil-off rates of LH2 provided by the one-dimensional model and three-dimensional finite element analysis (FEA) on the tank system are presented and compared to validate the results of the three-dimensional FEA. It concludes that heat flux through penetrations by conduction is as significant as that through insulation around the tank. The tank system with MLI insulation and stainless steel spacer rings result in the lowest boiling-off rate of LH2.
机译:对液氢(LH2)储罐进行热分析,该储罐设计用于由太阳能电池阵列和可再生质子交换膜(PEM)燃料电池驱动的无人机(UAV)。考虑在65,000英尺的高度进行14天的巡航任务。热分析提供了储罐系统的热负荷和LH2的沸腾速率。正在考虑采用不同的方法来使LH2的沸腾速率最小化。它包括LH2储罐上的真空多层绝热材料(MLI)与气凝胶绝热材料,以及内部和外部储罐之间的铝制和不锈钢隔圈。提出并比较了坦克系统上一维模型和三维有限元分析(FEA)所提供的LH2的蒸发率,以验证三维有限元分析的结果。结论是,通过传导穿透的热通量与通过储罐周围的绝热一样重要。具有MLI绝缘和不锈钢垫片环的储罐系统可实现LH2最低的沸腾速率。

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