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NaBH_4 (sodium borohydride) hydrogen generator with a volume-exchange fuel tank for small unmanned aerial vehicles powered by a PEM (proton exchange membrane) fuel cell

机译:NaBH_4(氢硼化钠)氢气发生器,带有容积交换燃料箱,用于由PEM(质子交换膜)燃料电池驱动的小型无人机

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摘要

A proton exchange membrane fuel cell system integrated with a NaBH4 (sodium borohydride) hydrogen generator was developed for small UAVs (unmanned aerial vehicles). The hydrogen generator was composed of a catalytic reactor, liquid pump and volume-exchange fuel tank, where the fuel and spent fuel exchange the volume within a single fuel tank. Co-B catalyst supported on a porous ceramic material was used to generate hydrogen from the NaBhU solution. Considering the power consumption according to the mission profile of a UAV, the power output of the fuel cell and auxiliary battery was distributed passively as an electrical load. A blended wing-body was selected considering the fuel efficiency and carrying capability of fuel cell components. First, the fuel cell stack and hydrogen generator were evaluated under the operating conditions, and integrated into the airframe. The ground test of the complete fuel cell UAV was performed under a range of load conditions. Finally, the fuel cell powered flight test was made for 1 h. The volume-exchange fuel tank minimized the fuel sloshing and the change in center of gravity due to fuel consumption during the flight, so that much stable operation of the fuel cell system was validated at different flight modes.
机译:已开发出与NaBH4(氢硼化钠)氢发生器集成的质子交换膜燃料电池系统,用于小型无人机(无人机)。氢气发生器由催化反应器,液体泵和容积交换燃料箱组成,燃料和用过的燃料在其中交换单个燃料箱中的容积。负载在多孔陶瓷材料上的Co-B催化剂用于从NaBhU溶液中产生氢。根据无人飞行器的任务概况考虑功耗,燃料电池和辅助电池的功率输出作为电负载被动分配。考虑到燃料效率和燃料电池组件的承载能力,选择了混合翼体。首先,在运行条件下对燃料电池堆和氢气发生器进行评估,并将其集成到机身中。完整的燃料电池无人机的地面测试是在一定的负载条件下进行的。最后,以燃料电池为动力的飞行测试进行了1小时。容积交换式燃油箱最大限度地减少了燃油晃动和由于飞行过程中的燃油消耗而导致的重心变化,因此可以在不同的飞行模式下验证燃料电池系统的稳定运行。

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