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首页> 外文期刊>International journal of hydrogen energy >Fuel cell systems for long-endurance autonomous underwater vehicles - challenges and benefits
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Fuel cell systems for long-endurance autonomous underwater vehicles - challenges and benefits

机译:用于长寿命自动驾驶水下航行器的燃料电池系统-挑战与益处

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Autonomous underwater vehicles (AUVs) are programmable, robotic vehicles that can drift, drive, or glide through the ocean without real-time control by human operators. AUVs that also can follow a planned trajectory with a chosen depth profile are used for geophysical surveys, subsea pipeline inspection, marine archaeology, and more. Most AUV5 are followed by a mother ship that adds significantly to the cost of an AUV mission. One pathway to reduce this need is to develop long-endurance AUV5 by improving navigation, autonomy and energy storage. Long-endurance AUVs can open up for more challenging mission types than what is possible today. Fuel cell systems are a key technology for increasing the endurance of AUVs beyond the capability of batteries. However, several challenges exist for underwater operation of fuel cell systems. These are related to storage or generation of hydrogen and oxygen, buoyancy and trim, and the demanding environment of the ambient seawater. Protecting the fuel cell inside a sealed container brings along more challenges related to condensation, cooling and accumulation of inert gases or reactants. This paper elaborates on these technical challenges and describes the solutions that the Norwegian Defence Research Establishment (FFI) has chosen in its development of a fuel cell system for long-endurance AUVs. The reported solutions enabled a 24 h demonstration of FFI's fuel cell system under water. The remaining work towards a prototype sea trial is outlined. (C) 2019 The Authors. Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:自主水下航行器(AUV)是可编程的机器人飞行器,无需人工操作,即可在海洋中漂移,驾驶或滑行。 AUV也可以遵循计划的轨迹并具有选定的深度剖面,可用于地球物理勘测,海底管道检查,海洋考古等。大多数AUV5之后是母舰,这大大增加了AUV任务的成本。减少这种需求的一种途径是通过改善导航,自主性和能量存储来开发长寿命AUV5。与今天相比,长寿命AUV可以应对更具挑战性的任务类型。燃料电池系统是一项关键技术,可提高AUV的耐用性,超越电池的能力。然而,燃料电池系统的水下操作存在若干挑战。这些与氢和氧的存储或产生,浮力和修整以及周围海水的苛刻环境有关。保护密封容器内的燃料电池带来了与冷凝,冷却以及惰性气体或反应物积聚有关的更多挑战。本文详细阐述了这些技术挑战,并介绍了挪威国防研究机构(FFI)在开发用于长寿命AUV的燃料电池系统时选择的解决方案。报告的解决方案可以在水下24小时演示FFI的燃料电池系统。概述了原型海试的剩余工作。 (C)2019作者。由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

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