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Primary and albedo solar energy sources for high altitude persistent air vehicle operation

机译:用于高空持续飞行器操作的主要和反照率太阳能源

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摘要

A new class of the all electric airship to globally transport both passengers and freight using a ‘feeder‐cruiser’ concept, and powered by renewable electric energy, is considered. Specific focus is given to photo‐electric harvesting as the primary energy source and the associated hydrogen‐based energy storage systems. Furthermore, it is shown that the total PV output may be significantly increased by utilising cloud albedo effects. Appropriate power architectures andudenergy audits required for life support, and the propulsion and ancillary loads to support the continuous daily operation of the primary airship (cruiser) at stratospheric altitudes (circa 18 km), are also considered. The presented solution is substantially different from those of conventional aircraft due to the airship size and the inherent requirement to harvest and store sufficient energyudduring “daylight” operation, when subject to varying seasonal conditions and latitudes, to ensure its safe and continued operation during the corresponding varying “dark hours”. This is particularly apparent when the sizing of the proposed electrolyser is considered, as its size and mass increase nonlinearly with decreasing day‐night duty. As such, a Unitized Regenerative Fuel Cell is proposed.udFor the first time the study also discusses the potential benefits of integrating the photo‐voltaic cells into airship canopy structures utilising TENSAIRITY®‐based elements in order to eliminate the requirements for separate inter‐PV array wiring and the transport of low pressure hydrogen between fuel cells.
机译:考虑了一种新型的全电动飞艇,它采用“馈线巡洋舰”概念在全球范围内运送旅客和货物,并由可再生电能驱动。特别关注光电收集作为主要能源和相关的氢基能量存储系统。此外,表明利用云的反照率效应可以显着增加总的PV输出。还考虑了生命维持所需的适当的动力架构和 uDenergy审核,以及在平流层高度(约18 km)支持主要飞艇(巡洋舰)的日常运行的推进和辅助负荷。提出的解决方案与传统飞机的解决方案有很大不同,这是由于飞艇的大小以及固有的要求,即在受季节变化和纬度变化的情况下,“日光”运行期间必须收集和存储足够的能量,以确保其在运行期间的安全和持续运行相应的“暗时”。当考虑所建议电解槽的尺寸时,这一点尤其明显,因为其尺寸和质量会随着昼夜工作量的减少而非线性增加。因此,本研究还首次讨论了使用基于TENSAIRITY®的元件将光伏电池集成到飞艇机盖结构中的潜在好处,从而消除了对单独的跨燃料电池的要求。光伏阵列布线和燃料电池之间的低压氢气传输。

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