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Aeronautical Passive Energy Recovery System Based on LHP Technology Extended Test Results

机译:基于LHP技术扩展测试结果的航空无源能量回收系统

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As aviation enters the future, new technologies and philosophies are required to keep up with ever changing demands and increased market competition. Aircraft designers are required to come up with new and innovative ways to optimise systems and improve efficiencies. Onboard thermal management is an area that can take advantage of several new technologies to do just that. This paper is based on the development project "Advanced Thermal Management in Aeronautics" (ATMIA). Project ATMIA focuses on the use of Loop Heat Pipes (LHPs) in the aeronautical industry, specifically their onboard feasibility and the unique requirements found on an aeronautical platform such as those due to vibrations, gravitational forces and the need for disassembly due to maintenance. LHPs are passive two-phase devices that allow free-energy heat transportation between certain subsystems without needing additional power consumption. Their use in aeronautics is interesting as they can passively transport seemingly "waste" heat to areas where it can be reused. The use of LHPs onboard aircraft platforms can potentially reduce the amount of electrical power that must be extracted from the engines. This improved efficiency and when taken together with LHPs flexible design and low weight compared to traditional systems such as bleeding, directly affects fuel consumption. This can lead to a reduction in the amount of fuel used, an increased range, improved payload capacity and a reduction of CO_2.
机译:随着航空进入未来,新技术和哲学都需要跟上不断变化的需求和增加的市场竞争。飞机设计师必须提出新的和创新的方法来优化系统和提高效率。船上热管理是一个可以利用几种新技术的区域。本文基于开发项目“航空技术先进的热管理”(ATMIA)。项目ATMIO侧重于航空业中的环路热管(LHP),特别是它们的船上可行性以及在航空平台上发现的独特要求,例如由于振动,引力力和由于维护而拆卸的拆卸。 LHP是被动的两相设备,可允许某些子系统之间的自由能热量运输,而无需额外的功耗。他们在航空中的使用很有趣,因为它们可以被动地运输看似“废物”热量到可以重用的地区。使用LHPS车载飞机平台可能会降低必须从发动机提取的电力量。与传统系统相比,这种提高效率和随着LHPS柔性设计和低重量,直接影响燃料消耗。这可能导致使用的燃料量,增加的范围,提高有效载荷容量和CO_2的减少。

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