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HYBRID-ELECTRIC MOTIVE POWER SYSTEMS FOR COMMUTER TRANSPORT APPLICATIONS

机译:用于通勤传输应用的混合动力动力系统

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This investigation surveyed the potential and established outcomes for future 19-passenger fixed-wing commuter transport aircraft concepts employing battery based Voltaic-Joule/Brayton motive power systems with no additional electrical energy drawn from generators mechanically coupled to thermal engines. The morphological approach was that of a tri-prop (two on-wing podded turbo-props and one aft-fuselage mounted electric motor configured as a pusher-on-pylon installation). A Battery System-level Gravimetric Specific Energy (referred to as “battery energy density”) of at least 500 Wh/kg yielded 39%, 25% and 10% block fuel reductions for 150 nm (Design Service Goal), 430 nm (85-percentile) and 700 nm (maximum range) stage lengths respectively. All quoted comparisons are against a suitably projected turbo-prop only year-2030 aircraft. In contrast to the reference Beech 1900D, block fuel reductions of up to 44-49% were predicted, which could facilitate a significantly lower deficit in relation to the ACARE Strategic Research and Innovation Agenda 55% target for year 2030. This investigation also indicated that, in future, suitably flexible hybrid-electric architectures could be fashioned allowing possibility for the aircraft to complete any required city-pair operations (within the legitimate payload-range working capacity) irrespective of exchangeable batteries being available at a given station. Finally, it was also established assuming such a tri-prop morphology Normal Conducting Machines delivering maximum shaft power output of 1.1 MW would be required.
机译:这项调查调查了未来的19乘客固定翼通勤运输飞机概念的潜在和成熟的成果,采用基于电池的电池的Voltaic-joule / Brayton动力系统,没有从机械加上热风发动机的发电机汲取额外的电能。形态学方法是Tri-Prop(两个翼架围裙 - 道具和一个被配置为推动幽门安装的后机安装电动机)。电池系统级重量计(称为“电池能量密度”)至少为500WH / kg产生39%,25%和10%的阻塞燃料减少150nm(设计服务目标),430 nm(85 - 植物中心)和700nm(最大范围)阶段长度。所有引用的比较都是针对适当投影的涡轮道具-2030飞机。与参考Beech 1900D相比,预测了高达44-49%的块燃油减少,这可以促进与2030年度相对的战略研究和创新议程的赤字显着降低。这项调查还表示,在将来,可以使用适当的混合电动架构,允许飞机完成任何所需的城市对操作(在合法有效载荷范围工作能力内),而不管在给定站可用的可更换电池。最后,还建立了假设这种Tri-Prop形态的正常导电机,所需的最大轴功率输出为1.1 MW。

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