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Mission Analysis and Emissions for Conventional and Hybrid-Electric Commercial Transport Aircraft

机译:常规和混合电动商业运输飞机的任务分析和排放

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摘要

A feasibility study of a hybrid-electric commercial transport aircraft was conducted by analyzing the simulated performance and lifecycle carbon dioxide (CO2) emissions of a conventional single-aisle aircraft and an aircraft with a modified parallel hybrid-electric propulsion system. A flight performance simulation was developed in a MATLAB/Simulink environment using publicly available aircraft data for the Boeing 737-700 commercial transport aircraft and the CFM56-7B26 turbofan engine. A parallel hybrid drivetrain was integrated into the aircraft performance model. Various missions with different degrees of hybridization and battery specific energy densities were simulated and compared to the conventional turbofan case. CO2 emissions associated with fuel burn and electricity generation for charging battery systems were modeled for each hybrid aircraft configuration. The results indicated that reductions in CO2 emissions per passenger mile were achievable using a parallel hybrid propulsion system as compared to conventional systems of equivalent range. A candidate propulsion system configuration was defined, which used a 50% electrical-power drivetrain and a battery specific energy density of 1000 (Wh)/kg. This configuration was estimated to produce 49.6% less lifecycle CO2 emissions than a modern conventional aircraft, with a maximum range equivalent to that of the average of all global flights, making it a viable option for environmentally responsible aviation.
机译:通过分析常规单通道飞机和具有改进的并联混合动力推进系统的飞机的模拟性能和生命周期二氧化碳排放量,对混合动力商用运输飞机进行了可行性研究。飞行性能模拟是在MATLAB / Simulink环境中使用波音737-700商业运输机和CFM56-7B26涡轮风扇发动机的公开可用飞机数据开发的。并行混合动力传动系统已集成到飞机性能模型中。模拟了具有不同混合程度和电池特定能量密度的各种任务,并将其与常规涡扇发动机进行了比较。针对每种混合动力飞机配置,对与充电电池系统的燃料燃烧和发电相关的CO2排放进行了建模。结果表明,与等效范围的传统系统相比,使用并联混合动力系统可实现每乘客英里二氧化碳排放量的减少。定义了候选的推进系统配置,该配置使用了50%的电力传动系统和1000(Wh)/ kg的电池比能量密度。据估计,这种配置与现代传统飞机相比,可减少49.6%的生命周期CO2排放,其最大航程等于所有全球航班平均飞行距离,使其成为对环境负责的航空业的可行选择。

著录项

  • 来源
    《Journal of Aircraft》 |2019年第3期|1200-1213|共14页
  • 作者单位

    Univ Illinois, Dept Aerosp Engn, Urbana, IL 61801 USA;

    Univ Illinois, Dept Aerosp Engn, Urbana, IL 61801 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 04:23:49

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