电动飞机专栏

中国电动飞机技术创新与实践观点

  • 杨凤田 ,
  • 范振伟 ,
  • 项松 ,
  • 刘远强 ,
  • 赵为平
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  • 1. 沈阳航空航天大学, 沈阳 110136;
    2. 辽宁通用航空研究院, 沈阳 110136

收稿日期: 2020-08-11

  修回日期: 2020-09-03

  网络出版日期: 2020-09-24

基金资助

辽宁省自然基金指导计划(2019-ZD-0225);辽宁省教育厅重点攻关和服务地方项目(JYT19004,JYT2020140,JYT2020161,JYT2020162)

Technical innovation and practice of electric aircraft in China

  • YANG Fengtian ,
  • FAN Zhenwei ,
  • XIANG Song ,
  • LIU Yuanqiang ,
  • ZHAO Weiping
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  • 1. Shenyang Aerospace University, Shenyang 110136, China;
    2. Liaoning General Aviation Academy, Shenyang 110136, China

Received date: 2020-08-11

  Revised date: 2020-09-03

  Online published: 2020-09-24

Supported by

Natural Science Foundation Guidance Program of Liaoning Province (2019-ZD-0225); Project of Education Department of Liaoning Province (JYT19004,JYT2020140,JYT2020161,JYT2020162)

摘要

电动飞机极大地提高了飞机的环保性、舒适性、维修性和经济性,是航空工业未来的发展方向。电动飞机应具备高气动效率、高推进效率、高结构效率、高能量密度,以提高航时。"十三五"期间,中国已完成2机首飞,2机取证。"十四五"期间,电动飞机研发应该以高功率高效率电推进系统为研发重点,以混合电推进系列飞机为研发核心,以现有新能源型号全寿命保障体系研究为关键,以拓展新型电动飞行器研发和标准构建为目标。

本文引用格式

杨凤田 , 范振伟 , 项松 , 刘远强 , 赵为平 . 中国电动飞机技术创新与实践观点[J]. 航空学报, 2021 , 42(3) : 624619 -624619 . DOI: 10.7527/S1000-6893.2020.24619

Abstract

Electric aircraft significantly improves environmental friendliness, comfort, maintainability and economy of aircraft, representing the future development direction of the aviation industry. Electric aircraft should have high aerodynamic efficiency, high propulsion efficiency, high structural efficiency and high energy density to improve the endurance. During the period of the Thirteenth Five Year Plan, China has completed the first flight of two electric aircraft and obtained certificates for another two. In the Fourteenth Five Year Plan period, the research and development of electric aircraft should focus on high power and high efficiency electric propulsion systems, taking the hybrid electric propulsion series aircraft as the core, the research on the whole life support system of existing new energy models as the key, and the expansion of research and development of new electric aircraft and standard construction as the goal.

参考文献

[1] 赵长辉, 陈立玮, 卢黎波,等. 电动飞机技术进展[J].科技导报,2012, 30(12):62-63. ZHAO C H, CHEN L W, LU L B, et al. Electric aircraft technology progress[J]. Science and Technology Guide, 2012, 30(12):62-63(in Chinese).
[2] 王刚, 张彬乾, 张明辉,等. 翼身融合民机总体气动技术研究进展与展望[J]. 航空学报, 2019, 40(9):623046. WANG G, ZHANG B Q, ZHAGN M H, et al. Research progress and prospect for conceptual and aerodynamic technology of blended-wing-body civil aircraft[J].Acta Aeronautica et Astronautica Sinica, 2019, 40(9):623046(in Chinese).
[3] RIBEIRO J, AFONSO F, RIBEIRO I, et al. Environmental assessment of hybrid-electric propulsion in conceptual aircraft design[J]. Journal of Cleaner Production, 2020, 247:119477.
[4] 张卓然, 李进才,韩建斌, 等. 多电飞机大功率高压直流起动发电机系统研究与实现[J]. 航空学报,2020, 41(2):323537. ZHANG Z R, LI J C, HAN J B, et al. Research and implementation of high-power high-voltage DC brushless starter generator system for more-electric-aircraft[J].Acta Aeronautica et Astronautica Sinica, 2020, 41(2):323537(in Chinese).
[5] 朱立宏, 孙国瑞, 呼文韬, 等. 太阳能无人机能源系统的关键技术与发展趋势[J]. 航空学报, 2020, 41(3):623503. ZHU L H, SUN G R, HU W T, et al. Key technology and development trend of energy system in solar powered unmanned aerial vehicles[J].Acta Aeronautica et Astronautica Sinica, 2020, 41(3):623503(in Chinese).
[6] 王妙香, 王元元. 电动飞机的误解分析与研究综述[J].航空科学技术, 2019, 30(5):3-8. WANG M X, WANG Y Y. Misunderstanding analysis and research review of electric aircraft[J]. Aeronautical Science & Technology, 2019, 30(5):3-8(in Chinese).
[7] 戴乐,董克勤. 欧盟第八、九研发框架计划比较分析及影响和启示[J]. 全球科技经济瞭望, 2018,33(9):47-53. DAI L, DONG K Q. Comparative analysis of EU eighth and ninth research and development framework plans and its impact and Enlightenment[J]. Outlook of Global Science and Technology Economy, 2018,33(9):47-53(in Chinese).
[8] 伍赛特. 电动飞机应用可行性分析及前景展望[J]. 交通行业节能, 2020(4):57-60. WU S T. Application feasibility analysis and Prospect of electric aircraft[J]. Energy Saving in Transportation Industry, 2020(4):57-60(in Chinese).
[9] 项松, 杨凤田, 王志, 等. 某型两叶螺旋桨的设计及风洞试验[J]. 实验力学, 2020,35(2):338-342. XIANG S, YAGN F T, WANG Z, et al. Design and wind tunnel test of a two blade propeller[J].Experimental Mechanics, 2020, 35(2):338-342(in Chinese).
[10] 范振伟, 杨凤田,项松, 等. 我国电动飞机发展现状及建议[J]. 航空科学技术, 2019,30(11):18-21. FAN Z W, YAGN F T, XIANG S, et al. Development status and suggestions of electric aircraft in China[J].Aeronautical Science & Technology, 2019, 30(11):18-21(in Chinese).
[11] "十三五"交通领域科技创新专项规划印发[J].现代城市研究, 2017(7):131. Special plan for scientific and technological innovation in transportation field during the 13th Five Year Plan[J]. Modern City Research, 2017(7):131(in Chinese).
[12] 高启明."十三五"时期我国通用航空产业转型面临的挑战与发展思路[J]. 经济纵横, 2016(2):29-34. GAO Q M. Challenges and development ideas of China's general aviation industry transformation in the 13th Five Year Plan Period[J]. Economic Review, 2016(2):29-34(in Chinese).
[13] 李开省. 电动飞机核心技术研究综述[J]. 航空科学技术, 2019, 30(11):8-17. LI K X. Summary of research on core technology of electric aircraft[J]. Aeronautical Science & Technology, 2019, 30(11):8-17(in Chinese).
[14] 黄俊, 杨凤田. 新能源电动飞机发展与挑战[J]. 航空学报, 2016, 37(1):57-68. HUANG J,YANG F T. Development and challenges of new energy electric aircraft[J]. Acta Aeronautica et Astronautica Sinica, 2016, 37(1):57-68(in Chinese).
[15] 项松,杨凤田,吴江,等. 某型两叶螺旋桨的设计及风洞试验[J]. 飞行力学, 2019,37(2):83-91. XIANG S, YAGN F T, WU J, et al. Design and wind tunnel test of a two blade propeller[J].Flight Mechanics, 2019,37(2):83-91(in Chinese).
[16] 王艳冰,项松,苏亚楠,等. 孤立两叶螺旋桨风洞试验准定常数值模拟[J]. 应用力学学报, 2020, 37(3):1196-1201. WANG Y B, XIANG S, SU Y N, et al. Numerical simulation of isolated two-blade propeller wind tunnel test[J].Journal of Applied Mechanics, 2020, 37(3):1196-1201(in Chinese).
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