[1]孙侠生, 程文渊, 穆作栋, 等. 电动飞机发展白皮书[J]. 航空科学技术, 2019, 30(11):1-7.
SUN Xiasheng, CHENG Wenyuan, MU Zuodong, et al. White Paper on the Development of Electric Aircraft[J]. Aeronautical Science & Technology,2019,30(11):1-7.
[2]TRAINELLI L, SALUCCI F, COMINCINI D, et al. Sizing and Performance of Hydrogen-driven Air-planes[C]∥Italian Association of Aeronautics and Astronautics ⅩⅩⅤ International Congress. Roma, 2019:1058-1065.
[3]PALAIA G, SALEM K A, CIPOLLA V, et al. Conceptual Investigation on Performance of Short-medium Range Aircraft with Liquid Hydrogen Propulsion and Different Airframe Architectures[C]∥AIAA SCITECH 2023 Forum. National Harbor,2023:0214.
[4]WADDINGTON E, MERRET J M, ANSELL P J. Impact of LH2 Fuel Cell-electric Propulsion on Aircraft Configuration and Integration[C]∥AIAA Aviation 2021 Forum. Virtual Event, 2021:2409.
[5]PASTRA C L, CINAR G, MAVRIS D N. Feasibility and Benefit Assessments of Hybrid Hydrogen Fuel Cell and Battery Configurations on a Regional Turboprop Aircraft[C]∥AIAA AVIATION 2022 Forum. Chicago, 2022:3290.
[6]黄俊.分布式电推进飞机设计技术综述[J].航空学报,2021,42(3):13-29.
HUANG J. Survey on Design Technology of Distributed Electric Propulsion Aircraft[J]. Acta Aeronautica et Astronautica Sinica, 2021, 42(3):624037.
[7]荆戈. 燃料电池轻型飞机概念设计研究[D]. 南京:南京航空航天大学,2017.
JING Ge. A Study on Conceptual Design of Fuel-cell Powered Electrical Light Aircraft[D]. Nanjing:Nanjing University of Aeronautics and Astronautics, 2017.
[8]李毅波,林鹏,陶晓洋,等.空地两用燃料电池轻型飞机总体参数设计与建模[J].飞机设计,2016,36 (5):29-33.
LI Yibo, LIN Peng, TAO Xiaoyang,et al. Overall Parameter Design and Modeling of Air-ground Fuel Cell Light Aircraft[J]. Aircraft Design, 2016,36 (5):29-33.
[9]刘福佳,杨凤田,刘孟诏,等.电动轻型飞机起飞总质量估算方法[J].科学技术与工程,2018,18(5):118-123.
LIU Fujia, YANG Fengtian,LIU Mengzhao,et al. Estimated Method of the Take-off Mass of the Electric Light Aircraft[J]. Science Technology and Engineering,2018,18(5):118-123.
[10]孔祥浩,张卓然,陆嘉伟,等.分布式电推进飞机电力系统研究综述[J].航空学报,2018,39(1):51-67.
KONG Xianghao, ZHANG Zhuoran, LU Jiawei,et al. Research on Distributed Electric Propulsion Aircraft Power System[J]. Acta Aeronautica et Astronautica Sinica, 2018,39(1):51-67.
[11]ARAT H T, SRER M G, GKPINAR S, et al. Conceptual Design Analysis for a Lightweight Aircraft with a Fuel Cell Hybrid Propulsion System[J]. Energy Sources, Part A:Recovery, Utilization, and Environmental Effects, 2020:1-15.
[12]侯绪凯, 赵田田, 孙荣峰,等. 中国氢燃料电池技术发展及应用现状研究[J]. 当代化工研究, 2022(17):112-117.
HOU Xukai, ZHAO Tiantian, SUN Rongfeng, et al. Research on the Development and Application Status of Hydrogen Fuel Cell Technology in China[J].Modern Chemical Research,2022(17):112-117.
[13]宋清超,陈家伟,蔡坤城,等.多电飞机用燃料电池-蓄电池-超级电容混合供电系统的高可靠动态功率分配技术[J].电工技术学报,2022,37(2):445-458.
SONG Qingchao,CHEN Jiawei,CAI Kuncheng,et al. A Highly Reliable Power Allocation Technology for the Fuel Cell-battery-supercapacitor Hybrid Power Supply System of a More Electric Aircraft[J].Transactions of China Electrotechnical Society, 2022,37(2):445-458.
[14]苏海燕,徐恒泳. 储氢材料研究进展[J]. 天然气化工, 2005, 30(6):47-53.
SU Haiyan,XU Hengyong. Progress in Hydrogen Storage Material[J].Natural Gas Chemical Industry, 2005, 30(6):47-53.
[15]陶占良,彭博,梁静,等. 高密度储氢材料研究进展[J]. 中国材料进展, 2009, 28(增刊1):26-40.
TAO Zhanliang,PENG Bo,LIANG Jing, et al. Progress in Research of High Density Hydrogen Storage Materials[J].Materials China, 2009, 28(S1):26-40.
[16]王腾飞,寇淑然,任柏春,等. 电动航空器发展状况分析[J]. 科技视界, 2022(23):25-27.
WANG Tengfei, KOU Shuran, REN Baichun, et al. Analysis of the Development of Electric Aircraft[J]. Science Technology Vision, 2022(23):25-27.
[17]康桂文,胡雨,李亚东,等. 超轻型电动飞机电动力系统的参数匹配[J]. 航空动力学报, 2013,28(12):2641-2647.
KANG Guiwen,HU Yu,LI Yadong, et al. Parameters Matching of Ultralight Electric Aircraft Propulsion System[J]. Journal of Aerospace Power, 2013,28(12):2641-2647.
[18]戴佳哲. 分布式电推进系统与机翼的综合设计[J]. 机械设计与制造, 2020(2):56-59.
DAI Jiazhe. Integrated Design of Distributed Electric Propulsion System and Wing[J]. Machinery Design Manufacture,2020(2):56-59.
[19]GUDMUNDSSON S. General Aviation Aircraft Design:Applied Methods and Procedures[M]. Oxford:Butterworth-Heinemann Press,2013.
[20]曾勋. 燃料电池技术发展概述[J]. 科教导刊—电子版(中旬), 2018(2):247-248.
ZENG Xun. Overview of Fuel Cell Technology Development[J]. The Guide of Science Education, 2018(2):247-248.
[21]雷涛, 闵志豪, 付红杰. 燃料电池无人机混合电源动态平衡能量管理策略[J].航空学报, 2020, 41(12):293-307.
LEI Tao, MING Zhihao, FU Hongjie. Dynamic Balanced Energy Management Strategies for Fuel Cell Hybrid Power System of Unmanned Air Vehicle[J]. Acta Aeronautica et Astronautica Sinca, 2020, 41(12):293-307.
[22]RAYMER D. Aircraft Design:a Conceptual Approach[M]. Playa del Rey :American Institute of Aeronautics and Astronautics, Inc., 2012.
[23]SHERIDAN C N, PHAM D D, WHITESIDE S. Evaluation of VSPAERO Analysis Capabilities for Conceptual Design of Aircraft with Propeller-Blown Wings[C]∥AIAA Aviation 2021 Forum. Virtual Event, 2021:2510.
|