Long range transport aircraft using hydrogen fuel

被引:92
|
作者
Verstraete, Dries [1 ]
机构
[1] Univ Sydney, Sch Aerosp Mech & Mechatron Engn, Sydney, NSW 2006, Australia
关键词
Hydrogen; Transport aircraft; Aviation; LIQUID-HYDROGEN; AVIATION; PROSPECTS; IMPACT; USAGE;
D O I
10.1016/j.ijhydene.2013.09.021
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Hydrogen is since long seen as an outstanding candidate for an environmentally acceptable, future aviation fuel. Given that most comprehensive studies on its use in aviation were performed over two decades ago, the current article evaluates its potential as a fuel for long range transport aircraft at current and future technology levels. The investigations show that hydrogen has the potential to reduce the energy utilisation of long range transport aircraft by approximately 11%. The use of hydrogen namely allows a much smaller wing area and span since the wing size is not restricted by its fuel storage capacity. At a given price per unit energy content, the smaller wings lead to a reduction of around 30% in take-off gross weight and 3% in direct operating costs for a given fuel price per energy content. The hydrogen-fuelled aircraft are furthermore slightly more sensitive to a possible reduction in operating empty weight in the future and 20% less sensitive to further improvements in engine thrust specific fuel consumption. Copyright (C) 2013, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:14824 / 14831
页数:8
相关论文
共 50 条
  • [21] Autonomous morphing strategy for a long-range aircraft using reinforcement learning
    Zhang, Baochao
    Guo, Jie
    Wang, Haoning
    Tang, Shengjing
    AEROSPACE SCIENCE AND TECHNOLOGY, 2024, 148
  • [22] CASE FOR HYDROGEN-FUELED TRANSPORT AIRCRAFT
    BREWER, GD
    ASTRONAUTICS & AERONAUTICS, 1974, 12 (05): : 40 - 51
  • [23] Long-Range: Now Within Range Cellula Closes In On a Hydrogen-Fuel-Cell-AUV Future
    Chan, Nicole
    SEA TECHNOLOGY, 2021, 62 (12) : 11 - 14
  • [24] Hydrogen powered aircraft : The future of air transport
    Khandelwal, Bhupendra
    Karakurt, Adam
    Sekaran, Paulas R.
    Sethi, Vishal
    Singh, Riti
    PROGRESS IN AEROSPACE SCIENCES, 2013, 60 : 45 - 59
  • [25] Using High-Frequency Data for Predicting Fuel Use of Jet Transport Aircraft
    Lawrance, Nicholas R. J.
    Sukkarieh, Salah
    Masson, Bertrand
    JOURNAL OF AIRCRAFT, 2017, 54 (06): : 2115 - 2125
  • [26] Fuel consumption minimization of transport aircraft using real-coded genetic algorithm
    Singh, Vedant
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART G-JOURNAL OF AEROSPACE ENGINEERING, 2018, 232 (10) : 1925 - 1943
  • [27] Long Range Ultrasonic Inspection of Aircraft Wiring
    Parthipan, T.
    Jackson, P.
    Chong, A.
    Legg, M.
    Mohimi, A.
    Kappatos, V.
    Selcuk, C.
    Gan, T. H.
    Moustakidis, S.
    Hrissagis, K.
    2014 IEEE 23RD INTERNATIONAL SYMPOSIUM ON INDUSTRIAL ELECTRONICS (ISIE), 2014, : 1289 - 1294
  • [28] MODELING LONG-RANGE TRANSPORT USING TRAJECTORY TECHNIQUES
    MERRILL, JT
    PALEOCLIMATOLOGY AND PALEOMETEOROLOGY : MODERN AND PAST PATTERNS OF GLOBAL ATMOSPHERIC TRANSPORT, 1989, 282 : 207 - 225
  • [29] Feasibility analysis of hydrogen as additional fuel in aircraft propulsion
    Juste, Gregorio L.
    Benavides, Efren M.
    INTERNATIONAL JOURNAL OF GREEN ENERGY, 2008, 5 (1-2) : 69 - 86
  • [30] POTENTIAL OF LIQUID HYDROGEN AS A MILITARY AIRCRAFT FUEL.
    Mikolowsky, William T.
    Noggle, Larry W.
    1976, 3 Sess 5C