Numerical Study of a Transport Aircraft Wing Impact with a Birch Tree

被引:0
|
作者
Ding, Menglong [1 ]
Binienda, Wieslaw [1 ]
机构
[1] Univ Akron, Dept Civil Engn, Akron, OH 44325 USA
关键词
D O I
暂无
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Assessment of the crashworthiness of the aircraft structure like the wing is important. Nowadays, the finite-element (FE) analysis is widely used in this area. Also, the numerical simulation can aid air crash investigation to exclude some unreasonable reasons. In this work, finite-element models of the wing and slat structures are generated including skin, spars, stringers, and ribs. In every scenario with various fidelity of the mesh of the wing, material model of the birch, and the impact location, the front spar of the wing cut through the tree and the upper part of the tree fell in the direction of the movement of the airplane. The damage to the wing is localized on the leading edge and front spar, while the structural integrality of the wing is maintained. The impact with the birch tree cannot cause significant damage to the wing. This paper exhibits the methodology of modeling and simulating the wing impact against the tree to assess its crashworthiness and explore the possible reason for the accident.
引用
收藏
页码:67 / 72
页数:6
相关论文
共 50 条
  • [1] APPLICATION OF NUMERICAL METHODS FOR CRASHWORTHINESS INVESTIGATION OF A LARGE AIRCRAFT WING IMPACT WITH A TREE
    Zhang, Chao
    Binienda, Wieslaw K.
    Horvat, Frank E.
    Wang, Wenzhi
    MATHEMATICAL AND COMPUTATIONAL FORESTRY & NATURAL-RESOURCE SCIENCES, 2013, 5 (01): : 71 - 85
  • [2] Aerodynamic Optimization Study on Transport Aircraft Wing
    Darshan, Y. N.
    Narahari, H. K.
    Sriram, A. T.
    ADVANCED TRENDS IN MECHANICAL AND AEROSPACE ENGINEERING (ATMA-2019), 2021, 2316
  • [3] Numerical study of fatigue damage accumulation in composite wing panels of prospective supersonic transport aircraft
    Turbin N.V.
    Shelkov K.A.
    Aerospace Systems, 2023, 6 (03) : 481 - 490
  • [4] Numerical analysis of transport aircraft using different wing tip devices
    Streit, Th.
    Ronzheimer, A.
    Buescher, A.
    NEW RESULTS IN NUMERICAL AND EXPERIMENTAL FLUID MECHANICS V, 2006, 92 : 59 - +
  • [5] Numerical Study of a Transonic Aircraft Wing for the Prediction of Flutter Failure
    Singh I.
    Mishra R.K.
    Aswatha Narayana P.S.
    Journal of Failure Analysis and Prevention, 2017, 17 (1) : 107 - 119
  • [6] NUMERICAL STUDY IN WING TIP VORTEX FOR A MODIFIED COMMERCIAL BOEING AIRCRAFT
    Hernandez-Rivera, Ricardo
    Hernandez-Guerrero, Abel
    Rubio-Arana, Cuauhtemoc
    Arroyo, Raul Lesso
    IMECE 2008: HEAT TRANSFER, FLUID FLOWS, AND THERMAL SYSTEMS, VOL 10, PTS A-C, 2009, : 349 - 356
  • [7] Numerical simulation of ice accretions on aircraft wing
    Li, Xin
    Bai, Jun-Qiang
    Wang, Kun
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2013, 28 (12): : 2663 - 2670
  • [8] Numerical simulation of ice accretions on an aircraft wing
    Cao, Yihua
    Ma, Chao
    Zhang, Qiang
    Sheridan, John
    AEROSPACE SCIENCE AND TECHNOLOGY, 2012, 23 (01) : 296 - 304
  • [9] TRANSONIC WING DESIGN FOR TRANSPORT AIRCRAFT.
    Krenz, Guenter
    Prace Instytutu Metalurgii Zelaza im St. Staszica, 1979, : 52 - 61
  • [10] Aerodynamic optimisation of a flying wing transport aircraft
    Strueber, H.
    Hepperle, M.
    NEW RESULTS IN NUMERICAL AND EXPERIMENTAL FLUID MECHANICS V, 2006, 92 : 69 - +