Acknowledgement
Supported by : ACCIS Centre for Doctoral Training
References
- Airbus (2013), "Future Journeys 2013-2032", Retrieved May 8, 2015 (http://www.airbus.com/company/market/forecast/?eID=dam_frontend_push&docID=33752.
- Bendsoe, M.P. and Sigmund, O. (2003), Topology Optimization Theory, Methods and Applications, Springer.
- Brampton, C.J., Kim, H.A. and Cunningham, J.L. (2012), "Level set topology optimisation of aircraft wing considering aerostructural interaction", 12th AIAA Aviation Technology, Integration, and Operations (ATIO) Conference and 14th AIAA/ISSM, Indianapolis, Indiana, U.S.A., September.
- Dunning, P.D., Stanford, B.K. and Kim, H.A. (2014), "Aerostructural level set topology optimization for a common research model wing", 10th AIAA Multidisciplinary Design Optimization Conference, National Harbor, Maryland, U.S.A., January.
- Dunning, P.D., Stanford, B.K. and Kim, H.A. (2015), "Level-set topology optimization with aeroelastic constraints", 56th AIAA/ASMe/ASCE/AHS/SC Structures, Structural Dynamics, and Material Conference, Kissimmee, Florida, U.S.A., January.
- Eastep, F.E., Tischler, V.A., Venkayya, V.B. and Khot, N.S. (1999), "Aeroelastic tailoring of composite structures", J. Aircraft, 36(6), 1041-47. https://doi.org/10.2514/2.2546
- European Aviation Safety Agency (2013), Certification Specifications for Normal, Utility, Aerobatic, and Commuter Catergory Aeroplanes CS 23.
- Francois, G. and Cooper, J.E. (2014), "Novel structural wing designs for forward swept wings", 2014 Royal Aeronautical Society Biennial Applied Aerodynamics Research Conference, Bristol ,U.K., July.
- Francois, G., Cooper, J.E. and Weaver, P.M. (2014) "Aeroelastic tailoring of composite wings using internal structural members shape and stacking sequence", 4th Aircraft Structural Design Conference, Belfast, U.K., October.
- Francois, G., Cooper, J.E. and Weaver, P.M. (2015), "Aeroelastic tailoring using rib/spar orientations: experimental investigation", 56th AIAA/ASMe/ASCE/AHS/SC Structures, Structural Dynamics, and Material Conference, Kissimmee, Florida, U.S.A., January.
- Guo, S. (2007), "Aeroelastic optimization of an aerobatic aircraft wing structure", Aerosp. Sci. Technol., 11(5), 396-404. https://doi.org/10.1016/j.ast.2007.01.003
- Guo, S., Li, D. and Liu, Y. (2011), "Multi-objective optimization of a composite wing subject to strength and aeroelastic constraints", Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering, 226(9), 1095-1106. https://doi.org/10.1177/0954410011417789
- Harmin, M.Y., Ahmed, A.T., Cooper, J.E. and Bron, F. (2011), "Aeroelastic tailoring of metallic wing structures", 52nd AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference, Denver, Colorado, U.S.A., April.
- Imetrum (2016), Retrieved February 1, (http://www.imetrum.com/).
- Johnson, E.H. (1997), "MSC developments in aeroelasticity", 1997 MSC Aerospace Users' Conference.
- Jutte, C.V., Stanford, B.K., Wieseman, C.D. and Moore, J.B. (2014), "Aeroelastic tailoring of the NASA common research model via novel material and structural configurations", 53th AIAA/ASMe/ASCE/ AHS/SC Structures, Structural Dynamics, and Material Conference, National Harbor, Maryland, U.S.A., January.
- Kim, T. and Hwang, I.H. (2005), "Optimal design of composite wing subjected to gust loads", Comput. Struct., 83(19-20), 1546-54. https://doi.org/10.1016/j.compstruc.2005.02.002
- Kolonay, R.M. and Kobayashi, M.H. (2010), "Topology, shape, and sizing optimization of aircraft lifting surfaces using a cellular division method", 13th AIAA/ISSMO Multidisciplinary Analysis Optimization Conference, Forth Worth, Texas, U.S.A., September.
- Liu, Q., Jrad, M., Mulani, S.B. and Kapania, R.K. (2015), "Integrated global wing and local panel optimization of aircraft wing", 56th AIAA/ASMe/ASCE/AHS/SC Structures, Structural Dynamics, and Material Conference, Kissimmee, Florida, U.S.A., Janurary.
- Liu, Q., Mulani, S. and Kapania, R.K. (2014), "Global/local multidisciplinary design optimization of subsonic wing", 53th AIAA/ASMe/ASCE/AHS/SC Structures, Structural Dynamics, and Material Conference, National Harbor, Maryland, U.S.A, January.
- Locatelli, D., Mulani, S.B. and Kapania, R.K. (2011), "Wing-box weight optimization using curvilinear spars and ribs (SpaRibs)", J. Aircraft, 48(5), 1671-84. https://doi.org/10.2514/1.C031336
- Manan, A., Vio, G.A., Harmin, M.Y. and Cooper, J.E. (2010), "Optimization of aeroelastic composite structures using evolutionary algorithms", Eng. Optim., 42(2), 171-84. https://doi.org/10.1080/03052150903104358
- Maute, K. and Allen, M. (2004), "Conceptual design of aeroelastic structures by topology optimization", Struct. Multidisc. Optim., 27(1-2), 27-42. https://doi.org/10.1007/s00158-003-0362-z
- Rodden, W.P. and Johnson, E.H. (1994), MSC/NASTRAN Aeroelastic Analysis User's Guide v68, The MacNeal-Schwendler Corporation, Los Angeles, California, U.S.A.
- Stanford, B.K., Wieseman, C.D. and Jutte, C.V. (2015), "Aeroelastic tailoring of transport wings including transonic flutter constraints", 56th AIAA/ASMe/ASCE/AHS/SC Structures, Structural Dynamics, and Material Conference, Kissimmee, Florida, U.S.A., January.
- Stodieck, O., Cooper, J.E. and Weaver, P.M. (2015), "On the interpretation of bending-torsion coupling for wwept, non-homogenous wings", 56th AIAA/ASMe/ASCE/AHS/SC Structures, Structural Dynamics, and Material Conference, Kissimmee, Florida, U.S.A., January.
- Stodieck, O., Cooper, J.E., Weaver, P.M. and Kealy, P. (2013), "Improved aeroelastic tailoring using towsteered composites", Compos. Struct., 106, 703-15. https://doi.org/10.1016/j.compstruct.2013.07.023
- Stodieck, O., Cooper, J.E., Weaver, P.M. and Kealy, P. (2014), "Optimisation of tow-steered composite wing laminates for aeroelastic tailoring", 53th AIAA/ASMe/ASCE/AHS/SC Structures, Structural Dynamics, and Material Conference, National Harbor, Maryland, U.S.A., January.
- Tatham, R. (1951), "Shear centre, flexural centre and flexural axis: an attempt to clear up current confusion and provide definitions differentiating between the three terms", Aircraft Eng. Aerosp. Tech., 23(7), 209-10. https://doi.org/10.1108/eb032058
- Vio, G.A. and Fitzpatrick, I.R. (2012), "Design of composite structures for improved aeroelastic performance", 28th International Council of the Aeronautical Sciences, Brisbane, Australia, September.
- Vio, G.A., Georgiou, G.and Cooper, J.E. (2012), "Design of composite structures to improve the aeroelastic performance", 53rd AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference, Honolulu, Hawai, U.S.A., April.
- Weisshaar, T.A. (1981), "Aeroelastic tailoring of forward swept composite wings", J. Aircraft, 18(8), 669-676. https://doi.org/10.2514/3.57542
- Weisshaar, T.A. (1987), "Aeroelastic tailoring-creative uses of unusual materials", AIAA/ASME/ASCE /AHS 28th Structures, Structural Dynamics and Materials Conference, Monterey, California, U.S.A., April.
- Wright, J.R. and Cooper, J.E. (2007), Introduction to Aircraft Aeroelasticity and Loads, Wiley, Chichester, U.K.
Cited by
- Flutter characteristics of axially functional graded composite wing system vol.7, pp.4, 2017, https://doi.org/10.12989/aas.2020.7.4.353