Acknowledgement
Supported by : 한국 학술 진흥 재단
References
- Gent, R. W., Dart, N. P., and Cansdale, J. T., "Aircraft Icing", Philosphical Transactions of the Royal Society of London, Vol. 358, 2000, pp. 2873-2911. https://doi.org/10.1098/rsta.2000.0689
- Wright, B. W., Gent, R. W., and Guffond, D., "DRA/NASA/ONERA Collaboration on Icing Research Part II - Prediction of Airfoil Ice Accretion", NASA/CR-202349, Lewis Research Center, 1997.
- 정경진, 강인모, 최낙윤, “FENSAP-ICE를 이용한 에어포일 결빙해석”, KSAS추계학술발표대회, November, 2009, pp. 88-91.
- 신성민, 이창훈, 정성기, 명노신, 조태환, 정재홍, 정훈화, “KC-100 항공기 주날개 익형의 결빙 해석”, KSAS춘계학술발표대회, April, 2010, pp. 113-116.
- 백선우, 이관중, 오세종, “2차원 날개의 서리얼음 형상 예측”, 한국전산유체공학회지, 제14권, 제1호, 2009, pp. 45-52.
- Messinger, B. L., "Equilibrium Temperature of an Unheated Icing Surface as Function of Airspeed", Journal of the Aeronautical Sciences, Vol. 20, No. 1, 1953, pp. 29-42. https://doi.org/10.2514/8.2520
- Von Doenhoff, A. E., and Horton, E. A., "Low-Speed Experimental Investigation of the Effect of Sandpaper Type of Roughness on Boundary-Layer Transition", NACA TN 3858, 1956
- Cebeci, T., and Bradshaw, P., "Momentum Transfer in Boundary Layers", MacGraw-Hill,New York, 1997.
- Kays, W. M., and Crawford, M. E., "Convective Heat and Mass Transfer 2nd Edition", MacGraw-Hill, New York, 1980.
- Sogin, H. H., "A Design Manual for Thermal Anti-Icing Systems", Wright Air Developement Center(WADC) Technical Report 54-313, 1954.
- Lozowsji, E. P., Stallabrass, J. R., and Hearty, P. F., "The Icing of an UnheatedNon-Rotating Cylinder in Liquid Water Droplet-Ice Crystal Clouds", National ResearchCouncil of Canada (NRC) Report LTR-LT-96, 1979.
- Cansdale, J. T., and Gent, R. W., "Ice Accretion on Aerofoils in Two-Dimensional Compressible Flow-A Theoretical Model", Royal Aircraft Establishment Technical Report 82128, 1983.
- Wright, W. B., and Rutkowski, A., "Validation Results for LEWICE 2.0", NASA/CR-1999-208690, 1999.
- Gary A. R., and Brian M. B., “Users Manual for the NASA Lewis Ice AccretionPrediction Code (LEWICE)”, NASA/CR-185129, Lewis Research Center 1990.
- Fortin, G., Ilinca, A., Laforte, J., and Brandi, V., "New Roughness ComputationMethod and Geometric Accretion Model for Airfoil Icing", Journal of Aircraft, Vol. 41, No. 1, 2004, pp. 119-127. https://doi.org/10.2514/1.173
- Yamaguchi, K., and Hansman, R. J. Jr., "Deterministic Multi-zone Ice AccretionModeling", NASA/NAG3-666, 1991.
Cited by
- A Study on the Positioning of Ice Sensors for Assessing Airworthiness of Military Helicopter vol.40, pp.8, 2016, https://doi.org/10.3795/KSME-B.2016.40.8.495
- Analysis of Relations between Ice Accretion Shapes and Ambient Conditions by Employing Self-Organization Maps and Analysis of Variance vol.39, pp.8, 2011, https://doi.org/10.5139/JKSAS.2011.39.8.689