해안환경에서 비사이동의(飛砂), 모래날림) 특성

  • 김영민 (명지대학교 토목환경공학과) ;
  • 류호상 (전북대학교 지리교육과) ;
  • 윤현덕 (명지대학교 토목환경공학과)
  • Published : 2024.03.30

Abstract

Keywords

References

  1. 강지현, 서종철, 류호상, 김태석, 오정식, 이재호, 오수정, 안세진. (2017). 우리나라해안사구의 현황과 사회.경제적 특성 고찰. 한국지형학회지, Vol. 24(3), p. 149-159. 
  2. 류완상. (2002). 해안사구의 바람과 비사에 관한 연구 -서해안 신두리를 사례로-. 서울대학교 석사학위논문. 
  3. 류호상. (2001). 겨울철 모래이동과 전사구의 지형변화 -신두리 해안사구 지대를 사례로-. 지리학논총. 38,31-60. 
  4. 유근배, 류호상. (2007). 한국 서해한의 해안사구 -지형학적 관점을 중심으로-. 서울대학교 규장각한국학연구원, 서울대학교출판부. 
  5. 제영준, 전용호, 윤한삼. (2013). 식생 및 해안표착물에 의한 비사 퇴적 풍동실험 연구. 한국해양환경.에너지학회, 16(3), 163-170. 
  6. Bagnold, R.A., (1941). The Physics of blown sand and desert dunes. Methuen, New York. 
  7. Bauer, B.O. and Namikas, S.L. (1998). Design and field test of a continuously weighing, tipping-bucket assembly for aeolian sand traps. Earth Surface Processes and Landforms. 23, 1171-1183. 
  8. Belly, P.V. (1964). Sand Movement by Wind (Technical Memorandum No.1), U.S.Army Corps of Engineers. 
  9. Chepil, W.S. (1945). Dynamics of Wind Erosion: I. Nature of Movement of Soil by Wind. Soil Science, 60(4), 305-320. 
  10. Chepil, W.S. and Woodruff, N.P. (1963). The Physics of Wind Erosion and Its Control. Advances in Agronomy, 15, 211-302. 
  11. Cohn, N., Hoonhout, B.M., Goldstein, E.B, de Vries, S, Moore, L.J., Vinent. O.D. and Ruggiero, P. (2019). Exploring marine and aeolian controls on coastal foredune growth using a coupled numerical model. Journal of Marine Science and Engineering, 7(1), 13. 
  12. Fryrear, D.W. (1986). A field dust sampler. Journal of Soil and Water Conservation. 41 (2), 117-120. 
  13. Goossens, D., Offer, Z. and London, G. (2000), Wind tunnel and field calibration of five aeolian sand traps. Geomorphology, 35(3-4), 233-252. 
  14. Hallermeier, R.J. and Rhodes, P.E. (1988). Generic treatment op dune erosion for 100-year event. Coastal Engineering 1988, 1197-1211. 
  15. Ho, T.D., Valance, A., Dupont, P. and Ould El Moctar, A. (2011). Scaling laws in aeolian sand transport. Physical Review Letters, 106(9), 094501. 
  16. Hoonhout, B.M. and de Vries, S. (2016). A process-based model for aeolian sediement transport and spatiotemporal varying sediment availability. Journal of Geophysical Research:Earth Surface, 121, 1555-1575. 
  17. Horikawa, K., Hotta, S., and Kubota, S. (1982) Experimental Study of Blown Sand on a Wetted Sand Surface. Coastal Engineering in Japan, 25(1), 177-195. 
  18. Hotta, S., Kubota, S., Katori, S., and Horikawa, K. (1984). Sand transport by wind on a wet sand surface. Coastal Engineering 1984, 1265-1281. 
  19. Kawamura, R. (1951). Study of sand movement by wind. Report, 5(3), 95-112. 
  20. Kljin, J.A. (1990). Dune forming factors in a geographic context. In Bakker, T.H., W. Jungrius, P.D. and Klijin, J.A.(Eds.), Dunes of the Eropean Coasts: Geomorphology-Hydrology-Soils, Catena, 1-13. 
  21. Lettau, K. and Lettau, H. (1977). Experimental and micrometeorological field studies of dune migration. Exploring in the World's driest climate, 110-147. 
  22. Pollet, I. (1995). Meten van windsnelheden en zandtranport in een windtunnel. MSc Thesis, University Gent. 
  23. Roelvink, D., Reniers, A, van Dongeren, A, R, De Vries, J.V.T., McCall, R. and Lescinski, J. (2009). Modelling storm impacts on beaches, dunes and barrier islands. Coastal Engineering, 56(11-12),1133-1152. 
  24. Seo, J.C. (2004). The effective wind velocity and the patterns of morphological change in the coastal dune area. Journal of Korea Regional Geograpers, 10(3), 667-681. 
  25. Sherman, D.J., Jackson, D.W.T., Namikas, S.L. and Wang, J. (1998). Wind-blown sand on beaches: an evaluation of models. Geomorphology, 22, 113-133. 
  26. van der Linden, E.J. (1985). Winderosie. de ontwikkeling van een sedimentvanger: de Muis. MSc Thesis, Agricultural University Wageningen. 
  27. Vellinga, P. (1982). Beach and dune erosion during storm surges. Coastal Engineering, 6(4), 361-387. 
  28. van Rijn, L.C. (2009). Prediction of dune erosion due to storms. Coastal Engineering, 56(4), 441-457. 
  29. van Rijn, L.C. (2019). Aeolian transport over a flat sediment surface. Aeolian Transport,
  30. van Rijn, L.C. and Strypsteen, G. (2020). A fully predictive model for aeolian sand transport. Coastal Engineering, 156,103600. 
  31. Wilson, S.J. and Cooke, R.U. (1980). Wind erosion. In: Kirkby MJ, Morgan RPC (eds) Soil erosion. Wiley, Chichester, 217-252. 
  32. Zhang, W., Wang, Y., and Lee, S.J. (2008). Simultaneous PIV and PTV measurements of wind and sand particle velocities. Experiments in Fluids, 45, 241-256. 
  33. Zingg, A.W. (1953). Wind tunnel studies of the movement of sedimentary material. Proc. 5th Hydraulics Conf. Bull., 34, Inst, of Hydraulics, Iowa City, 111-135.