References
- 건설부 (1983). 낙동강 하천정비기본계획, 건설부 보고서
- 건설교통부 (1983-2002). 한국수문조사연보, 건설교통부 보고서
- 건설교통부 (2002). 낙동강유역 황강하천정비기본계획, 건설교통부 보고서
- Araki, K., Tono, T., Kamada, M., Yuki, T., and Okabe, T. (2001). 'Temporal change of woody plant distribution on bars in relation to the change of physical condition of bar-beds in middle and lower reaches of Naka River, Shikoku, Japan,' Proceedings of 28th Annual Meeting of Environmental System Research 2001, pp. 51-56 (in Japanese)
- Choi, S.-U., Kang, H., and Yeo, K. (2003). 'Flow and sediment transport in emerging vegetated zone,' Ecology and Civil Engineering, Vol. 6, No. 1, pp. 87-96 https://doi.org/10.3825/ece.6.87
- Hydrology Engineering Center (1998). Hec-Ras river analysis system user's manual, US Army Corps of Engineers, Davis, CA
- Johnson, W.C. (1994). 'Woodland expansion in the Platte River, Nebraska: Patterns and causes,' Ecological Monographs, Vol. 64, pp. 45-84 https://doi.org/10.2307/2937055
- Johnson, W.C., Burgess, R.L., and Keammer, E.R. (1976). 'Forest overstory vegetation and environment on the Missouri River floodplain in North Dakota, Ecological Monographs, Vol. 46, pp. 59-84 https://doi.org/10.2307/1942394
- Kamada, M., Kojima, M., Yoshida, R., Asai, K., and Okabe, T. (2002). 'Influence of dam construction on distribution of riparian plant communities in Katsuura River,' Shikoku, Japan. Ecology and Civil Engineering, Vol. 5, pp. 103-114 (in Japanese) https://doi.org/10.3825/ece.5.103
- Kamada, M. and Okabe, T. (1998). 'Vegetation mapping with the aid of low-altitude aerial photography,' Applied Vegetation Science, Vol. 1, pp. 211-218 https://doi.org/10.2307/1478950
- Kohri, M., Kamada, M., Okabe, T., and Nakagoshi, N. (2000). 'Distribution pattern of Elaeagnus umbellate communities on the gravel bars in relation to hydrogeomorphic factors in Yoshino River, Shikoku,' Japan. Environmental Systems Research, Vol. 28, pp. 353-358 (in Japanese) https://doi.org/10.2208/proer.28.353
- Kohri, M., Kamada, M., Yuuki, T., and Okabe, T. (2002). 'Expansion of Elaeagnus umbellate communities on a gravel bar in the Naka River, Shikoku,' Japan. Plant Species Biology, Vol. 17, pp. 25-36 https://doi.org/10.1046/j.1442-1984.2002.00071.x
- Okabe, T., Anase, Y., and Kamada, M. (2001). 'Relationship between willow community establishment and hydrogeomorphologic process in a reach of alternate bars,' Proceedings of the 29th Biennial Congress of IAHR, Beijing, China
- Tsujimoto, T. (1999). 'Fluvial processes in streams with vegetation,' Journal of Hydraulic Research. IAHR, Vol. 37, No. 6, pp. 789-803 https://doi.org/10.1080/00221689909498512
- Yang, T. Y. and Simoes, F.J.M. (1998). 'Simulation and prediction of river morphologic changes using GSTARS 2.0,' The 3rd International Conference on Hydro-Science and Engineering
- Yoon, B. and Woo, H. (2000). 'Forum article: Sediment problems in Korea,' Journal of Hydraulic Engineering. ASCE, Vol. 126, No. 7, pp. 486-491 https://doi.org/10.1061/(ASCE)0733-9429(2000)126:7(486)
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