Mobile QR Code QR CODE : Journal of the Korean Society of Civil Engineers
1 
Almeida, G. A. M. and Rodríguez, J. F. (2009). “Integrating sediment dynamics into physical habitat model.” 18th World IMACS / MODSIM Congress, Cairns, Australia.Almeida, G. A. M. and Rodríguez, J. F. (2009). “Integrating sediment dynamics into physical habitat model.” 18th World IMACS / MODSIM Congress, Cairns, Australia.Google Search
2 
Bovee, K. D. (1982). A guide to stream habitat analysis using the instream flow incremental methodology, Instream Flow Information Paper No. 12, Fish and Wildlife Service, U.S. FWS/OBS-82/26, Fort Collins, CO.Bovee, K. D. (1982). A guide to stream habitat analysis using the instream flow incremental methodology, Instream Flow Information Paper No. 12, Fish and Wildlife Service, U.S. FWS/OBS-82/26, Fort Collins, CO.Google Search
3 
Bovee, K. D., Lamb, B. L., Bartholow, J. M., Stalnaker, C. B., Taylor, J. and Henriksen, J. (1998). Stream habitat analysis using the instream flow incremental methodology, Biological Resources Division Information and Technology Report (USGS/BRD- 1998-0004), U.S. Geological Survey, Fort Collins, CO.Bovee, K. D., Lamb, B. L., Bartholow, J. M., Stalnaker, C. B., Taylor, J. and Henriksen, J. (1998). Stream habitat analysis using the instream flow incremental methodology, Biological Resources Division Information and Technology Report (USGS/BRD- 1998-0004), U.S. Geological Survey, Fort Collins, CO.Google Search
4 
Gard, M. (2009). “Comparison of spawning habitat predictions of PHABSIM and River2D models.” International Journal of River Basin Management, Vol. 7, No. 1, pp. 55-71.10.1080/15715124.2009.9635370Gard, M. (2009). “Comparison of spawning habitat predictions of PHABSIM and River2D models.” International Journal of River Basin Management, Vol. 7, No. 1, pp. 55-71.DOI
5 
He, Z., Wu, W. and Wang, S. S. Y. (2006). “A depth-averaged 2-D analysis of fish habitat suitability impacted by vegetation and sediment.” Proceedings of the 2006 World Environmental and Water Resources Congress, Omaha, NE.10.1061/40856(200)333He, Z., Wu, W. and Wang, S. S. Y. (2006). “A depth-averaged 2-D analysis of fish habitat suitability impacted by vegetation and sediment.” Proceedings of the 2006 World Environmental and Water Resources Congress, Omaha, NE.DOI
6 
Im, D., Kang, H., Kim, K. H. and Choi, S. U. (2011). “Changes of river morphology and physical fish habitat following weir removal.” Ecological Engineering, Vol. 37, No. 6, pp. 883-892.10.1016/j.ecoleng.2011.01.005Im, D., Kang, H., Kim, K. H. and Choi, S. U. (2011). “Changes of river morphology and physical fish habitat following weir removal.” Ecological Engineering, Vol. 37, No. 6, pp. 883-892.DOI
7 
Jia, Y. and Wang, S. S. Y. (2001). CCHE2D: Two-dimensional hydrodynamic and sediment transport model for unsteady open channel flows over loose bed, Technical Report (NCCHE-TR- 2001-1), National Center for Computational Hydroscience and Engineering, University of Mississippi, MS.Jia, Y. and Wang, S. S. Y. (2001). CCHE2D: Two-dimensional hydrodynamic and sediment transport model for unsteady open channel flows over loose bed, Technical Report (NCCHE-TR- 2001-1), National Center for Computational Hydroscience and Engineering, University of Mississippi, MS.Google Search
8 
Kang, H., Im, D., Hur, J. W. and Kim, K. H. (2011). “Estimation of habitat suitability index of fish species in the Geum river watershed.” Journal of the Korean Society of Civil Engineers, Korean Society of Civil Engineers, Vol. 31, No. 2B, pp. 193-203 (in Korean).Kang, H., Im, D., Hur, J. W. and Kim, K. H. (2011). “Estimation of habitat suitability index of fish species in the Geum river watershed.” Journal of the Korean Society of Civil Engineers, Korean Society of Civil Engineers, Vol. 31, No. 2B, pp. 193-203 (in Korean).Google Search
9 
KICT (2007). Technology for surface water resources investigation, The 21st Century Frontier R&D Program-Sustainable Water Resources Research Program, Ministry of Science and Technology (in Korean).KICT (2007). Technology for surface water resources investigation, The 21st Century Frontier R&D Program-Sustainable Water Resources Research Program, Ministry of Science and Technology (in Korean).Google Search
10 
Kim, J. S., Lee, C. J. and Kim, W. (2007). “Calculation of Roughness Coefficient in Gravel-bed River with Observed Water Levels.” Journal of Korea Water Resources Association, Korea Water Resources Association, Vol. 40, No. 10, pp. 755-768 (in Korean).10.3741/JKWRA.2007.40.10.755Kim, J. S., Lee, C. J. and Kim, W. (2007). “Calculation of Roughness Coefficient in Gravel-bed River with Observed Water Levels.” Journal of Korea Water Resources Association, Korea Water Resources Association, Vol. 40, No. 10, pp. 755-768 (in Korean).DOI
11 
Kuhlne, R. A. (1993). “Fluvial transport of sand and gravel mixtures with bimodal size distributions.” Sedimentary Geology, Vol. 85, pp. 17-24.10.1016/0037-0738(93)90072-DKuhlne, R. A. (1993). “Fluvial transport of sand and gravel mixtures with bimodal size distributions.” Sedimentary Geology, Vol. 85, pp. 17-24.DOI
12 
Lee, C. J., Kim, J. S., Kim, C. Y. and Kim, D. G. (2008). “Application of slope-area discharge estimation method using continuously observed water level data in a gravel bed river.” Journal of Korea Water Resources Association, Vol. 41, No. 5, pp. 503-515 (in Korean).10.3741/JKWRA.2008.41.5.503Lee, C. J., Kim, J. S., Kim, C. Y. and Kim, D. G. (2008). “Application of slope-area discharge estimation method using continuously observed water level data in a gravel bed river.” Journal of Korea Water Resources Association, Vol. 41, No. 5, pp. 503-515 (in Korean).DOI
13 
Limerinos, J. T. (1970). Determination of the Manning coefficient from measured bed roughness innatural channels, U.S. Geological Survey Water-Supply Paper 1898-B., U.S. Geological Survey.Limerinos, J. T. (1970). Determination of the Manning coefficient from measured bed roughness innatural channels, U.S. Geological Survey Water-Supply Paper 1898-B., U.S. Geological Survey.Google Search
14 
Liu, X. L. (1986). Nonuniform bed load transport rate and coarsening stabilization, Master's Thesis, Chengdu University of Technology, China.Liu, X. L. (1986). Nonuniform bed load transport rate and coarsening stabilization, Master's Thesis, Chengdu University of Technology, China.Google Search
15 
Maddock, I. (1999). “The importance of physical habitat assessment for evaluating river health.” Freshwater biology, Vol. 41, No. 2, pp. 373-391.10.1046/j.1365-2427.1999.00437.xMaddock, I. (1999). “The importance of physical habitat assessment for evaluating river health.” Freshwater biology, Vol. 41, No. 2, pp. 373-391.DOI
16 
Milhous, R. T., Updike, M. A. and Schneider, D. M. (1989). “Physical habitat simulation system reference manual-version II.” Information Paper No. 26., U.S. Fish and Wildlife Service, FWS/OBS-89/16, Fort Collins, CO.Milhous, R. T., Updike, M. A. and Schneider, D. M. (1989). “Physical habitat simulation system reference manual-version II.” Information Paper No. 26., U.S. Fish and Wildlife Service, FWS/OBS-89/16, Fort Collins, CO.Google Search
17 
MLTMA (2009). Development of techniques for creation of wildlife habitat, Ecoriver 21 Research Center (in Korean).MLTMA (2009). Development of techniques for creation of wildlife habitat, Ecoriver 21 Research Center (in Korean).Google Search
18 
MOCT (1995). The Dal River fundamental planning report for river improvement works (local river), River Planning Division (in Korean).MOCT (1995). The Dal River fundamental planning report for river improvement works (local river), River Planning Division (in Korean).Google Search
19 
Samaga, B. R., Ranga Raju, K. G. and Garde, R. J. (1986a). “Bed load transport rate of sediment mixture.” Journal of Hydraulic Engineering, Vol. 11, pp. 1003-1018.10.1061/(ASCE)0733-9429(1986)112:11(1003)Samaga, B. R., Ranga Raju, K. G. and Garde, R. J. (1986a). “Bed load transport rate of sediment mixture.” Journal of Hydraulic Engineering, Vol. 11, pp. 1003-1018.DOI
20 
Samaga, B. R., Ranga Raju, K. G. and Garde, R. J. (1986b). “Suspended load transport rate of sediment mixture.” Journal of Hydraulic Engineering, Vol. 11, pp. 1019-1038.10.1061/(ASCE)0733-9429(1986)112:11(1019)Samaga, B. R., Ranga Raju, K. G. and Garde, R. J. (1986b). “Suspended load transport rate of sediment mixture.” Journal of Hydraulic Engineering, Vol. 11, pp. 1019-1038.DOI
21 
Seo, I. W., Park, S. W., Song, C. G. and Kim, S. E. (2010). “Analysis of fish physical habitat changes due to river improvement.” Proceeding of the Korea Water Resources Association Conference, pp. 551-555 (in Korean).Seo, I. W., Park, S. W., Song, C. G. and Kim, S. E. (2010). “Analysis of fish physical habitat changes due to river improvement.” Proceeding of the Korea Water Resources Association Conference, pp. 551-555 (in Korean).Google Search
22 
Yi, Y., Wang, Z. and Yang, Z. (2010). “Two-dimensional habitat modeling of chinese sturgeon spawning sites.” Ecological Modelling, Vol. 221, No. 5, pp. 864-875.10.1016/j.ecolmodel.2009.11.018Yi, Y., Wang, Z. and Yang, Z. (2010). “Two-dimensional habitat modeling of chinese sturgeon spawning sites.” Ecological Modelling, Vol. 221, No. 5, pp. 864-875.DOI
23 
Wilcock, P. R. and McArdell, B. W. (1993). “Surface-based fractional transport rate: Mobilization Thresholds and Partial Transport of a Sand-Gravel Sediment.” Water Resources Research, Vol. 29, No. 24, pp. 1297-1312.10.1029/92WR02748Wilcock, P. R. and McArdell, B. W. (1993). “Surface-based fractional transport rate: Mobilization Thresholds and Partial Transport of a Sand-Gravel Sediment.” Water Resources Research, Vol. 29, No. 24, pp. 1297-1312.DOI
24 
Williams, G. P. and Rosgen, D. L. (1989). Measured total sediment load (suspended load and bed load) for 93 United States stream, Open-File Report 89-67, U.S. Geological Survey, Washington, D.C.Williams, G. P. and Rosgen, D. L. (1989). Measured total sediment load (suspended load and bed load) for 93 United States stream, Open-File Report 89-67, U.S. Geological Survey, Washington, D.C.Google Search
25 
Wu, W., Wang, S. S. Y. and Jia, Y. (2000). “Nonuniform sediment transport in Alluvial rivers.” Journal of Hydraulic Research, IAHR, Vol. 38, No. 6, pp. 427-434.10.1080/00221680009498296Wu, W., Wang, S. S. Y. and Jia, Y. (2000). “Nonuniform sediment transport in Alluvial rivers.” Journal of Hydraulic Research, IAHR, Vol. 38, No. 6, pp. 427-434.DOI