All Issue

2020 Vol.7, Issue 4 Preview Page

Original Article

31 December 2020. pp. 308-319
Abstract
References
1
Ahn, S.S., Lee, S.I., and Lee, Z.S. 2012. Analysis of hydraulic characteristics in ice-harbor fishway. KENSS 21: 1395-1406. 10.5322/JES.2012.21.11.1395
2
An, M.W. 2008. Development of an environment friendly fish raceway for eco-restoration of streams. Ph.D. Program in Rural Engineering Graduate School of Konkuk University. (in Korean)
3
Baker, C.O. and Votapka, F.E. 1990. Fish passage through culverts. San Dimas, CA :USDA, Forest Service Technology and Development Center, FHWA-FL-90-006: 1-67.
4
Bates, K., Barnard, B., Heiner, B., Klavas, J., and Powers, P. 2003. Design of road culverts for fish passage. Washington Department of Fish and Wildlife, Olympia.
5
Boubee, J., Jowett, I., Nichols, S., and Williams, E. 1999. Fish passage at culverts. areport for the department of conservation. National Institute of Water and Atmospheric Research, Wellington.
6
Bunt, C.M. 2001. Fishway entrance modifications enhance fish attraction. Fisheries Management and Ecology 8: 95-105. 10.1046/j.1365-2400.2001.00238.x
7
Byun, W.G. 2001. Development and application of environment friendly hybrid fishway for river ecosystem. Dept. of Civil and Environmental System Engineering graduate School of Konkuk University. (in Korean)
8
Choi, J.W., Park, C.S., Lim, B.J., Park, J.H., and An, K.G. 2013. Fish passage evaluations in the fishway constructed on Seungchon weir. KENSS 22: 215-223, Chungnam National University. (in Korean) 10.5322/JESI.2013.22.2.215
9
Guo, Y.B. 2020. Safety evaluation of inlet blocking facility for multifunctional fish catch to combat avian influenza. Kyungpook National University. (in Korean)
10
Gyeongbuk Province. 2013. The project of flood district improvement in Cheoksan river. Construction & Disaster Division. (in Korean)
11
Han, J.H., Ko, D.G., Lim, B.J., Park, J.H., and An, K.G. 2012. Summer patterns and diel variations of fish movements using fish trap sampling technique in the Juksan weir. EIA. 21: 879-891.
12
Ju, H.K. 2005. A study on the feasibility of fish way of large dam. Graduate School, Yeungnam University. (in Korean)
13
Kan, G. 2020. A study on the Eodo Facilities for the Elimination of Avian Influenza (AI) Dam. Kyungpook National University. (in Korean)
14
Kang, E.J., Yang, H., Lee, H.H, Kim, K.S., and Kim, C.H. 2012. Characteristics of fish fauna collected from near estuaries bank and fishway on the bank of Nakdong river. Korean Journal of Ichthyology 24: 201-219.
15
Kim, D.M. 2018. An study on multipurpose fishway for the protection of avian influenza. Kyungpook National University. (in Korean)
16
Kim, J.H. 1996. Hydraulic characteristics by the shape of the partition of stairs type fishway. Korea Water Resources Association Symposium 29(6): 25-235. (in Korean)
17
Kim, J.H. and Kim, C. 1994. Research of hydraulic properties for fishway of stairs type. Journal of Korea Water and Wastewater Works Association 27(2): 63-72. (in Korean)
18
Korea Rural Community Corporation. 1970. Fishway design guidelines. 22. (in Korean)
19
Korea Water Resources Corporation. 2004. Korea Environment Institute. (in Korean)
20
Korean Design Standard. 2018. Ministry of Land, Infrastructure and Transport. KDS 51 40 10 : 2018. (in Korean)
21
Lee, J.W., Yoon, J.D., Kim, J.H., Park, S.H., Baek, S.H., Yoon, J.H., and Jang, M.H. 2015. Efficiency analysis of the ice harbor type fishway installed at the Gongju weir on the Geum river using traps. Kongju National University. (in Korean) 10.11626/KJEB.2015.33.1.075
22
Lee, Y.J. 2011. Proposal of new fishway type for domestic. Korean Society of Civil Engineers 59(2): 99-110. (in Korean)
23
Lee, Y.J. 2013. Proposal of proper fishway type on domestic environment. Korean Society of Limnology 27-30. (in Korean)
24
Lee, Y.J. 2014. Stability analysis of multi-functional fishway with underground passage. Journal of the Korea Institute for Structure Maintenance and Inspection 19(6): 50-59. (in Korean) 10.11112/jksmi.2014.18.6.050
25
Lee, Y.J., LEE, J.S., Kim, M.G., Park, S.S., and Jang, H.K. 2017. Structural analysis of multipurpose fishway in Chuksan river. Journal of the Korean Society of Agriculture Engineers 59(1): 97-107. (in Korean) 10.5389/KSAE.2017.59.1.097
26
Ma, G.D. 2018. An study of fishway for the protection of avian influenza with domestic dam. Kyungpook National University. (in Korean)
27
McKinly, W.R. and Webb, R.D. 1956. A proposed correction of migratory fish problems at box culverts. Fisheries Research Papers 1(4): 33-45.
28
Ministry for Food, Agriculture, Forestry and Fisheries. 2009. Ecology of eels Anguilla japonica and design of eel ladder in the estuaries.
29
Ministry of Oceans and Fisheries (MOF). 2013. Study on comprehensive management system of national fishway. Sejong.
30
Park, S.D. 2001. Assessment of migratory fish jumping up by eco-hydraulic experiments (I), The ladder-Type of Fishway Korea Water Resources Association Symposium 34(4): 365-379. (in Korean)
31
Park, S.Y., Kim, S.J., Choi, J.W., and Yoon, B.M. 2008. A study on hydraulic characteristics of culvert fishway with offset baffles and fish passage effect. Korea Water Resources Association 41(1): 75-85. (in Korean) 10.3741/JKWRA.2008.41.1.075
32
Rodriguez, T.T., Agudo, J.P., Mosquera, L.P., and Gonzalez, E.P. 2006. Evaluating vertical-slot fishway designs in terms of fish swimming capabilities. Ecological Engineering 27: 37-48. 10.1016/j.ecoleng.2005.09.015
33
Santos, J.M., Branco, P., Katopodis, C., Ferreira, T., and Pinheiro, A. 2014. Retrofitting pool-and-weir fishways to improve passage performance of benthinc fishes: Effect of boulder density and fishway discharge. Ecological Engineering 73: 355-344. 10.1016/j.ecoleng.2014.09.065
34
Seong, J.U., Park, J.H., Kim, J.O., and Park, J.C. 2013. Original article: Classification and assessment of fishway in the tributary Nakdong river. Korean Journal of Ecology and Environment 46: 185-191. 10.11614/KSL.2013.46.2.185
35
Stuart, I.G. and Berghuis, A.P. 2002. Upstream passage of fish through a vertical-slot fishway in an Australian subtropical river. Fisheries Management and Ecology 9: 111-122. 10.1046/j.1365-2400.2002.00285.x
36
Stuart, I.G. and Mallen-Cooper, M. 1999. An assessment of the effectiveness of a vertical-slot fishway for non-salmonid fish at a tidal barrier on a large tropical/subtropical river. River Research and Applications 15: 575-590. 10.1002/(SICI)1099-1646(199911/12)15:6<575::AID-RRR562>3.0.CO;2-Q
37
Watanabe Sigeru 2012, Japanese fishway management status including resident participation. The First Symposium of National Fishway Management, Korea Rural Community Cooperation.
38
White, L.J., Harris, J.H., and Kellar, R.J. 2011. Movement of three non-salmonid fish species through a low-gradient vertical-slot fishway. River Research and Applications 27: 499-510. 10.1002/rra.1371
39
Yang, H.J., Kim, K.H., and Kim, J.D. 2001. The fish fauna and migration of the fishes in the fish way of the Nakdong river mouth dam. Korean Journal of Ecology and Environment 34: 251-258.
40
Yoon, J.D., Kim, J.H., Joo, G.J., Seo, J.W., Pak, H., and Jang, M.H. 2011. Freshwater fish utilization of fishway installed in the Jangheung dam. Korean Journal of Ecology and Environment 44: 264-271.
Information
  • Publisher :Korean Society of Ecology and Infrastructure Engineering
  • Publisher(Ko) :응용생태공학회
  • Journal Title :Ecology and Resilient Infrastructure
  • Journal Title(Ko) :응용생태공학회 논문집
  • Volume : 7
  • No :4
  • Pages :308-319
  • Received Date : 2020-11-11
  • Revised Date : 2020-12-02
  • Accepted Date : 2020-12-02