DOI QR코드

DOI QR Code

An approximate study on flood reduction effect depending upon weir or gate type of lateral overflow structure of washland

강변저류지 월류부에서 월류제 또는 수문 형식에 따른 홍수저감효과에 관한 개략적 연구

  • Ahn, Tae Jin (Department of Civil, Safety and Environmental Engrg. Hankyong National Univ.)
  • 안태진 (한경대학교 토목안전환경공학과)
  • Received : 2013.10.14
  • Accepted : 2013.10.30
  • Published : 2013.11.30

Abstract

Construction of large-scale structures such as dams would be suggested actively to cope with change of flood characteristics caused by climate change. However, due to environmental, economic and political issues, dams are not ideally constructed. Thus flood damage reduction planning projects would get started including washland or detention pond for sharing the flood in basin. The washland made artificially by human being is an area of floodplain surrounded by bank to be intentionally inundated by overflowing through overflow structure adjacent to main channel during flood season. Flood reduction capacity at just downstream of each washland could be affected by type, length, and crest elevation of overflow structure in addition to shape of design hydrograph, storage volume of washland, etc.. In this study flood reduction effects of washland are estimated for overflow weir type and gate type to compare the results of flood reduction respectively subjected to given hydrograph in sample site, the Cheongmicheon stream. It has been shown that even if gate type at overflow structure could yield more flood reduction than overflow weir type, economic aspect such as initial cost, operation cost and maintenance cost should be considered to select the type of overflow structure because flood reduction rate by gate type could not be significant value from engineering point of view.

기후변화에 의한 홍수 특성의 변화에 적극적으로 대처하기 위한 대규모 댐 건설의 추진이 환경성, 경제성 등과 같은 문제로 난해해 짐에 따라 강변저류지 또는 유수지 시설이 유역내 홍수 분담 측면에서 포함되기 시작하였다. 강변저류지는 주하도에 인접되고 제방으로 둘러쌓인 공간으로 홍수기에 월류구조물을 통하여 인위적으로 범람시키는 지역이다. 강변저류지 직하류에서의 홍수저감효과는 설계홍수수문곡선의 형상, 강변저류지의 저류용량 등에 추가하여 월류부 구조물의 형식, 길이 및 월류턱 표고에 따라 영향을 받는다. 본 연구는 표본지구인 청미천에서 주어진 수문곡선에 관하여 월류제 형식과 수문 형식에 따른 홍수저감효과를 비교코자 하였다. 월류부에서 수문형식이 월류제 형식보다 홍수저감효과가 더 크지만 수문형식에 의한 홍수저감율은 공학적 견지에서 보면 의미있는 수치가 아니기 때문에 수문형식을 선정할 때는 초기사업비, 운영 관리 비용 등을 신중히 고려해야 하는 것으로 분석되었다.

Keywords

References

  1. Ahn, TJ, Kang, IW, Kim, BC and Back, CW (2007). Suggestion for basic algorithm of decision making model for determination of optimal size and location of wetland, Proceedings the 2007 Conference of the Korean Society of Civil Engineers, KSCE, pp. 3371- 3375. [Korea Literature]
  2. Anrold, JG, Allen, PM and Morgan, DS (2001). Hydrologic model for design and constructed wetlands, Wetland, 21(2), pp. 167-178. https://doi.org/10.1672/0277-5212(2001)021[0167:HMFDAC]2.0.CO;2
  3. Baek, CW, Kim, BC and Ahn, TJ (2009). Analysis of flood reduction effect of washlands based on variation of rollway characteristic, J. of Korean Society of Hazard Mitigation, 9(1), pp. 145-150. [Korea Literature]
  4. Choi, SY and Ahn, TJ (2011). Development of riverreservoir integrated model for flood reduction capacity analysis of off-stream reservoir, J. of Korean Society of Hazard Mitigation, 11(1), pp. 165-174. [Korea Literature] https://doi.org/10.9798/KOSHAM.2011.11.3.165
  5. De, Marchi, G (1934). Essay on the performance of lateral Weirs, L'Energia Elettrica. 11(11), pp. 849-860.
  6. Dongbu Engineering Corporation (2009). Technical report on creation of Cheongmicheon washland, pp. 45-52. [Korea Literature]
  7. England Nature (2004). Integrated washland management for flood defence and biodiversity, Research No. 598, pp. 71-87.
  8. Han, KY, Kim, JS, Baek, JG and Park, HS (2005). Flood mitigation analysis by flood plain storage basin in river, Proceedings the 2005 Conference of the Korean Society of Civil Engineers, KSCE, pp. 233-236. [Korea Literature]
  9. Hammer, BE (1989). Constructed wetlands for wastewater treatment, Lewis Publishers, Chelsca, MI, USA.
  10. Jun, KS, Kim, W and Yoon, BM (2006). Uncertainty of flood control effect of storage pockets with lateral weirs, Proceedings the 2006 Conference of the Korean Society of Civil Engineers, KSCE, pp. 256-270. [Korea Literature]
  11. Kadlec, RH and Knight, RL (1996). Treatment wetlands, CRC, Lewis Publishers, Boca Raton, FL., USA.
  12. Kim, BC (2009). Development of decision making model for optimal locations and dimension of washland considering weir specification, Master's Thesis, Hankyong National University, Ansung, Korea, pp. 32-36. [Korea Literature]
  13. Kim, DG, Lee, LY, Lee, CW, Kang, NR, Lee, JS and Kim, HS (2011). Analysis of flood reduction effect of washland using hydraulic experiment, J. of Wetlands Research, 8(2), pp. 307-317. [Korea Literature]
  14. Kim, DK, Kyung, MS, Kim, SD and Kim HS (2007). Effectiveness analysis of flood level mitigation by washland Construction, Proceedings the 2007 Conference of the Korean Society of Civil Engineers, Korean Society of Civil Engineers (KSCE), pp. 2660-2663. [Korea Literature]
  15. Kim, SJ, Hong, SG, Yoon, BM and Yu, KK (2009). Sensitivity analysis of designing factor about storage porket using HEC-RAS, Proceedings the 2009 Conference of the Korean Society of Civil Engineers, KSCE, pp. 1472-1475. [Korea Literature]
  16. Kim, HS, Kyung, MS, Kim, SD and LEE, GH (2006). Construction and applications of a Washland, Proceedings the 2006 Conference of Korea Water Resources Association, KWRA, pp. 83-88. [Korea Literature]
  17. Korea Institute of Construction Technology (KICT) (2011). Final research report on technology for creation of washland, pp. 36-42. [Korea Literature]
  18. Ministry of Construction & Transportation (MOCT) (2005). Flood mitigation by washland research on establishment of basic plan, pp. 45-67. [Korea Literature]
  19. USBR (1977). Design of small dams, pp. 386.