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Runoff Analysis due to Moving Storms based on the Basin Shapes (I) - for the Symmetric Basin Shape -

유역형상에 따르는 이동강우의 유출영향분석(I) - 대칭유역형상 -

  • Received : 2005.05.19
  • Accepted : 2005.09.20
  • Published : 2006.01.31

Abstract

Using kinematic wave equation, the influence of moving storms to runoff was analysised with a focus on watersheds. Watershed shapes used are the oblong, square and elongated shape, and the distribution types of moving storms used are uniform, advanced and intermediate type. The runoff hydrographs according to the rainfall distribution types were simulated and the characteristics were explored for the storms moving down, up and cross the watershed with various velocity. The shape, peak time and peak runoff of a runoff hydrograph are significantly influenced by spatial and temporal variability in rainfall and watershed shapes. A rain storm moving in the cross direction of channel flow produces a higher peak runoff than in the downstream direction and upstream direction. A peak runoff from a storm moving downstream exceeds that from a storm moving upstream. For storms moving downstream peak time was more delayed than for other storm direction in the case of elongated watershed. The runoff volume and time base of the hydrograph decreased with the increasing storm speed.

유역형상의 변화에 따라서 이동강우가 유출에 미치는 영향을 운동파이론을 적용하여 분석하였으며, 유역형상은 신장형유역과 정사각형유역 및 장방형유역에 대하여 분석하였고, 이동강우 분포형은 균등분포형, 전진형, 지연형, 중앙집중형을 사용하였다. 이와 같은 형상의 유역에 대하여 다양한 이동속도를 가진 강우가 유역내 하천의 상류방향, 하류방향, 횡방향으로 이동할 때 강우분포형에 따르는 유출수문곡선을 모의하여 그 특성을 비교분석하였다. 유출수문곡선의 모양과 첨두시간, 첨두유량은 시간적, 공간적으로 변화하는 강우와 유역형상에 의하여 크게 영향을 받는다. 횡방향의 이동강우에서는 상류방향과 하류방향의 경우보다 더 큰 첨두유량이 발생하며, 하류방향 이동강우의 첨두유량은 상류방향의 첨두유량보다 더 크게 나타났다. 신장형유역의 경우 하류방향 이동강우의 첨두시간은 상류방향과 횡방향의 경우보다 더 지체되며, 수문곡선의 총유출량과 기저시간은 강우속도가 증가함에 따라 감소하였다.

Keywords

References

  1. 최계운, 이희승, 안상진(1992) 분포형 모델을 이용한 유역내 이동강우의 유출해석. 한국수자원학회논문집, 한국수자원학회, 제25권 제1호, pp. 101-109
  2. 최계운, 강희경, 박용섭(2000) GIS를 활용한 유역내 이동강우에 의한 유출특성 연구. 한국수자원학회논문집, 한국수자원학회, 제33권 제6호, pp. 793-804
  3. 한건연, 전민우, 최규현(2004) 이동강우에 의한 유출영향분석. 한국수자원학회논문집, 한국수자원학회, 제37권 제10호, pp. 823-836
  4. de Lima, J.L.M.P. and Singh, V.P. (1999) The influence of the pattern of moving rainstorms on overland flow-Laboratory experiments under simulated rainfall. Water Resources publications, pp.101-111
  5. de Lima, J.L.M.P. and Singh, V.P. (2003) Laboratory experiments on the influence of storm movement on overland flow. Physics and Chemistry of the Earth, 28, pp. 277-282 https://doi.org/10.1016/S1474-7065(03)00038-X
  6. Maksimov, V.A (1964) Computing runoff produced by a heavy rainstorm with a moving center.' Sov. Hydrol., 5, pp. 510-513
  7. Marshall, R.J. (1980) The estimation and distribition of storm movement and srorm structures, using a correlation analysis technique and raingage data. J. of Hydrology, 187, pp. 19-39
  8. Ogden, F.L., Richardson, J.R. and Julien, P.Y. (1995) Similarity in catchment response, 2. Moving rainstorms. Water Resour. Resear., Vol. 31(6), pp. 1543-1547 https://doi.org/10.1029/95WR00519
  9. Richardson, J.R. (1989) The effect of moving rainstorms on overland flow using one-dimensional finite elements. Ph.D. dissertation, Colorado State Univ., Colorado
  10. Singh, V.P. (1996) Kinematic wave modelling in water resources; surfacewater hydrology. Chichester, John Wiley and Sons Ltd
  11. Singh, V.P. (1997) Effect of spatial and temporal variability in rainfall and watershed characteristics on streamflow hydrograph. Hydrol. Process., 11, pp. 1649-1669 https://doi.org/10.1002/(SICI)1099-1085(19971015)11:12<1649::AID-HYP495>3.0.CO;2-1
  12. Singh, V.P. (1998) Effect of the direction of storm movement on planar flow. Hydrol. Process., 12, pp. 147-170 https://doi.org/10.1002/(SICI)1099-1085(199801)12:1<147::AID-HYP568>3.0.CO;2-K
  13. Singh, V.P. (2002a) The influence of the pattern of moving rainstorms on overland flow. Advances in Water Resources, 25, pp. 817-828 https://doi.org/10.1016/S0309-1708(02)00067-2
  14. Singh, V.P. (2002b) Effect of the duration and direction of storm movement on planar flow with full and partial areal coverage. Hydrol. Process., 16, pp. 3437-3466 https://doi.org/10.1002/hyp.1109
  15. Tabios, G.O., Obyesekera, J.T.B. and Shen, H.S. (1988) The influence of storm movement on streamflow hydrograph through space-time rainfall generation and hydraulic routing. Colorado State Uni., Fort Collins, Colarado