Fig. 1. Location of study site showing rainfall and discharge monitoring stations
Fig. 2. Model segmentation implemented in HEC-HMS
Table 6. Comparition of observed and simulated results for model verification
Fig. 3. Comparition of calculated and observed results for storm event (July 17-18. 2014)
Fig. 4. Comparition of calculated and observed results for storm event (July 23-24. 2015)
Fig. 5. Comparition of calculated and observed results for storm event (July 4-6. 2016)
Table 1. Hydrological characteristics of Gokgyochun watershed
Table 2. Topographical parameters of sub-basins
Table 3. Calibration results of model parameters for infiltration methods
Table 4. Calibration results of model parameters for runoff processes
Table 5. Calibration results of model parameters for channel routing
References
- Ministry of Public Safety and Security(MPSS), 2016, 2015 Annual report of disaster.
- Ministry of Land Infrastructure and Transport(MOLIT), 2016, Master plan for water resources (revision 3.0).
-
Hong, J.B., Kim, B.S., Yoon, S.Y., 2006, Evaluation of Accuracy of the Physics Based Distributed Hydrologic Model Using
$Vflo^{TM}$ Model, Journal of the Korean Society of Civil Engineer, 26, 613-622. - USACE, 2015, Hydrologic modeling System HEC-HMS, user's manual (version 4.1), US Army Corps of Engineers, Hydrologic Engineering Center, Davis, CA, 2015.
- DHI, 1999, MIKE-SHE water movement: user manual, Danish Hydraulic Institute, Horsholm, Denmark.
-
Vieux and Associates, 2004,
$Vflo^{TM}$ desktop user manual, Norman, Oklahoma, USA. - Kim, S.H., Park, M.J., Gang, S.M., Kim, S.J., 2006, Modeling rainfall-runoff simulation system of Jinwie watershed using GIS based HEC-HMS model, Journal of the Korean Association of Geographic Information Studies, Vol.9, No.4, pp.119-128.
- Yang, S.C., Yang, S.K., Lee, J.H., Jung, W.Y., Ko, K.H., 2015, Flood discharge analysis on land use changes in Han Stream Jeju Island, Journal of Environmental Science, 24(4), 425-435. https://doi.org/10.5322/JESI.2015.24.4.425
- Yang, S.K., Kim, M.C., Gang, B.S., Kim, Y.S., Kang, M.S., 2017, Estimation of flood discharge based on observation data considering the hydrological characteristics of the Han stream basin in Jeju Island, 26(12), 1321-1331.
- Jin, S.J. , Ham, C. H. , Cho, K. H., Kim, G. S., 2012, An Application in the Geum River basin using HEC-HMS model, 38th Convention and Civil Expo, Korean Society of Civil Engineers, 525-528.
- Lim, J. H., Lee, B. H., Kim, B. S., 2012, Analysis of flood runoff characteristics in the Youngdong region using HEC-HMS hydrologic model, 38th Convention and Civil Expo, Korean Society of Civil Engineers, 718-721.
- Zema, D. A., 2017, Comparing different infiltration methods of the HEC-HMS model : The Case study of the Mesima Torrent (Southern Italy), Land Degradation and Development, 28, 294-308. https://doi.org/10.1002/ldr.2591
- Abushandi, E., Merkel, B., 2013, Modeling rainfall runoff relationships using HEC-HMS for a single rain event in an arid region of Jordan, Water Resources Management, 27, 2391-2409. https://doi.org/10.1007/s11269-013-0293-4
- Jin, H., Liang, R., Tumura, P., 2015, Flood runoff in semi-arid and sub-humid regions, a case study: a simulation of Jianghe watershed in Nothern China, Water, 7, 5155-5172. https://doi.org/10.3390/w7095155
- Halwatura. D, Najim, M.M., 2013, Application of the HEC-HMS model for runoff simulation in a tropical catchment, Environmental Modeling and Software, 46, 155-162. https://doi.org/10.1016/j.envsoft.2013.03.006
- Ministry of Construction and Transportation(MOCT), 2005, Master plan report on Sapgyechun watershed.
- Water Resources Information System(WAMIS), 2017, http://www.wamis.go.kr