DOI QR코드

DOI QR Code

Morphometric Characteristics and Correlation Analysis with Rainfall-runoff in the Han River Basin

한강 유역의 형태학적 특성과 강우-유출의 상관분석

  • 이지행 (상지대학교 토목공학과) ;
  • 이웅희 (상지대학교 산학협력단) ;
  • 최흥식 (상지대학교 건설시스템공학과)
  • Received : 2017.12.13
  • Accepted : 2018.01.29
  • Published : 2018.04.01

Abstract

The basin characteristics reflect the attributes of geomorphological pattern of basin and stream networks affect the rainfall-runoff. In order to analyze the relationship between the basin runoff and stream morphometric characteristics, the morphometric characteristics were investigated for 27 water-level observation stations on 19 rivers in the Han River basin using Arc-map. The morphometric characteristics were divided into linear, areal and relief aspects for calculation while the annual mean runoff ratio as a basin response by rainfall was estimated using the measured precipitation and discharge to analyze the rainfall-runoff characteristics. The correlation among the morphometric parameters were schematized to analyze the correlations among them. The multiple regression equation for rainfall-runoff ratio was provided with morphometric parameters of stream length ratio, form factor ratio, shape factor, stream area ratio, and relief ratio and the coefficient of determination was 0.691. The RMSE and MAPE between the measured and the estimated annual runoff rates were found as 0.09, 11.61% respectively, the suggested regression equation showed good estimation.

유역 특성은 유역과 하도망의 지형학적인 구성에 대한 특성을 반영하는 것으로 유출 특성에 영향을 준다. 본 연구에서는 유역의 형태학적 특성과 유출의 관계를 분석하기 위해 한강 유역의 19개 하천의 27개 지점을 대상으로 유역 형태학적 특성을 Arc-map을 이용하여 구하였다. 하천 형태학적 특성은 선형, 면적, 기복 측면으로 구분하여 산정하였고, 강우에 의한 유역의 반응인 연평균 유출률은 실측 강수량과 유출량 자료를 이용하여 산정하였다. 각각의 형태학적 매개변수에 대한 상관을 도식화하고, 상관특성을 분석하였다. 길이비, 형상계수, 형상인자, 면적비, 기복비, 함몰도에 의한 연간 유출률에 대한 다중 회귀분석식을 제시하였고, 결정계수는 0.691로 나타났다. 실측과 회귀분석식에 의해 계산된 연간 유출률과의 RMSE와 MAPE는 각각 0.09, 11.61%로 나타나 비교적 정확히 예측하였다.

Keywords

References

  1. Aher, P. D. and Sharma, H. C. (2014). "Morphometric characterisation of gagar watershed in kumaon region of uttarakhand for management planning: a GIS approach." Agricultural Science Digest, Vol. 34, No. 3, pp. 163-170. https://doi.org/10.5958/0976-0547.2014.00995.1
  2. Choi, H. S., Park, C. S. and Moon, H. G. (2006). "A study on rainfall-runoff analysis by geomorphological instantaneous unit hydrograph (GIUH)." Journal of Korean Society of Hazard Mitigation, Vol. 6, No. 1, pp. 49-58 (in Korean).
  3. Hajam, R. A., Hamid, A. and Bhat, S. (2013). "Application of morphometric analysis for geo-hydrological studies using geospatial technology-A case study of vishav drainage basin." Hydrol. Current Res, Vol. 4, No. 157, p. 2.
  4. Ham, H. B. (2007). Data Analysis and SAS Programming, Vol. 328 (in Korean).
  5. Kim, J. S., Maeng, S. J., Jeong, J. H. and Kim, H. S. (2014). "Analysis for runoff characteristic in Geumho River basin by standard unit watersheds including flood and drought years." Journal of safety and crisis management, Vol. 10, No. 4, pp. 133-152 (in Korean).
  6. Kim, S. H. and Choi, H. S. (2005). "Operation of an experimental watershed for river water quality management." Journal of Wetlands Research, Vol. 7, No. 1, pp. 81-91 (in Korean).
  7. Moges, G. and Bhole, V. (2015). "Morphometric characteristics and the relation of stream orders to hydraulic parameters of River Goro: An Ephemeral River in Dire-dawa, ethiopia." Universal Journal of Geoscience, Vol. 3, No. 1, pp. 13-27.
  8. Na, S. I., Park, J. H. and Park, J. K. (2012). "Development of Korean Paddy Rice yield prediction model (KRPM) using meteorological element and MODIS NDVI." Journal of the Korean Society of Agricultural Engineers, Vol. 54, No. 3, pp. 141-148 (in Korean). https://doi.org/10.5389/KSAE.2012.54.3.141
  9. Nash, J. E. and Sutcliffe, J. V. (1970). "River flow forecasting through conceptual models Part I - A discussion of principles." Journal of hydrology, Vol. 10, No. 3, pp. 282-290. https://doi.org/10.1016/0022-1694(70)90255-6
  10. Noh, H. (2005). Theory and Application of Multivariate Statistical Analysis using Excel and SPSS, Hyungsul, pp. 244-261 (in Korean).
  11. Song, I. R., Jung, C. Y., Min, G. H. and Jung, S. W. (2010). "A study on runoff characteristics by a reservoir in Hyungsan River basin." In Proceedings of the Korea Water Resources Association Conference, Korea Water Resources Association (in Korean).
  12. Strahler, R. E. (1952). "Hypsometric (Area-Altitude) analysis of erosional topography." Bulletin of Geological Society of America, Journal of Science, Vol. 248, pp. 1117-1142.
  13. Tribhuvan, P. R. and Sonar, M. A. (2016). "Morphometric analysis of a Phulambri River drainage basin (Gp8 Watershed), aurangabad district (maharashtra) using geographical information system." International Journal of Advanced Remote Sensing and GIS, Vol. 5, No. 6, pp. 1813-1828 (in Korean). https://doi.org/10.23953/cloud.ijarsg.62
  14. Yang, H. K. (2007). "Water balance change of watershed by climate change." Journal of the Korean Geographical Society, Vol. 42, No. 3, pp. 405-420 (in Korean).
  15. You, H. J., Kim, D. S. and Yang, S. K. (2012). "Development of GIS-based method for estimating and representing stream slopes along the river network." Journal of Environmental Science International, Vol. 21, No. 6, pp. 725-738 (in Korean). https://doi.org/10.5322/JES.2012.21.6.725