DOI QR코드

DOI QR Code

Altitudinal Pattern of Evapotranspiration and Water Need for Upland Crops in Jeju Island

제주도 지역의 고도에 따른 증발산량 및 용수량 특성 평가

  • Kim, Chul Gyum (Hydro Science and Engineering Research Institute, Korea Institute of Civil Engineering and Building Technology) ;
  • Kim, Nam Won (Hydro Science and Engineering Research Institute, Korea Institute of Civil Engineering and Building Technology)
  • 김철겸 (한국건설기술연구원 수자원하천연구소) ;
  • 김남원 (한국건설기술연구원 수자원하천연구소)
  • Received : 2015.08.31
  • Accepted : 2015.09.18
  • Published : 2015.11.30

Abstract

A method of estimating irrigation water need based on water balance and net water consumption concept is proposed, and applied to four watersheds in order to assess the regional and altitudinal characteristics of evapotranspiration and water need for upland crops in Jeju Island. Potential and actual evapotranspiration, and net water need were calculated during the period 1992 to 2013 using SWAT-K watershed model. The annual potential evapotranspiration decreased linearly with increasing elevation, while actual evapotranspiration showed increase with elevation to 400 m around and gradual decrease at higher elevation due to vegetation species, water availability, and cold limitation. Altitudinal pattern of net water need showed linear decrease with increasing elevation for three watersheds (Han-cheon, Cheonmi-cheon, and Oedo-cheon), and annual values of net water need for upland areas (below 200 m in elevation) were 559~680mm/yr. The comparison between actual pumping rate from wells and net water need for irrigation area showed that the amount of pumping water significantly increased during summer season (June to August), while net water need for crop cultivation relatively decreased during this period. To ensure these results, more water use data from pumping wells and additional watersheds should be investigated in the next study.

본 연구에서는 유역 물수지 방법을 기반으로 제주도 지역에 적합한 용수량 산정방법을 제안하고, 이를 기반으로 4개 하천유역에 대해 지역 및 고도에 따른 증발산량, 용수량 특성을 평가하였다. SWAT-K 유역모형을 적용하여 1992~2013년 기간에 대해 잠재증발산량과 실제증발산량을 산정하고, 이로부터 유역의 순물소모량을 추정하였다. 고도증가에 따라 잠재증발산량은 선형으로 감소하는 반면, 실제증발산량은 강수량에 의한 토양내 가용수분의 증가로 인해 약 400m 고도까지는 증가하다가 이후 고도에서는 식생, 가용수분의 감소, 저온현상 등으로 인해 감소하는 것으로 나타났다. 고도에 따른 순물소모량은 강정천유역을 제외한 3개 유역에서 고도증가에 따라 순물소모량이 선형적으로 감소하는 것으로 나타났으며, 고도 200m 이하 작물경작지에서의 순물소모량은 연간 559~680m로 분석되었다. 추정된 용수량을 실제 관정 이용량과 비교한 결과, 여름철(6~8월) 양수량은 급수관행으로 인해 크게 증가하는데 비해, 작물경작에 따른 순물소모량은 오히려 감소하는 것으로 나타났다. 이에 대해서는 향후 더 많은 관정 이용량과 추가적인 대상지역을 반영하여 분석이 필요할 것으로 판단된다.

Keywords

References

  1. Allen, R.G., Pereira, L.S., Raes, D., and Smith, M. (1998). Crop evapotranspiration: Guidelines for computing crop water requirements (FAO Irrigation and Drainage Paper 56). Food and Agriculture, Organization of the United Nations, Rome, Italy.
  2. Arnold, J.G., Allen, P.M., and Bernhardt, G. (1993). "A comprehensive surface-groundwater flow model." Journal of Hydrology, Vol. 142, pp. 47-69. https://doi.org/10.1016/0022-1694(93)90004-S
  3. Choi, G. (2011). "Variability of temperature lapse rate with height and aspect over Halla mountain." Journal of Climate Research, Vol. 6, No. 3, pp. 171-186.
  4. Chung, I.M., Lee, J., Kim, J.T., Na, H., and Kim, N.W. (2011). "Development of threshold runoff simulation method for runoff analysis of Jeju Island." Journal of the Environmental Sciences, Vol. 20, No. 10, pp. 1347-1355. https://doi.org/10.5322/JES.2011.20.10.1347
  5. Goulden, M.L., Anderson, R.G., Bales, R.C., Kelly, A.E., Meadows, M., and Winston, G.C. (2012). "Evapotranspiration along an elevation gradient in California's Sierra Nevada." Journal of Geophysical Research, Vol. 117, G03028, doi:10.1029/2012JG002027.
  6. Jeju Special Self-Governing Province (JSSGP) (2011). The 51st Jeju statistical yearbook.
  7. Jeju Special Self-Governing Province (JSSGP) (2013a). The agricultural water management plan for Jeju Special Self-Governing Province (2013-2022).
  8. Jeju Special Self-Governing Province (JSSGP) (2013b). The water management comprehensive plan for Jeju Special Self-Governing Province (2013-2022).
  9. Kim, N.W., Chung, I.M., and Na, H. (2013). "A method of simulating ephemeral stream runoff characteristics in Cheonmi-cheon watershed, Jeju Island." Journal of Environmental Science International, Vol. 22, No. 5, pp. 523-531. https://doi.org/10.5322/JESI.2013.22.5.523
  10. Kim, N.W., Um, M.J., Chung, I.M., and Heo, J.H. (2012). "Estimating the total precipitation amount with simulated precipitation for ungauged stations in Jeju Island." Journal of Korea Water Resources Association, Vol. 45, No. 9, pp. 875-885. https://doi.org/10.3741/JKWRA.2012.45.9.875
  11. Korea Institute of Construction Technology (KICT) (2007). Development of analysing system for sustainable water hydrological components. Sustainable Water Resources Research Program of 21st Century Frontier R&D Program, Ministry of Science and Technology.
  12. Korea Institute of Construction Technology (KICT) (2011). Jeju Water Circulation Interpretation and Water Resource Management Infrastructure Establishment: Development of the integrated surface-groundwater hydrologic analysis technique in Jeju Island. Ministry of Land, Transport and Maritime Affairs, Korea Institute of Construction and Transportation Technology Evaluation and Planning.
  13. Korea Water Resources Corporation (KOWACO) (1990). The long-term comprehensive plan for water resources (1991-2000).
  14. Korea Water Resources Corporation (KOWACO) (1993). Outlook for 21st century water resources.
  15. Korea Water Resources Corporation (KOWACO), and Korea Rural Community Corporation (KRC) (2009). Report on estimation of agricultural water demand and assessment of water supply.
  16. Lee, B.Y., Yang, S.K., Kwon, K.H., and Kim, J.B. (2012). "The effect of evapotranspiration by altitude and observation of lysimeter." Journal of the Environmental Sciences, Vol. 21, No. 6, pp. 749-755. https://doi.org/10.5322/JES.2012.21.6.749
  17. Ministry of Construction (MOC) (1977). Technical report on the Nakdong-gang estuary.
  18. Ministry of Construction Transportation (MOCT), and Korea Water Resources Corporation (KOWACO) (1996). Basic survey on the exploitable place and regional distribution plan of water resources.
  19. National Institute of Meteorological Research (NIMR), and Jeju Regional Meteorological Administration(JRMA) (2010). Understanding climate change VI: Climate change of Jeju.
  20. Park, W.B., Ko, G.W., Kim, B.S., and Moon, D.C. (2007). "Calculation of pumping rate from agricultural wells and characteristics of groundwater abstraction." Proceedings of the 12th Academic Seminar for World Water Day, pp. 87-118.
  21. Pidwirny, M. (2006). Actual and potential evapotranspiration. Fundamentals of Physical Geography, 2nd Edition, Date Viewed, http://www.physicalgeography.net/fundamentals/8j.html
  22. Zhang, Y., Liu, C., Tang, Y., and Yang, Y. (2007). "Trends in pan evaporation and reference and actual evapotranspiration across the Tibetan Plateau." Journal of Geophysical Research, Vol. 112, D12110, doi:10.1029/2006JD008161.

Cited by

  1. Evaluation and complementation of observed flow in the Hancheon watershed in Jeju Island using a physically-based watershed model vol.49, pp.11, 2016, https://doi.org/10.3741/JKWRA.2016.49.10.951