미래 증발산 자료의 활용을 위한 조사 방법 및 관리 방안

  • Published : 2019.12.15

Abstract

Keywords

References

  1. Alien, R.G., Tasumi, M., Trezza, R., (2007). Satellite-based energy balance for mapping evapotranspiration with internalized calibration (METRIC)-Model. ASCE J. Irrigation and Drainage Engineering 133, 380-394. https://doi.org/10.1061/(ASCE)0733-9437(2007)133:4(380)
  2. Baik, J., Choi, M. (2015a) "A Evaluation of remotely sensed actual evapotranspiration products from COMS and MODIS at two different flux tower sites in Korea, International Journal of Remote Sensing, 36(1), 375-402. https://doi.org/10.1080/01431161.2014.998349
  3. Baik, J., Choi, M. (2015b). "Evaluation of geostationary satellite (COMS) based Priestley-Taylor evapotranspiration", Agricultural Water Management, 159, 77-91. https://doi.org/10.1016/j.agwat.2015.05.017
  4. Baik, J., Jeong, J., and Choi, M. (2018) "Estimation of the optimal evapotranspiration by using satellite- and reanalysis model-based evapotranspiration estimations", J. Korea Water Resour. Assoc., 51(3). 273-280. https://doi.org/10.3741/JKWRA.2018.51.3.273
  5. Baik, J., Park, j. and Choi, M. (2016) "Assessment of actual evapotranspiration using modified satellite-based priestley-taylor algorithm using MODIS products, J. Korea Water Resour. Assoc., 49(11), 903-912 https://doi.org/10.3741/JKWRA.2016.49.11.903
  6. Bastiaanssen, W.G.M., M. Menenti, R.A. Feddes, and A. A. M. Holtslag, (1998). The surface energy balance algorithm for land (SEBAL): Part 1 formulation. Journal of Hydrology 212-213: 198-212. https://doi.org/10.1016/S0022-1694(98)00253-4
  7. Choi, M., Hwang, K., Kim, T., (2011). "Characteristics of Greenup and Senescence for Evapotranspiration in Gyeongan Watershed using Landsat Imagery", Journal of the Korean Society of Civil Engineers B, 31(1B), 29-36.
  8. Cleugh, H. A., R. Leuning, Q. Mu, and S. W. Running. (2007). "Regional Evaporation Estimates from Flux Tower and MODIS Satellite Data." Remote Sensing of Environment 106 (3): 285-304. doi:10.1016/j.rse.2006.07.007.
  9. Dalton, J. (1802). Experimental essays on the constitution of mixed gases: on the force of steam or vapour from water or other liquids in dierent temperatures, both in a Torricelli vacuum and in air; on evaporation; and on expansion of gases by heat. Manchester Lit. Phil. Soc. Mem. Proc., 5, 536-602
  10. Fisher, J.B., DeBiase, T.A., Qi, Y., Xu, M., Goldstein, A.H., (2005). Evapotranspiration models compared on a Sierra Nevada forest ecosystem. Environ. Model. Softw.20, 783-796 https://doi.org/10.1016/j.envsoft.2004.04.009
  11. Hao, Y., Baik, J., & Choi, M. (2019). Developing a soil water index-based Priestley-Taylor algorithm for estimating evapotranspiration over East Asia and Australia. Agricultural and Forest Meteorology, 279, 107760. https://doi.org/10.1016/j.agrformet.2019.107760
  12. Hargreaves, G. H. and Samni, Z. A. (1982), Estimation of Potential Evapotranspiration, Journal of Irrigation and Drainage Division, Proceedings of the American Society of Civil Engineers 108, 223-230.
  13. Hong, J.K., Kwon, H.J., Lim, J.H., Byun, Y.H., Lee, J.H. and Kim, J. (2010) Standardization of KoFlux Eddy-Covariance Data Processing, Korean Journal of Agricultural and Forest Meteorology, 11(1), 19-26. https://doi.org/10.5532/KJAFM.2009.11.1.019
  14. Jiang, C., Ryu, Y. (2016) Multi-scale evaluation of global gross primary productivity and evapotranspiration products derived from Breathing Earth System Simulator (BESS). Remote Sensing of Environment 186, 528-547. https://doi.org/10.1016/j.rse.2016.08.030
  15. Kim, K, Baik, J. Lee, J., Lee, Y., Jung, S., Choi, M., (2016) "An Assessment and Analysis of the Gap-Filling Techniques for Revising Missing Data of Flux Tower based Evapotranspiration - FAO-PM, MDV, and Kalrnan Filter -" J. Korean Soc. Hazard Mitig., 16(6), 95-107 https://doi.org/10.9798/KOSHAM.2016.16.6.95
  16. Monteith, J.L. (1965). Evaporation and the environment. P. 205-234, In: The State and Movement of Water in Living Organisms, XIXth Symposium. Soc. for Exp. BioI., Swansea, Cambridge Univ. Press.
  17. Mu, Q., F. A. Heinsch, M. Zhao, and S. W. Running. (2007). "Development of a Global Evapotranspiration Algorithm Based on MODIS and Glohal Meteorology Data." Remote Sensing of Environment 111 (4): 519-536. doi:10.1016/j.rse.2007.04.015.
  18. Mu, Q., M. Zhao, and S. W. Running. (2011). "Improvements to a MODIS Global Terrestrial Evapotranspiration Algorithm." Remote Sensing of Environment 115 (8): 1781-1800. doi:10.1016/j.rse.2011.02.019.
  19. Norman, J. M., Kustas, W. P., Humes, K. S. (1995). Source approach for estimating soil and vegetation energy fluxes in observations of directional radiometric surface temperature. Agricultural and Forest Meteorology, 77(3-4), 263-293. https://doi.org/10.1016/0168-1923(95)02265-Y
  20. Priestley, C. H. B. and Taylor, R. J. (1972), On the Assessment of the Surface heat Flux and Evaporation using Large-scale Parameters, Monthly Weather Review 100, 81-92. https://doi.org/10.1175/1520-0493(1972)100<0081:OTAOSH>2.3.CO;2
  21. Ryu, Y., Baldocchi, D. D., Kobayashi, H., van Ingen, C., Li, J., Black, T. A., Beringer, J., Gorsel, E., Knohl, A., Law, B.E., Roupsard, O. (2011). Integration of MODIS land and atmosphere products with a coupled-process model to estimate gross primary productivity and evapotranspiration from 1 km to global scales. Global Biogeochemical Cycles, 25(4).
  22. Senay, G.B., M. Budde, J.P. Verdin, (2011). Enhancing the Simplified Surface Energy Balance (SSEB) approach for estimating landscape ET: Validation with the METRIC model. Agricultural Water Management, 98: 606-618. https://doi.org/10.1016/j.agwat.2010.10.014
  23. Shuttleworth, W. J. (1993) Evaporation. IN MAIDMENT, D. R (Ed.) Handbook of Hydrology. New York, McGraw-Hill Inc.
  24. Shuttleworth, W.J., Wallace, J.S., (1985). Evaporation from sparse crops-an energy combination theory. Q. J. R. Meteorol. Soc. 111, 839-855. https://doi.org/10.1002/qj.49711146910
  25. Su, Z. (2002). The Surface Energy Balance System (SEBS) for estimation of turbulent heat fluxes. Hydrology and earth system sciences, 6(1), 85-100. https://doi.org/10.5194/hess-6-85-2002
  26. Wang, K., and Dickinson, R.E., (2012) "A review of global terrestrial evapotranspiration: Observation, modeling, climatology, and climatic variability" Reviews of Geophysics, 50, RG2005.
  27. Yao, Y., Liang, S., Cheng, J., Liu, S., Fisher, J. B., Zhang, X., Jia, K, Zhao, X., Qin, Q., Zhao, B., Han, S., Zhou, G., Zhou, G., Li, T., and Zhao, S. (2013) "MODIS-driven estimation of terrestrial latent heat flux in China based on a modified Priestley-Taylor algorithm." Agricultural and Forest Meteorology, Vol. 171-172, pp. 187-202, doi: http://dx.doi.org/10.1016/j.agrformet.2012.11.016.