All Issue

2022 Vol.64, Issue 2 Preview Page
2022. pp. 71-83
Abstract
References

REFERENCES

1
P. Bai, X. Liu, D. Zhang and C. Liu, Hydrological Processes, Estimation of the Budyko model parameter for small basins in China, 34(1); 125-138 (2020)10.1002/hyp.13577
2
T. P. Barnett, D. W. Pierce, H. G. Hidalgo, C. Bonfils, B. D. Santer, T. Das and M. D. Dettinger, Science, Human- induced changes in the hydrology of the western United States, 319(5866); 1080-1083 (2008)10.1126/science.1152538
3
A. R. Black, J. S. Rowan, R. W. Duck, O. M. Bragg and B. E. Clelland, Aquatic Conservation: Marine and Freshwater Ecosystems, DHRAM: a method for classifying river flow regime alterations for the EC Water Framework Directive, 15(5); 427-446 (2005)10.1002/aqc.707.
4
M. I. Budyko, US Dept. of Commerce, The heat balance of the earth’s surface, Washington, DC, USA.. Weather Bureau. (1958)
5
M. I. Budyko, Climate and life, 508, New York. Academic press. (1974)
6
W. H. Choi, J. W. Shin, H. J. Oh, M. H. Choi and J. Y. Park, Korean society of civil engineers, A study of index and method for estimating the rate of rehabilitated hydrological cycle; 2114-2117, (in Korean) (2009)
7
R. J. Donohue, M. L. Roderick and T. R. McVicar, Hydrology and Earth System Sciences, On the importance of including vegetation dynamics in Budyko’s hydrological model, 11(2); 983-995 (2007)10.5194/hess-11-983-2007
8
P. Hamel, A. J. Guswa, J. Sahl and L. Zhang, Hydrological Processes, Predicting dry‐season flows with a monthly rainfall–runoff model: Performance for gauged and ungauged catchments, 31(22); 3844-3858 (2017)10.1002/hyp.11298
9
S. Hu, C. Liu, H. Zheng, Z. Wang and J. Yu, Journal of Geographical Sciences, Assessing the impacts of climate variability and human activities on streamflow in the water source area of Baiyangdian Lake, 22(5); 895-905 (2012)10.1007/s11442-012-0971-9
10
H. Huang, Y. Han, M. Cao, J. Song and H. Xiao, Advances in Meteorology, Spatial-temporal variation of aridity index of China during 1960–2013, 2016; 1-10 (2016)10.1155/2016/1536135
11
T. Kanungo, D. M. Mount, N. S. Netanyahu, C. D. Piatko, R. Silverman and A. Y. Wu, IEEE transactions on pattern analysis and machine intelligence, An efficient k-means clustering algorithm: Analysis and implementation, 24(7); 881-892 (2002)10.1109/tpami.2002.1017616
12
J. H. Kim, J. C. Joo, C. M. Ahn and D. H. Hwang, Journal of Korean Society of Environmental Engineers, Water quality assessment of 14 reservoirs in geum river basin using multivariate statistical analysis, 43(3); 171-186, (in Korean) (2021)10.4491/ksee.2021.43.3.171
13
K. Kim, H. Kim, H. Lee, S. M. Jun, S. Hwang, J. H. Song and M. S. Kang, Sustainability, Development and assessment of watershed management indicators using the Budyko framework parameter, 13(7); 3864 (2021)10.3390/su13073864
14
L. S. Kuchment, Water Resources Management, The hydrological cycle and human impact on it, 40 (2004)
15
H. C. Lee, Y. J. Cho, B. Lim and S. B. Kim, Journal of the Korean Society of Hazard Mitigation, Study on the association of casualties and classification of heat wave weather patterns in South Korea using K-means clustering analysis, 20(3); 11-18, (in Korean) (2020a)10.9798/kosham.2020.20.3.11
16
J. Lee, H. Ha, M. Lee, M. Lee, T. Kim, Y. Cha and J. Koo, Journal of Korean Society of Environmental Engineers, Assessment of water quality of major tributaries in seoul using water quality index and cluster analysis, 42(10); 452-462 (2020b)10.4491/ksee.2020.42.10.452
17
D. Li, M. Pan, Z. Cong, L. Zhang and E. Wood, Water Resources Researc, Vegetation control on water and energy balance within the Budyko framework, 49(2); 969-976 (2013)10.1002/wrcr.20107
18
P. C. D. Milly, J. Betancourt, M. Falkenmark, R. M. Hirsch, Z. W. Kundzewicz, D. P. Lettenmaier and R. J. Stouffer, Science, Stationarity is dead: Whither water management?, 319(5863); 573-574 (2008)10.1126/science.1151915
19
Ministry of Environment, A study on the selection and building of a water cycle city through the introduction of low-impact development, (in Korean) (2017)
20
L. Oudin, B. Salavati, C. Furusho-Percot, P. Ribstein and M. Saadi, Journal of Hydrology, Hydrological impacts of urbanization at the catchment scale, 559; 774-786 (2018)10.1016/j.jhydrol.2018.02.064
21
D. Pumo, E. Arnone, A. Francipane, D. Caracciolo and L. V. Noto, Journal of Hydrology, Potential implications of climate change and urbanization on watershed hydrology, 554; 80-99 (2017)10.1016/j.jhydrol.2017.09.002
22
Relevant Ministerial Consortium, Third nonpoint source management comprehensive plan, 11-1480000- 001720-13. Sejong Metropolitan Autonomous City: Ministry of Envioronment. (in Korean)., Sejong Metropolitan Autonomous City:. Ministry of Envioronment. (2020)
23
T. R. Schueler, L. Fraley-McNeal and K. Cappiella, Journal of Hydrologic Engineering, Is impervious cover still important? Review of recent research, 14(4); 309-315 (2009)10.1061/(asce)1084-0699(2009)14:4(309)
24
T. Schueler, Watershed protection techniques, The importance of imperviousness, 1(3); 100-101 (1994)
25
H. Shin, Y. Choi and J. Yi, Journal of the Korean Society of Hazard Mitigation, Analysis of the local characteristics of flood damage vulnerability in an urban area: the Han river basin, 19(5); 293-303, (in Korean) (2019)10.9798/kosham.2019.19.5.293
26
R. M. Vogel, Hydromorphology (2011)
27
T. Wagener, M. Sivapalan, P. A. Troch, B. L. McGlynn, C. J. Harman, H. V. Gupta and J. S. Wilson, Water Resources Research, The future of hydrology: An evolving science for a changing world, 46(5) (2010)10.1029/2009wr008906
28
C. Wang, S. Wang, B. Fu and L. Zhang, Progress in Physical Geography, Advances in hydrological modelling with the Budyko framework: A review, 40(3); 409-430 (2016)10.1177/0309133315620997
29
D. Wang and M. Hejazi, Water Resources Research, Quantifying the relative contribution of the climate and direct human impacts on mean annual streamflow in the contiguous United States, 47(10) (2011)10.1029/2010wr010283
30
X. Wang, Advances in Water Resources, Advances in separating effects of climate variability and human activity on stream discharge: An overview, 71; 209-218 (2014)10.1016/j.advwatres.2014.06.007
31
W. Xing, W. Wang, S. Zou and C. Deng, Global and Planetary Change, Projection of future runoff change using climate elasticity method derived from Budyko framework in major basins across China, 162; 120-135 (2018)10.1016/j.gloplacha.2018.01.006
32
X. Xu, W. Liu, B. R. Scanlon, L. Zhang and M. Pan, Geophysical Research Letters, Local and global factors controlling water‐energy balances within the Budyko framework, 40(23); 6123-6129 (2013)10.1002/2013gl058324
33
L. Zhang, K. Hickel and Q. Shao, Ecohydrology, Predicting afforestation impacts on monthly streamflow using the DWBM model, 10(2), e1821 (2017)10.1002/eco.1821
34
L. Zhang, N. Potter, K. Hickel, Y. Zhang and Q. Shao, Journal of Hydrology, Water balance modeling over variable time scales based on the Budyko framework–Model development and testing, 360(1-4); 117-131 (2008)10.1016/j.jhydrol.2008.07.021
Information
  • Publisher :The Korean Society of Agricultural Engineers
  • Publisher(Ko) :한국농공학회
  • Journal Title :Journal of Korean Society of Agricultural Engineers
  • Journal Title(Ko) :한국농공학회논문집
  • Volume : 64
  • No :2
  • Pages :71-83
  • Received Date : 2021-09-24
  • Revised Date : 2022-02-19
  • Accepted Date : 2022-03-10