• Journal of Geographical Sciences
  • Vol. 30, Issue 1, 85 (2020)
Qihui CHEN1、1、1, Hua CHEN1、1、1、1、1、1、*, Jun ZHANG1、1、1, Yukun HOU1、1、1, Mingxi SHEN1、1、1, Jie CHEN1、1、1, and Chongyu XU1、1、1、1、1、1
Author Affiliations
  • 11State Key Laboratory of Water Resources and Hydropower Engineering, Wuhan University, Wuhan 430072, China
  • 12Hydrology Bureau of Yangtze River Water Conservancy Commission, Wuhan 430015, China
  • 13Department of Geosciences, University of Oslo, Norway
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    DOI: 10.1007/s11442-020-1716-9 Cite this Article
    Qihui CHEN, Hua CHEN, Jun ZHANG, Yukun HOU, Mingxi SHEN, Jie CHEN, Chongyu XU. Impacts of climate change and LULC change on runoff in the Jinsha River Basin[J]. Journal of Geographical Sciences, 2020, 30(1): 85 Copy Citation Text show less
    References

    [1] C Abbaspour K, J Yang, I Maximov et al. Modelling hydrology and water quality in the pre-alpine/alpine Thur watershed using SWAT. Journal of Hydrology, 333, 413-430(2007).

    [2] G Arnold J, R Srinivasan, S Muttiah R et al. Large area hydrologic modeling and assessment (Part 1): Model development. Journal of the American Water Resources Association, 34, 73-89(1998).

    [3] K Awan U, W Liaqat U, M Choi et al. A SWAT modeling approach to assess the impact of climate change on consumptive water use in Lower Chenab Canal area of Indus basin. Hydrology Research, 47, 1025-1037(2016).

    [4] J Chen, P Brissette F, D Chaumont et al. Performance and uncertainty evaluation of empirical downscaling methods in quantifying the climate change impacts on hydrology over two North American river basins. Journal of Hydrology, 479, 200-214(2013).

    [5] J Chen, P Brissette F, R Leconte. Uncertainty of downscaling method in quantifying the impact of climate change on hydrology. Journal of Hydrology, 401, 190-202(2011).

    [6] L Chen, J Chang, Y Wang et al. Assessing runoff sensitivities to precipitation and temperature changes under global climate-change scenarios. Hydrology Research, 50, 24-42(2018).

    [7] M da Silva R, C Dantas J, A Beltrão J D et al. Hydrological simulation in a tropical humid basin in the Cerrado biome using the SWAT model. Hydrology Research, 49, 908-923(2018).

    [8] J Du, C Shi, C Zhang. Modeling and analysis of effects of precipitation and vegetation coverage on runoff and sediment yield in Jinsha River Basin. Water Science and Engineering, 6, 44-58(2013).

    [9] C Gao, T Ruan. The influence of climate change and human activities on runoff in the middle reaches of the Huaihe River Basin, China. Journal of Geographical Sciences, 28, 79-92(2018).

    [10] C Gao, Z Zhang, J Zhai et al. Research on meteorological thresholds of drought and flood disaster: A case study in the Huai River Basin, China. Stochastic Environmental Research and Risk Assessment, 29, 157-167(2015).

    [11] W Gassman P, R Reyes M, H Green C et al. The soil and water assessment tool: Historical development, applications, and future research directions. Transactions of the ASABE, 50, 1211-1250(2007).

    [12] J Guo, Z Zhang, S Wang et al. Effects of climate and land use changes on stream flow and sediment yield in Chaohe river basin. Transactions of the Chinese Society of Agricultural Engineering, 28, 236-243(2012).

    [13] J Guo, Z Zhang, S Wang et al. Appling SWAT model to explore the impact of changes in land use and climate on the streamflow in a watershed of northern China. Acta Ecologica Sinica, 34, 1559-1567(2014).

    [14] H Hamed K. Trend detection in hydrologic data: The Mann-Kendall trend test under the scaling hypothesis. Journal of Hydrology, 349, 350-363(2008).

    [15] F Hao, L Chen, C Liu et al. Impact of land use change on runoff and sediment yield. Journal of Soil Water Conservation, 18, 5-8(2010).

    [16] W Immerzeel W, F Pellicciotti, P Bierkens M F. Rising river flows throughout the twenty-first century in two Himalayan glacierized watersheds. Nature Geoscience, 6, 742-745(2013).

    [17] G Kendall M. Rank Correlation Methods. London:. Griffin.(1975).

    [18] D Li, Y Wu, C Liu. Runoff simulation with physical-based distributed hydrological model. Scientia Geographica Sinica, 25, 299-304(2005).

    [19] J Li, X Zhang, Y Yang. SWAT model of runoff study under different land use land cover scenarios in source region of the Yangtze River. Research of Soil & Water Conservation, 19, 119-129(2012).

    [20] Y Li, J Chang, L Luo et al. Spatiotemporal impacts of land use land cover changes on hydrology from the mechanism perspective using SWAT model with time-varying parameters. Hydrology Research, 50, 244-261(2018).

    [21] Z Li, W Liu, X Zhang et al. Impacts of land use change and climate variability on hydrology in an agricultural catchment on the Loess Plateau of China. Journal of Hydrology, 377, 35-42(2009).

    [22] Z Liang, T Tang, B Li et al. Long-term streamflow forecasting using SWAT through the integration of the random forests precipitation generator: Case study of Danjiangkou Reservoir. Hydrology Research, 49, 1513-1527(2017).

    [23] C Liu, D Li, Y Tian et al. An application study of DEM based distributed hydrological model on macroscale watershed. Progress in Geography, 22, 437-445(2003).

    [24] X Liu, X Li, X Shi et al. Simulating complex urban development using kernel-based non-linear cellular automata. Ecological Modelling, 211, 169-181(2008).

    [25] X Liu, D Peng, Z Xu. Identification of the impacts of climate changes and human activities on runoff in the Jinsha River Basin, China. Advances in Meteorology, 1-9(2017).

    [26] Z Liu, Z Yao, H Huang et al. Land use and climate changes and their impacts on runoff in the Yarlung Zangbo River Basin, China. Land Degradation & Development, 25, 203-215(2014).

    [27] J Lu, X Cui, X Chen et al. Evaluation of hydrological response to extreme climate variability using SWAT model: Application to the Fuhe basin of Poyang Lake Watershed, China. Hydrology Research, 48, 1730-1744(2016).

    [28] Q Luo, K Wang, Q Wang. Using SWAT to simulate runoff under different land use scenarios in Xiangjiang River Basin. Chinese Journal of Eco-Agriculture, 19, 1431-1436(2011).

    [29] B Mann H. Nonparametric tests against trend. Econometrica, 13, 245-259(1945).

    [30] X Mu, F Wang, J Li et al. Review of evaluation method of impact of soil and water conservation practices on river flows. Bulletin of Soil & Water Conservation, 73-78(2004).

    [31] M Ozturk, K Copty N, K Saysel A. Modeling the impact of land use change on the hydrology of a rural watershed. Journal of Hydrology, 497, 97-109(2013).

    [32] S Pan, D Liu, Z Wang et al. Runoff responses to climate and land use/cover changes under future scenarios. Water, 9, 475(2017).

    [33] Z Pan, X Ruan, M Qian et al. Spatio-temporal variability of streamflow in the Huaihe River Basin, China: Climate variability or human activities?. Hydrology Research, 49, 177-193(2018).

    [34] S Piao, P Ciais, Y Huang et al. The impacts of climate change on water resources and agriculture in China. Nature, 467, 43-51(2010).

    [35] V Singh H, L Kalin, A Morrison et al. Post-validation of SWAT model in a coastal watershed for predicting land use/cover change impacts. Hydrology Research, 46, 837-853(2015).

    [36] M Song, T Li, J Chen. Preliminary analysis of precipitation runoff features in the Jinsha River Basin. Procedia Engineering, 28, 688-695(2012).

    [37] E Taylor K, J Stouffer R, A Meehl G. An overview of CMIP5 and the experiment design. Bulletin of the American Meteorological Society, 93, 485-498(2012).

    [38] V Vuuren D P, J Edmonds, M Kainuma et al. The representative concentration pathways: An overview. Climatic Change, 109, 5-31(2011).

    [39] F Wang, Q Ge, Q Yu et al. Impacts of land-use and land-cover changes on river runoff in Yellow River basin for period of 1956-2012. Chinese Geographical Science, 27, 13-24(2017).

    [40] H Wang, F Sun, J Xia et al. Impact of LUCC on streamflow based on the SWAT model over the Wei River basin on the Loess Plateau in China. Hydrology and Earth System Sciences, 21, 1929-1945(2017).

    [41] S Wang, X Zhang. Long-term trend analysis for temperature in the Jinsha River Basin in China. Theoretical and Applied Climatology, 109, 591-603(2012).

    [42] J Xia, M Wang. Runoff changes and distributed hydrologic simulation in the upper reaches of Yangtze River. Resources Science, 30, 962-967(2008).

    [43] P Yang, J Xia, C Zhan et al. Separating the impacts of climate change and human activities on actual evapotranspiration in Aksu River Basin ecosystems, Northwest China. Hydrology Research, 49, 1740-1752(2018).

    [44] Y Yang, G Lu, Z Wu et al. Variation characteristics analysis of hydrological cycle factors in upper reaches of Jinshajiang Basin. Water Resources & Power, 30, 8-10(2012).

    [45] J Yin, F He, Y Xiong et al. Effects of land use/land cover and climate changes on surface runoff in a semi-humid and semi-arid transition zone in northwest China. Hydrology and Earth System Sciences, 21, 183-196(2017).

    [46] Y Yuan, Z Zhang, J Meng. Impact of changes in land use and climate on the runoff in Liuxihe Watershed based on SWAT model. Chinese Journal of Applied Ecology, 26, 989-998(2015).

    [47] S Yue, P Pilon, G Cavadias. Power of the Mann-Kendall and Spearman’s rho tests for detecting monotonic trends in hydrological series. Journal of Hydrology, 259, 254-271(2002).

    [48] S Yue, P Pilon, B Phinney et al. The influence of autocorrelation on the ability to detect trend in hydrological series. Hydrological Processes, 16, 1807-1829(2002).

    [49] A Zhang, C Zhang, G Fu et al. Assessments of impacts of climate change and human activities on runoff with SWAT for the Huifa River Basin, Northeast China. Water Resources Management, 26, 2199-2217(2012).

    [50] L Zhang, B Pang, Z Xu et al. Impacts of climate change and LUCC on hydrological processes in the Gulang River Basin. South-to-North Water Transfers and Water Science & Technology, 12, 42-46(2014).

    [51] Y Zhao, X Yu, J Zheng et al. Quantitative effects of climate variations and land-use changes on annual streamflow in Chaobai river basin. Transactions of the Chinese Society of Agricultural Engineering, 28, 252-260(2012).

    [52] G Zhuo, J Jian, Bianbaciren. Runoff of the Jinsha River: Characteristics and its response to climate change. Journal of Glaciology & Geocryology, 33, 405-415(2011).

    Qihui CHEN, Hua CHEN, Jun ZHANG, Yukun HOU, Mingxi SHEN, Jie CHEN, Chongyu XU. Impacts of climate change and LULC change on runoff in the Jinsha River Basin[J]. Journal of Geographical Sciences, 2020, 30(1): 85
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