Drilldown: BibEntryCargo
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February 2014
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Chen, Lei; (1) ·
Cibin, R.; Athira, P.; Sudheer, K. P.; Chaubey, I.; (1) ·
Gonçalves, Marta; Martinho, Paulo; Guedes Soares, C.; (1) ·
Jha, Manoj K.; Gassman, Philip W.; (1) ·
Rusu, L; Bernardino, M; Guedes Soares, C; (1) ·
Shope, C. L.; Maharjan, G. R.; Tenhunen, J.; Seo, B.; Kim, K.; Riley, J.; Arnhold, S.; Koellner, T.; Ok, Y. S.; Peiffer, S.; Kim, B.; Park, J.-H.; Huwe, B.; (1) ·
Singh, Ajai; Imtiyaz, Mohd.; Isaac, R.K.; Denis, D.M.; (1) ·
Wang, Dao Sheng; Lv, Xiang Cui; Yuan, De Kui; (1) ·
Yin, ZhenLiang; Xiao, HongLang; Zou, SongBing; Zhu, Rui; Lu, ZhiXiang; Lan, YongChao; Shen, YongPing; (1) ·
Zeng, R.; Cai, X.; (1) ·
Zhang, Shanghong; Liu, Yan; Wang, Taiwei; (1)
An Interval-Deviation Approach for hydrology and water quality model evaluation within an uncertainty framework (1) ·
Analyzing streamflow changes: irrigation-enhanced interaction between aquifer and streamflow in the Republican River basin (1) ·
Application of distributed hydrological models for predictions in ungauged basins: a method to quantify predictive uncertainty: UNGAUGED BASIN SIMULATIONS: UNCERTAINTY QUANTIFICATION (1) ·
Assessing the performance and uncertainty analysis of the SWAT and RBNN models for simulation of sediment yield in the Nagwa watershed, India (1) ·
Changes in hydrology and streamflow as predicted by a modelling experiment forced with climate models: CHANGES IN HYDROLOGY DUE TO PREDICTED MID-CENTURY CLIMATE (1) ·
How land use change contributes to reducing soil erosion in the Jialing River Basin, China (1) ·
Simulation of hydrological processes of mountainous watersheds in inland river basins: taking the Heihe Mainstream River as an example (1) ·
Study on Characteristics of Water Waves in Bohai Sea Using SWAN Model (1) ·
Using the SWAT model to improve process descriptions and define hydrologic partitioning in South Korea (1) ·
Wave energy conditions in the western French coast (1) ·
Wind and wave modelling in the Black Sea (1)
155–163 (1) ·
16–26 (1) ·
2033–2045 (1) ·
207–214 (1) ·
2772–2781 (1) ·
351–364 (1) ·
493–502 (1) ·
539–557 (1) ·
5–20 (1) ·
65–73 (1) ·
983–989 (1)
http://doi.wiley.com/10.1002/hyp.9721 (1) ·
http://doi.wiley.com/10.1002/hyp.9836 (1) ·
http://link.springer.com/10.1007/s40333-013-0197-4 (1) ·
http://www.tandfonline.com/doi/abs/10.1080/02626667.2013.872787 (1) ·
http://www.tandfonline.com/doi/full/10.1080/1755876X.2014.11020149 (1) ·
https://hess.copernicus.org/articles/18/493/2014/ (1) ·
https://hess.copernicus.org/articles/18/539/2014/ (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S0022169413008676 (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S037837741300303X (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S0960148113003212 (1) ·
https://www.scientific.net/AMM.522-524.983 (1)
10.1002/hyp.9721 (1) ·
10.1002/hyp.9836 (1) ·
10.1007/s40333-013-0197-4 (1) ·
10.1016/j.agwat.2013.10.016 (1) ·
10.1016/j.jhydrol.2013.11.043 (1) ·
10.1016/j.renene.2013.06.028 (1) ·
10.1080/02626667.2013.872787 (1) ·
10.1080/1755876X.2014.11020149 (1) ·
10.4028/www.scientific.net/AMM.522-524.983 (1) ·
10.5194/hess-18-493-2014 (1) ·
10.5194/hess-18-539-2014 (1)
Showing below up to 11 results in range #1 to #11.