Open Access
Issue |
MATEC Web Conf.
Volume 246, 2018
2018 International Symposium on Water System Operations (ISWSO 2018)
|
|
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Article Number | 01005 | |
Number of page(s) | 13 | |
Section | Main Session: Water System Operations | |
DOI | https://doi.org/10.1051/matecconf/201824601005 | |
Published online | 07 December 2018 |
- Clemmens A J, Strand R J. Downstream-water-level controltest results on the W M lateral canal. J Journal of Irrigation and Drainage Engineering, 2010, 136 (7):460–469 [Google Scholar]
- Clemmens, A J, Strand R J, Bautista Erouting demand changes to userson the WM lateral canal with SacMan. J Journal of Irrigation and Drainage Engineering, 2010,136(7): 470–478 [Google Scholar]
- Filiz Dadaser-Celik, Jay S Coggins, Patrick L Brezonik, et al. The projected costs and benefits of the water diversion from and to sultan marshes(turkey). J Stefan Ecological Economics, 2009,68 (5): 1496-1506 [Google Scholar]
- G Guan A, Clemmens A J, T F, et al. Applying Water-Level Difference Control to Central Arizona Project. J Irrig.Drain Eng, 2011, 137: 747-753 [Google Scholar]
- G Mathias Kondolf, Ramon J Batalla. Hydrological effects of dams and water diversions on rivers of mediterraneanclimate regions: examples from california. J Developments in Earth Surface Processes, 2005,7: 197-211 [Google Scholar]
- Jay F Martin. Emergy valuation of diversions of river water to marshes in the Mississippi River Delta. J Ecological Engineering, 2002, 3(18): 265-286 [Google Scholar]
- Manuel Rijo, Carina Arranja. Supervision and Water Depth Automatic Control of an Irrigation Canal. J Irrig. Drain Eng, 2010,136: 3-10 [Google Scholar]
- Renault D. Offtake sensitivity, operation effectiveness, and performance of irrigation system. J Journal of Irrigation and Drainage Engineering, 1999,125: 37-147 [Google Scholar]
- Renault D, Hemakumara H M. Irrigation offtake sensitivity. J Journal of Irrigation and Drainage Engineering,1999,125: 131-136 [Google Scholar]
- Soler oan, Gómez Manuel, Rodellar José. Application of the GoRoSo feed forward algorithm to compute the gate trajectories for a quick canal closing in the case of an emergency. J Journal of Irrigation and Drainage Engineering,2013, (12): 1028-1036 [Google Scholar]
- Wu Baosheng, ShangYizi, Cui Xinghua. Automatic canal control system and its operation and design. J Advances In Water Science, 2008,19(5): 746-755 [Google Scholar]
- Fan Jie, Wang Chang-de, Cui Wei, Fuzzy-PID,Combined Control Strategy for Canal Operation System. J Journal of Irrigation and Drainage, 2003,22(4): 59-62 [Google Scholar]
- Wang Tao,Ruan Xinjian. Application of neural network PID controller for canal control system. J Journal of Yangtze River Scientific Research Institute, 2004,21(4): 53-56 [Google Scholar]
- Wang Changde,Guo Hua, Zou Chaowang.Application of dynamic matrix control to operation of canal system. J Enginee ring Jour nal of Wuhan Univer sity, 2005, 38(3): 6-18 [Google Scholar]
- Shang Tao, An Ning,Liu Yong.Research on theory and dynamic simulation of robust controlfor channel automatic operation. J Engineering Journal of Wuhan University, 2004,37(2):75-84 [Google Scholar]
- Guan Guang_hua,Wang Chang_de,Fan Jie.Inundation deformation characteristics of expansive soils. J ShuiLiXueBao, 2005,36(11): 1379-1391 [Google Scholar]
- Ding Zhiliang,Tan Guangmin, Chen Li.Study of Sluice gate regulating Speed and Changes of Water-Surface Profile in Tranportation Channels. J South-North Water Transfer and Water Science &Technology, 2005, 3(6): 46-50 [Google Scholar]
- Wang Kai,Zhang Cheng,Wang Guangqian, Multi-stage Diversion Model for Large Flow Dividing Gates in Water Transportation Channel. J Journal of Basic Science and Engineering, 2009,17(2):161-171) [Google Scholar]
- [19] Fang Shenguang, Wu Baosheng, Fu Xudong. Gate operation in the middle route of the South-to-North Water Diversion Channel. J Journal Of Hydroelectric Engineering, 2008, (5): 93-97 [Google Scholar]
- Zhang Cheng, Zhang Shanghong. Research on the Characteristic of Hydraulic Response of Large Water Diversion System under the Contro lof Gates. J Journal of Basic Science and Engineering, 2011,(S1): 98-107 [Google Scholar]
- Mu Xiangpeng,Guo Xiaocheng,Chen Wenxue,et al. Study on the hydraulic response sensitivity of unsteady flow in a conveyance channel to flow diversion. J Journal Of Hydroelectric Engineering,2010,29(4): 96-102 [Google Scholar]
- Fan Jie, Wang Chang-de, Guan Guang-hua,et al.Study on the hydraulic reaction of unsteady flows in open channel,J Advances In Water Science, 2006,17(1): 55-60 [Google Scholar]
- Shu Jin, Yuan Jian.Hydraulic Response and Emergency Dispatch under Abnormal Operation Model of Large-scal Water Diversion Channel.J South-North Water Transfer and Water Science &Technology, 2012,(5): 161-165 [Google Scholar]
- Wang Hao, Lei Xiaohui, Shang Yizi. Key techno lo gies o f intellig ent control and emerg ency regulation for the Middle Route of South to North Water Diversion Project.J South to No thWater Transfers and Water Science & Technolo gy, 2017, 15(2): 01208 [Google Scholar]
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