Operation of an irrigation canal by means of the passive canal control
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  • 作者:Joan Soler ; Pablo Gamazo ; José Rodellar ; Manuel Gómez
  • 刊名:Irrigation Science
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:33
  • 期:2
  • 页码:95-106
  • 全文大小:2,175 KB
  • 参考文献:1. Barkau RL (1992) UNET, One-dimensional unsteady flow through a full network of open canals. Computer Program for HEC-RAS, St. Louis
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    7. Plusquellec H (1988) Improving the operation of canal irrigation systems, agriculture and rural development department. The Economic Development Institute of the World Bank, Washington
    8. Soler J, Gómez M, Rodellar J (2013a) GoRoSo: feedforward control algorithm for irrigation canals based on sequential quadratic programming. J Irrig Drain Eng 139(1):41-4 CrossRef
    9. Soler J, Gómez M, Rodellar J, Gamazo P (2013b) Application of the GoRoSo feedforward algorithm to compute the gate trajectories for a quick canal closing in the case of an emergency. J Irrig Drain Eng 139(12):1028-036 CrossRef
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  • 刊物主题:Agriculture; Water Industry/Water Technologies; Environment, general; Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution; Sustainable Development; Climate Change;
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1432-1319
文摘
Modern irrigation techniques involve large spatial and temporal demand variations in distribution networks. This makes the flow unsteady and generates perturbations that travel upstream along the network. Perturbations can also be generated by variable water inflows. This is the case when water is pumped into the network under variable energy rates, generating perturbations that travel downstream on the network. The passive canal control is a design criteria and a flow distribution method that make most of the storage capacity needed in any irrigation project, in order to mitigate the perturbations coming from both directions. In this paper, the passive canal control is applied to the design and operation of the Xerta-Sénia Canal Irrigation Project considering an unsteady free-surface flow model. The key aspect of the project is the location of irrigation reservoirs in-line with the canals at the same level, allowing water flow from canals to reservoir and vice versa. Three performance scenarios are evaluated, and the results of a simulation model are presented.

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