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Development of a coupled quantity-quality-environment water allocation model applying the optimization-simulation method

机译:优化-模拟方法建立水质水环境耦合模型

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摘要

A river basin usually provides water for multiagent. Imperfect coordination mechanisms among these agents, however, usually lead to serious water shortage, pollution, and ecological degradation. Therefore, it is vital to conduct research on allocating different kinds of water resources among multiagent including the water quantity agent, water quality agent and environment agent within a river basin. This paper proposes an optimization-simulation method that takes into consideration engineering measures, including water transfer projects, reservoirs, canal heads, and pump stations; multi-water resources such as local surface water, transferred water, groundwater, and reused sewage; and multiagent for remitting serious water problems. In the proposed optimization-simulation method, the groundwater and reused sewage are first allocated according to the water resources allocation simulation module (Module 1). Then, local surface and transferred water are allocated based on the water resources allocation optimization module (Module 2), which comprises water quantity, water quality and environment agents' objectives based on synergism. Finally, the instream water quality is simulated according to the water quality simulation module (Module 3). Results show that, compared to the current situation, the water quantity and environment agent guarantee rates can satisfy the design requirements in the planning year of 2020. The regulated instream water quality is also improved; although, it still remains relatively poor. Water quality in the downstream is worse than that in the upstream. In addition, the water quality shows a positive correlation with the instream streamflow. These results certify the proposed optimization-simulation method can provide support for efficacious multiagent water resources allocation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:流域通常为多主体提供水。但是,这些因素之间协调机制的不完善通常会导致严重的水资源短缺,污染和生态退化。因此,进行流域内的水量,水质,环境三者之间的多种水资源分配研究至关重要。本文提出了一种优化模拟方法,该方法考虑了工程措施,包括调水工程,水库,渠首和泵站。多种水资源,例如当地地表水,调水,地下水和回用污水;以及用于解决严重水问题的多试剂。在所提出的优化模拟方法中,首先根据水资源分配模拟模块(模块1)分配地下水和回用污水。然后,根据水资源分配优化模块(模块2)分配地表水和调水,该模块包括水量,水质和基于协同作用的环境因子目标。最后,根据水质模拟模块(模块3)模拟入流水质。结果表明,与目前情况相比,水量和环境因子的保证率可以满足2020计划年的设计要求。尽管它仍然相对较差。下游水质比上游水质差。此外,水质与河水流量呈正相关。这些结果证明了所提出的优化模拟方法可以为有效的多主体水资源分配提供支持。 (C)2018 Elsevier Ltd.保留所有权利。

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