首页> 外文会议>IFIP WG 5.5 working conference on virtual enterprises >Cognitive Based Decision Support for Water Management and Catchment Regulation
【24h】

Cognitive Based Decision Support for Water Management and Catchment Regulation

机译:基于认知的水管理与集水管理决策支持

获取原文

摘要

The effect of climate change on water ecosystems include increased winter precipitation, severe floods, leading to fluctuations in stream flow in areas and affecting both fish survival and water supplies. Several methods exist for establishing projections of changes in precipitation with regards to river flows and water levels at the river-basin scale, but hydrological characteristics change remain difficult to predict. Ensuring optimization techniques for water systems becomes significantly important especially with the degradation of water ecosystems and increased risks for fish population. On the other hand, water demand has increased in the recent periods with the population growth. Further changes in the irrigation water system demand are determined by climate change precluding the reliability of current water management systems and affecting on the water-related ecosystems. To address these challenges real time water management and optimization strategies are required to facilitate a more autonomous management process that can address requirements for water demand, supply and ecosystem preservation. We present a cognitive based decision system that performs river level prediction for water optimization and catchment regulation for preserving Usk reservoir ecosystem in South Wales. The research is conducted on the Usk reservoir in South Wales reservation that is seeking to preserve the ecosystem and for which we propose a more informed decision system for catchment regulation and water management. Our system provides five days river level prediction to regulate river levels by pumping from/to reservoirs and to create artificial spates during the salmon migration season and to coincide with periods of low river flow.
机译:气候变化对水生态系统的影响包括冬季降水增加,洪水泛滥,导致该地区河流流量的波动,并影响鱼类的生存和供水。有几种方法可以建立关于流域内河流流量和水位的降水变化预测,但是水文特征变化仍然难以预测。确保水系统的优化技术变得尤为重要,特别是在水生态系统退化和鱼类种群风险增加的情况下。另一方面,随着人口的增长,近期的需水量有所增加。灌溉水系统需求的进一步变化取决于气候变化,其中不包括当前水管理系统的可靠性以及对与水相关的生态系统的影响。为了应对这些挑战,需要实时的水管理和优化策略来促进更加自治的管理流程,从而可以满足对水的需求,供应和生态系统保护的要求。我们提出了一个基于认知的决策系统,该决策系统执行河流水位预测以优化水质和集水区以保护南威尔士州的Usk水库生态系统。这项研究是在南威尔士保护区的Usk水库中进行的,该水库旨在保护生态系统,为此,我们提出了一个用于流域管理和水管理的更明智的决策系统。我们的系统提供了五天的河流水位预测,以通过从/向水库抽水来调节河流水位,并在鲑鱼迁徙季节期间创建人工河口,并与河流流量低的时期相吻合。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号