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Development of a hydraulic sub-model as part of a desktop environmental flow assessment method

机译:开发液压子模型,作为桌面环境流量评估方法的一部分

摘要

Countries around the world have been developing ecological policies to protect their water resources and minimise the impacts of development on their river systems. The concept of ‘minimum flows’ was initially established as a solution but it did not provide sufficient protection as all elements of a flow regime were found to be important for the protection of the river ecosystem. “Environmental flows” were developed to determine these flow regimes to maintain a river in some defined ecological condition. Rapid, initial estimates of the quantity component of environmental flows may be determined using the DesktopReserve Model in South Africa. However, the Desktop Reserve Model is dependent upon the characteristics of the reference natural hydrology used. The advancements in hydraulic and ecological relationships from the past decade have prompted the development of a Revised Desktop Reserve Model (RDRM) that would incorporate these relationships. The research in this thesis presents the development of the hydraulic sub-model for the RDRM. The hydraulic sub-model was designed to produce a realistic representation of the hydraulic conditions using hydraulic parameters/characteristics from readily available information for any part of South Africa. Hydraulic data from past EWR studies were used to estimate the hydraulic parameters. These estimated hydraulic parameters were used to develop hydraulic estimation relationships and these relationships were developed based on a combination of regression and rule-based procedures. The estimation relationships were incorporated into the hydraulic sub-model of the integrated RDRM and assessments of the hydraulic outputs and EWR results were undertaken to assess the ‘applicability’ of the hydraulic sub-model. The hydraulic sub-model was assessed to be at a stage where it can satisfactorily be incorporated in the RDRM and that it is adequately robust in many situations. Recommendations for future work include the refinement of estimation of the channel forming discharge or the use of spatial imagery to check the maximum channel width estimation. It is also proposed that a future version of the hydraulic sub-model could include flow regime change impacts on channel geomorphology and sedimentology so that flow management scenarios can be more effectively assessed.
机译:世界各国一直在制定生态政策,以保护其水资源并最大程度地减少发展对其河流系统的影响。 “最小流量”的概念最初是作为一种解决方案而建立的,但由于发现了流量制度的所有要素对于保护河流生态系统都很重要,因此并未提供足够的保护。开发“环境流量”来确定这些流量状态,以使河流保持一定的生态条件。可以使用南非的DesktopReserve模型来确定环境流量的数量的快速,初步估计。但是,桌面保护区模型取决于所用参考自然水文学的特征。过去十年来水力和生态关系的发展促进了修订后的桌面储量模型(RDRM)的开发,该模型将纳入这些关系。本文的研究提出了RDRM液压子模型的发展。液压子模型的设计目的是使用来自南非任何地区的随时可用的信息中的液压参数/特征来生成液压条件的真实表示。过去的EWR研究得出的水力数据被用来估算水力参数。这些估计的水力参数用于建立水力估计关系,并且这些关系是基于回归和基于规则的过程的结合而建立的。估算关系被合并到集成RDRM的液压子模型中,并对液压输出和EWR结果进行评估,以评估液压子模型的“适用性”。液压子模型被评估为处于可以令人满意地合并到RDRM中的阶段,并且在许多情况下具有足够的鲁棒性。对未来工作的建议包括对通道形成放电的估算进行改进或使用空间图像检查最大通道宽度估算。还提出,水力子模型的未来版本可能包括流量变化对河道地貌和沉积学的影响,以便可以更有效地评估流量管理方案。

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  • 作者

    Desai Ahmed Yacoob;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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