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Control of Systems of Reservoirs with the Use of Risk Analysis

机译:利用风险分析控制水库系统

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A system of reservoirs is usually defined as a system of water management elements, that are mutually linked by inner and outer connections in a purpose-built complex. Combined elements consist of reservoirs, river sections, dams, weirs, hydropower plants, water treatment plants and other hydraulic structures. These elements also include the rainfall system, the run-off system, the ground water system, etc. A system of reservoirs serves many purposes, which result from the basic functions of water reservoirs: storage, flood control and environmental functions. Most reservoirs serve several purposes at the same time. They are so called multi-purposes reservoirs. Optimum design and control of a system of reservoirs depends strongly on identifying the particular purposes. In order to assess these purposes and to evaluate the appropriate set of criteria, risk analysis can be used. Design and control of water reservoir junctions is consequently solved with the use of multi-objective optimisation. This paper deals with the use of the risk analysis to determine criteria for controlling the system. This approach is tested on a case study of the Pastviny dam in the Czech Republic.
机译:水库系统通常定义为水管理要素系统,这些水管理要素通过专用建筑群中的内部和外部连接相互链接。组合元素包括水库,河段,水坝,堰,水力发电厂,水处理厂和其他水力结构。这些要素还包括降雨系统,径流系统,地下水系统等。水库系统有许多用途,这是由水库的基本功能(存储,防洪和环境功能)产生的。大多数储层同时具有多种用途。它们被称为多功能水库。储层系统的最佳设计和控制在很大程度上取决于确定特定用途。为了评估这些目的并评估适当的标准集,可以使用风险分析。因此,通过使用多目标优化解决了水库枢纽的设计和控制。本文涉及使用风险分析来确定控制系统的标准。该方法已在捷克共和国Pastviny大坝的案例研究中进行了测试。

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