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Application of derived probability and dynamic programming techniques to planning regional stormwater management systems

机译:派生概率和动态规划技术在规划区域雨水管理系统中的应用

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There exists a need on the part of land developers or municipalities responsible for stormwater servicing master planning to reduce the costs associated with the initial construction of stormwater facilities as well as with their operation and maintenance. Common integral components of stromwater control systems include stormwater management ponds for water quality control. These ponds may occupy valuable urban land and, hence, it is desirable to minimize the land coverage of these facilities while simultaneously satisfying water quality control objectives. The employment of optimization techniques in the planning and design process can thus play an important rule by reducing the costs associated with the implementation of such facilities. This paper presents an optimization methodology for single catchments using a single stormwater quality control pond. ?his methodology is then further developed for a multiple parallel catchment (each with a single pond upstream of its outlet) optimization procedure employing principles of dynamic programming. The principal constraint of the problem formulation is to meet a specified pollution control level at the outfall to a receiving water body. The optimization technique employs analytical probabilistic models for stormwater management planning and analysis which are in a mathematically closed form and thus easily integrated into an optimization framework. The costs explicitly considered are land-associated costs and construction costs. Operation and maintenance costs can be incorporated into the framework if desired.
机译:负责雨水服务总体规划的土地开发商或市政当局有必要减少与雨水设施的初始建设及其运营和维护相关的成本。 stromwater控制系统的常见组成部分包括用于水质控制的雨水管理池。这些池塘可能会占用宝贵的城市土地,因此,在满足水质控制目标的同时,希望将这些设施的土地覆盖率降至最低。因此,通过减少与实施此类设施相关的成本,在规划和设计过程中采用优化技术可以发挥重要作用。本文提出了使用单个雨水质量控制池的单个流域优化方法。然后,他的方法将进一步发展为采用动态程序设计原理的多个平行流域(每个流域上游都有一个池塘)优化程序。问题制定的主要约束是要满足接收水体排污口的指定污染控制水平。该优化技术采用了数学上封闭形式的分析概率模型来进行雨水管理规划和分析,因此很容易集成到优化框架中。明确考虑的成本是与土地相关的成本和建筑成本。如果需要,可以将运营和维护成本纳入框架。

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