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Pollutant load overspill minimization of interceptor sewer systems

机译:截污系统的污染物超负荷排放最小化

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This paper describes the development of an optimal pollution control model for interceptor sewer systems from conceptualization to detailed validation. The formulation of two optimization alternatives using a slug flow approach is presented. The models are tested on an idealized interceptor sewer system with a representative storm event to confirm the viability of the optimization techniques. A hydraulic verification routine is included and the WALLRUS hydrodynamic sewer flow simulation software is used to validate the results from the hydraulic verification routine. Application of the model to an existing interceptor sewer is presented. The results from the idealized test case show the viability of using Linear Programming and Dynamic Programming within the optimal pollution control models. The models give physically feasible solutions that can be validated using WALLRUS. Significant environmental improvements (in terms of pollutant load reduction to the receiving waters) can be achieved. The results illustrate the validity of the assumptions in the optimal control model formulation, and show that the slug flow approach provides a computationally efficient and sound formulation for the optimal control model and offers promise for practical implementation of optimal real time control.
机译:本文介绍了从概念化到详细验证的截污系统最佳污染控制模型的开发。提出了使用团状流方法的两个优化选择方案。在具有代表性暴风雨事件的理想拦截器下水道系统上对模型进行了测试,以确认优化技术的可行性。包括液压验证程序,并且使用WALLRUS流体动力学下水道流量模拟软件来验证液压验证程序的结果。介绍了该模型在现有拦截器下水道中的应用。理想测试用例的结果表明,在最佳污染控制模型中使用线性规划和动态规划是可行的。这些模型提供了物理上可行的解决方案,可以使用WALLRUS进行验证。可以实现显着的环境改善(就减少接收水域的污染物负荷而言)。结果说明了最优控制模型公式中假设的有效性,并表明,塞流法为最优控制模型提供了计算有效且合理的公式,并为实际实时最优控制提供了希望。

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