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Multi-criteria analysis of wastewater treatment plant design and control scenarios under uncertainty

机译:不确定条件下污水处理厂设计与控制方案的多标准分析

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Wastewater treatment plant control and monitoring can help to achieve good effluent quality, in a complex, highly non-linear process. The Benchmark Simulation Model no. 2 (BSM2) is a useful tool to competitively evaluate plant-wide control on a long-term basis.rnA method to conduct scenario analysis of process designs by means of Monte Carlo (MC) simulations and multi-criteria evaluation is presented. It is applied to the open loop version of BSM2 and to two closed loop versions, one with a simple oxygen controller and the other one with an ammonium controller regulating the set-point of the oxygen controller (cascade controller). The results show a much greater benefit of the cascade controller compared to the simple controller, both in environmental and economic terms. From an optimal process design point of view, the results show that the volume of the primary clarifier and the anoxic fraction of the reactor volume have an important impact on process performance.rnThe uncertainty analysis of the optimal designs, also performed with MC simulations, highlights the improved and more stable effluent under closed loop control.
机译:废水处理厂的控制和监视可以通过一个复杂的,高度非线性的过程帮助实现良好的废水质量。基准仿真模型编号2(BSM2)是长期竞争性评估工厂范围内控制的有用工具。提出了一种通过蒙特卡洛(MC)模拟和多标准评估进行过程设计方案分析的方法。它适用于BSM2的开环版本和两个闭环版本,一个带有简单的氧气控制器,另一个带有用于调节氧气控制器(级联控制器)设定点的铵控制器。结果表明,与简单控制器相比,级联控制器在环境和经济方面都具有更大的优势。从最佳工艺设计的角度来看,结果表明,初级澄清池的体积和反应器体积的缺氧分数对工艺性能有重要影响。rn还通过MC模拟对最佳设计进行了不确定性分析,突出了在闭环控制下改善了废水并使其更加稳定。

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