首页> 外文期刊>Chemical engineering journal >Multi-criteria selection of optimum WWTP control setpoints based on microbiology-related failures, effluent quality and operating costs
【24h】

Multi-criteria selection of optimum WWTP control setpoints based on microbiology-related failures, effluent quality and operating costs

机译:基于与微生物相关的故障,废水质量和运营成本的多标准最佳污水处理厂控制设定值选择

获取原文
获取原文并翻译 | 示例
       

摘要

This work aims at optimising the performance of WWTP with simultaneous biological C, N and P removal by improving its automatic control system. The success of control strategies is highly dependent on the selected operational setpoints of the controlled variables. These setpoints should be optimised to achieve the best effluent quality with the lower operating costs and, at the same time, ensuring an operation with low probability to develop biomass settling problems. Two different objective functions were used to optimise the setpoints of the tested control strategies: a cost function based on the operational costs by converting the effluent quality into monetary units and a multi-criteria function based on the effluent quality, the operational costs and settling problems of microbiological origin. Three different control strategies were evaluated: (i) open loop; (ii) optimised fixed setpoints for the ammonium and nitrate control loops and (iii) daily optimised setpoints. The multi-criteria optimisation resulted in a set of optimal setpoints with a Pareto distribution. This multi-criteria function was developed so that any of the criteria (effluent quality operating costs or microbiological risks) was conditional to another and thus, optimal scenarios with a high risk of failure due to microbiological issues could be rejected. Moreover, it was concluded that the optimisation process could be enhanced by using both objective functions in a complementary way. While the multi-criteria function enabled a more extensive evaluation of the different alternatives, once the weights are selected the operational costs function optimisation could be used to define an optimum set of setpoints to adapt the system to influent variations.
机译:这项工作旨在通过改进其自动控制系统来优化污水处理厂的性能,同时去除生物中的C,N和P。控制策略的成功在很大程度上取决于所选择的控制变量的操作设定点。应该优化这些设定点,以较低的运行成本获得最佳的废水质量,同时确保以较低的概率产生生物质沉降问题的运行。使用了两个不同的目标函数来优化已测试控制策略的设定点:基于通过将废水质量转换为货币单位的运营成本的成本函数,以及基于废水质量,运营成本和解决问题的多准则函数微生物来源。评估了三种不同的控制策略:(i)开环; (ii)氨和硝酸盐控制回路的最佳固定设定点,以及(iii)每日最佳设定点。多准则优化产生了一组具有帕累托分布的最佳设定点。开发了多标准功能,因此任何标准(废水质量运行成本或微生物风险)都必须以其他条件为条件,因此可以拒绝由于微生物问题而导致高失败风险的最佳方案。此外,得出的结论是,可以通过互补使用两个目标函数来增强优化过程。尽管多准则功能可以对不同的替代方案进行更广泛的评估,但是一旦选择权重,运营成本函数优化就可以用来定义一组最佳设定点,以使系统适应进水变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号