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Optimisation of a large WWTP thanks to mathematical modelling

机译:凭借数学建模,优化大型WWTP

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Better controlling and optimising the plant's processes has become a priority for WWTP (Wastewater Treatment Plant) managers. The main objective of this project is to develop a simplified mathematical tool able to reproduce and anticipate the behaviour of the Tougas WWTP (Nantes, France). This tool is aimed to be used directly by the managers of the site. The mathematical WWTP model was created using the software WEST~®. This paper describes the studied site and the modelling results obtained during the stage of the model calibration and validation. The good simulation results have allowed to show that despite a first very simple description of the WWTP, the model was able to correctly predict the nitrogen composition (ammonia and nitrate) of the effluent and the daily sludge extraction. Then, a second more detailed configuration of the WWTP was implemented. It has allowed to independently study the behaviour of each of four biological trains. Once this first stage will be completely achieved, the remainder of the study will focus on the operational use of a simplified simulator with the purpose of optimising the Tougas WWTP operation.
机译:更好的控制和优化工厂的流程已成为WWTP(废水处理厂)经理的优先事项。该项目的主要目标是开发一种能够重现和预测Tougas WWTP(Nantes,法国)的行为的简化数学工具。此工具旨在由网站的管理者直接使用。数学WWTP模型是使用该软件West〜®创建的。本文介绍在模型校准和验证的阶段得到的研究的站点和模拟结果。良好的仿真结果允许表明,尽管对WWTP的第一个非常简单的描述,但该模型能够正确地预测流出物的氮组成(氨和硝酸盐)和日常污泥提取。然后,实施了WWTP的第二个更详细的配置。它允许独立研究四种生物列车中的每一个的行为。一旦这一阶段将完全实现,该研究的其余部分将专注于简化模拟器的操作使用,目的是优化Tougas WWTP操作。

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