首页> 外文期刊>Practice Periodical of Hazardous, Toxic, and Radioactive Waste Management >Integrated Simulation-Optimization Approach for Real-Time Dynamic Modeling and Process Control of Surfactant-Enhanced Remediation at Petroleum-Contaminated Sites
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Integrated Simulation-Optimization Approach for Real-Time Dynamic Modeling and Process Control of Surfactant-Enhanced Remediation at Petroleum-Contaminated Sites

机译:石油污染现场表面活性剂强化修复的实时动态建模和过程控制的集成优化优化方法

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摘要

Surfactant-enhanced remediation is an effective approach for dealing with subsurface-contaminated sites. However, in studying and controlling the related processes, difficulties exist in incorporating a complicated numerical simulation model that is needed for process forecasting within a real-time nonlinear optimization framework that is critical for supporting process control. In this study, an integrated simulation-optimization approach was developed for supporting real-time dynamic modeling and process control of surfactant-enhanced remediation at petroleum-contaminated sites. Subsurface modeling is combined with a dual-response surface method to develop a system for generating optimum operation conditions under various site conditions, through the support of a nonlinear optimization model. The developed methodology was applied to a real-world case study in western Canada. Using the developed three-dimensional multiphase and multicomponent model, the surfactant-enhanced remediation process that is being implemented on the study site was simulated. The results provide useful information for further dual-response surface analysis to support the development of an optimization model to determine optimum process operation conditions. Under each initial contaminant concentration, optimum operation conditions can then be identified through this combined dual-response surface method optimization approach. Thus, a decision support system can then be produced to guide decisions of remediation process control under various site conditions.
机译:表面活性剂增强修复是处理地下污染场地的有效方法。然而,在研究和控制相关过程中,难以在实时非线性优化框架内并入复杂的数值模拟模型以进行过程预测,这对于支持过程控制至关重要,该非线性模型是至关重要的。在这项研究中,开发了一种集成的模拟优化方法,以支持石油污染场所表面活性剂强化修复的实时动态建模和过程控制。地下建模与双响应曲面方法相结合,通过非线性优化模型的支持,开发了一种可在各种现场条件下生成最佳运行条件的系统。所开发的方法应用于加拿大西部的实际案例研究。使用开发的三维多相和多组分模型,对正在研究现场实施的表面活性剂强化修复过程进行了模拟。结果为进一步的双响应表面分析提供了有用的信息,以支持开发优化模型以确定最佳工艺操作条件。在每种初始污染物浓度下,可通过这种组合的双响应表面方法优化方法确定最佳运行条件。因此,然后可以产生决策支持系统,以指导补救措施在各种现场条件下的控制决策。

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