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Applying Process-Based Models for Subsurface Flow Treatment Wetlands: Recent Developments and Challenges

机译:将基于过程的模型应用于地下流处理湿地:最新发展和挑战

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To date, only few process-based models for subsurface flow treatment wetlands have been developed. For modelling a treatment wetland, these models have to comprise a number of sub-models to describe water flow, pollutant transport, pollutant transformation and degradation, effects of wetland plants, and transport and deposition of suspended particulate matter. The two most advanced models are the HYDRUS Wetland Module and BIO-PORE. These two models are briefly described. This paper shows typical simulation results for vertical flow wetlands and discusses experiences and challenges using process-based wetland models in relation to the sub-models describing the most important wetland processes. It can be demonstrated that existing simulation tools can be applied for simulating processes in treatment wetlands. Most important for achieving a good match between measured and simulated pollutant concentrations is a good calibration of the water flow and transport models. Only after these calibrations have been made and the effect of the influent fractionation on simulation results has been considered, should changing the parameters of the biokinetic models be taken into account. Modelling the effects of wetland plants is possible and has to be considered when important. Up to now, models describing clogging are the least established models among the sub-models required for a complete wetland model and thus further development and research is required.
机译:迄今为止,仅开发了很少的基于过程的地下流处理湿地模型。为了对处理湿地进行建模,这些模型必须包含许多子模型,以描述水流,污染物迁移,污染物转化和降解,湿地植物的影响以及悬浮颗粒物的迁移和沉积。两个最先进的模型是HYDRUS湿地模块和BIO-PORE。简要描述了这两个模型。本文显示了垂直流湿地的典型模拟结果,并讨论了基于过程的湿地模型与描述最重要的湿地过程的子模型相关的经验和挑战。可以证明,现有的模拟工具可以应用于处理湿地的过程模拟。要实现测量和模拟污染物浓度之间的良好匹配,最重要的是对水流和运输模型进行良好的校准。仅在进行了这些校准并考虑了进液分馏对模拟结果的影响之后,才应考虑更改生物动力学模型的参数。对湿地植物的影响进行建模是可能的,并且在重要时必须加以考虑。迄今为止,描述堵塞的模型是完整湿地模型所需的子模型中建立最少的模型,因此需要进一步的开发和研究。

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