Langergraber Günter
Institute of Sanitary Engineering and Water Pollution Control, BOKU -- University of Natural Resources and Applied Life Sciences, Vienna, Muthgasse 18, A-1190 Vienna, Austria.
Sci Total Environ. 2007 Jul 15;380(1-3):210-9. doi: 10.1016/j.scitotenv.2006.10.030. Epub 2006 Dec 8.
Numerical models are a means to increase the understanding of the processes occurring in the "black box" constructed wetland. Once reliable models for constructed wetlands are available they can be also used for evaluating and improving existing design criteria. The paper shows simulation results for outdoor experimental subsurface vertical flow constructed wetlands using CW2D, a multi-component reactive transport module developed to simulate transport and reactions of the organic matter, nitrogen and phosphorus in subsurface flow constructed wetlands. The surface area of the experimental vertical flow bed was 20 m(2). The organic load applied was 27 g COD m(-2) d(-1) (corresponding to a specific surface area of 3 m(2) per person). The aim of the work is to calibrate the model for temperature dependency that has been implemented in CW2D. Water temperature during the investigation period varied between 4 degrees C and 18 degrees C. The measured effluent concentrations during summer could be simulated using the standard CW2D parameter set when the flow model was calibrated well. However, the increasing effluent concentrations at low temperatures could not be simulated with the standard CW2D parameter set where temperature dependencies are considered only for maximum growth, decay, and hydrolysis rates. By introducing temperature dependencies for half-saturation constants for the hydrolysis and nitrification processes it was possible to simulate the observed behaviour. The work presented is a step on the way to validate the CW2D module. Model validation is a necessary step before numerical simulation can be finally used in practice, e.g. for checking existing design guidelines.
数值模型是一种增进对人工湿地这一“黑箱”中发生过程理解的手段。一旦获得可靠的人工湿地模型,它们还可用于评估和改进现有的设计标准。本文展示了使用CW2D对室外实验性潜流垂直流人工湿地的模拟结果,CW2D是一个多组分反应输运模块,用于模拟潜流人工湿地中有机物、氮和磷的输运及反应。实验垂直流床的表面积为20平方米。施加的有机负荷为27克化学需氧量每平方米每天(相当于每人3平方米的比表面积)。这项工作的目的是校准CW2D中已实现的温度依赖性模型。调查期间水温在4摄氏度至18摄氏度之间变化。当流模型校准良好时,使用标准CW2D参数集可以模拟夏季测得的出水浓度。然而,对于仅考虑最大生长、衰减和水解速率的温度依赖性的标准CW2D参数集,无法模拟低温下不断增加的出水浓度。通过引入水解和硝化过程的半饱和常数的温度依赖性,可以模拟观察到的行为。所展示的工作是验证CW2D模块的一个步骤。在数值模拟最终应用于实践(例如检查现有设计指南)之前,模型验证是必要的一步。