Biegel M, Schanze J, Krebs P
Leibniz Institute of Ecological and Regional Development, Weberplatz 1, 01217 Dresden, Germany.
Water Sci Technol. 2005;52(5):249-56.
The new model ArcEGMO-URBAN aims at deterministic and spatiotemporal modelling of water, nitrogen and phosphorus fluxes from all urbanised areas of a river basin considering all potential sources. Pollution loads are calculated for discrete urban patches and balanced on the level of hydrological subbasins. Modelling results can be defined by the user of any level of spatial and/or temporal aggregation, e.g. matter balances for river basins or river sections and years or months, respectively. To process spatial data, a Geographic Information System is linked to the model. Information on urban land use and general characteristics of river basins is based on digital coverages, partly generated from remote-sensing data. Moreover, statistical data, e.g. on population, sewer systems, wastewater treatment plants etc. are included. Stormwater runoff from impervious surfaces is calculated as one input to the sewer network. Wastewater is considered with its main sewer system, pumping stations and treatment plants. Finally, the discharge is balanced for discrete river sections. Modelling results attest ArcEGMO-URBAN its ability to realistically quantify matter fluxes and major pollution sources as well as their seasonal variation. This makes the model an applicable tool for the analysis of scenarios with e.g. varying population distribution or climatic and technological conditions.
新型ArcEGMO-URBAN模型旨在对流域内所有城市化区域的水、氮和磷通量进行确定性的时空建模,同时考虑所有潜在来源。针对离散的城市斑块计算污染负荷,并在水文子流域层面进行平衡。建模结果可由用户根据任何空间和/或时间聚合级别来定义,例如分别针对流域或河段以及年份或月份的物质平衡。为了处理空间数据,将地理信息系统与该模型相链接。关于城市土地利用和流域一般特征的信息基于数字覆盖范围,部分由遥感数据生成。此外,还纳入了统计数据,例如关于人口、下水道系统、污水处理厂等的数据。来自不透水表面的雨水径流被计算为下水道网络的一个输入。考虑了废水及其主要下水道系统、泵站和处理厂。最后,对离散河段的流量进行平衡。建模结果证明ArcEGMO-URBAN模型能够实际量化物质通量和主要污染源及其季节变化。这使得该模型成为分析例如人口分布变化或气候及技术条件等情景的适用工具。