Unit of Environmental Engineering, University of Innsbruck, Technikerstr. 13, 6020 Innsbruck, Austria.
Water Sci Technol. 2012;66(5):1052-60. doi: 10.2166/wst.2012.280.
Elements of combined sewer systems are among others sub-catchments, junctions, conduits and weirs with or without storage units. The spatial distribution and attributes of all these elements influence both system characteristics and sewer performance. Until today, little work has been done to analyse the influence of such characteristics in a case unspecific approach. In this study, 250 virtual combined sewer systems are analysed by defining groups of systems, which are representative for their different characteristics. The set was created with a further development of the case study generator (CSG), a tool for automatic generation of branched sewer systems. Combined sewer overflow and flooding is evaluated using performance indicators based on hydrodynamic simulations. The analysis of system characteristics, like those presented in this paper, helps researchers to understand coherences and aids practitioners in designing combined sewers. For instance, it was found that characteristics that have a positive influence on emission reduction frequently have a negative influence on flooding avoidance and vice versa.
合流制排水系统的组成部分包括子流域、连接点、管道和堰,以及带有或不带有存储单元的设施。所有这些元素的空间分布和属性都会影响系统特征和排水性能。直到今天,人们很少在非特定案例的方法中分析此类特征的影响。在这项研究中,通过定义代表不同特征的系统组,对 250 个虚拟合流制排水系统进行了分析。该集合是使用案例生成器(CSG)的进一步开发创建的,CSG 是一种用于自动生成分支排水系统的工具。使用基于水动力模拟的性能指标来评估合流制污水溢流和洪水。对系统特征的分析,如本文所述,有助于研究人员理解一致性,并帮助从业者设计合流制排水系统。例如,人们发现,对减排有积极影响的特征通常对洪水避免有负面影响,反之亦然。