Frehmann T, Mietzel T, Kutzner R, Spengler B, Geiger W F
Emschergenossenschaft/Lippeverband, Kronprinzenstr 24, 45128 Essen, Germany.
Water Sci Technol. 2004;50(11):89-96.
A special structure of combined sewer overflow tanks is the inline storage sewer with downstream discharge (SKU). This layout has the advantage that besides the sewer system, no other structures are required for storm water treatment. Consequently only very little space is required and compared to combined sewer overflow tanks, there is an enormous potential in reducing costs during construction. To investigate the efficiency of an inline storage sewer, a monitoring station was established in Dortmund-Scharnhorst, Germany. The monitoring station was in operation for a period of 2.5 years. Within this period water samples were taken during a total of 20 discharge events. Besides the complete hydraulic data collection, seven water samplers took more than 5,000 water samples during dry and wet weather. This adds up to a total of more than 20,000 individual lab analyses. The average of the total efficiency for the SKU-West is 86%. 29% of this efficiency can be attributed to the throttle flow. The remaining 57% can be divided into a part of 48% that can be attributed to the process storage and 9% that can be attributed to sedimentation and erosion process.
合流制溢流池的一种特殊结构是带有下游排放的在线存储下水道(SKU)。这种布局的优点是,除了下水道系统外,雨水处理不需要其他结构。因此,只需要很少的空间,与合流制溢流池相比,在建设过程中降低成本的潜力巨大。为了研究在线存储下水道的效率,在德国多特蒙德-沙恩霍斯特建立了一个监测站。该监测站运行了2.5年。在此期间,总共在20次排放事件中采集了水样。除了完整的水力数据收集外,七个水样采集器在干燥和潮湿天气期间采集了超过5000个水样。这总共加起来有超过20000次单独的实验室分析。SKU-West的总效率平均值为86%。其中29%的效率可归因于节流流量。其余的57%可分为48%可归因于过程存储和9%可归因于沉淀和侵蚀过程的部分。