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实时控制、雨水渗透和尿液分离以最小化对河流影响的潜力:下水道网络、泵站、压力管道和污水处理厂的动态长期模拟。

Potentials of real time control, stormwater infiltration and urine separation to minimize river impacts: dynamic long term simulation of sewer network, pumping stations, pressure pipes and waste water treatment plant.

作者信息

Peters C, Keller S, Sieker H, Jekel M

机构信息

Ingenieurgesellschaft Prof. Dr. Sieker mbH, Rennbahnallee 109A, Hoppegarten, Germany.

出版信息

Water Sci Technol. 2007;56(10):1-10. doi: 10.2166/wst.2007.739.

Abstract

River Panke (Berlin, Germany) suffers from hydraulic peak loads and pollutant loads from separate sewers and combined sewer overflows (CSOs). Pumping the wastewater through long pressure pipes causes extreme peak loads to the wastewater treatment plant (WWTP) during stormwater events. In order to find a good solution, it is essential not to decide on one approach at the beginning, but to evaluate a number of different approaches. For this reason, an integrated simulation study is carried out, assessing the potentials of real time control (RTC), stormwater infiltration, storage and urine separation. Criteria for the assessment are derived and multi-criteria analysis is applied. Despite spatial limitations, infiltration has the highest potential and is very effective with respect to both overflows and the WWTP. Due to a high percentage of separate systems, urine separation has a similar potential and causes the strongest benefits at the WWTP. Unconventional control strategies can lead to significant improvement (comparable to infiltrating the water from approximately 10% of the sealed area).

摘要

德国柏林的潘克河面临着来自分流制下水道和合流制下水道溢流(CSO)的水力峰值负荷和污染物负荷。在暴雨事件期间,通过长压力管道泵送废水会给污水处理厂(WWTP)带来极高的峰值负荷。为了找到一个好的解决方案,一开始不要只选定一种方法,而是评估多种不同的方法,这一点至关重要。因此,开展了一项综合模拟研究,评估实时控制(RTC)、雨水渗透、储存和尿液分离的潜力。得出了评估标准并应用了多标准分析。尽管存在空间限制,但渗透具有最大潜力,在减少溢流和污水处理厂方面都非常有效。由于分流制系统占比很高,尿液分离具有类似的潜力,并且在污水处理厂产生的效益最为显著。非常规控制策略可带来显著改善(相当于从约10%的密封区域渗透雨水)。

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