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Groundwater infiltration, surface water inflow and sewerage exfiltration considering hydrodynamic conditions in sewer systems

机译:考虑下水道系统水动力条件的地下水入渗,地表水流入和污水渗出

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Sewer systems are closely interlinked with groundwater and surface water. Due to leaks and regular openings in the sewer system (e.g. combined sewer overflow structures with sometimes reverse pressure conditions), groundwater infiltration and surface water inflow as well as exfiltration of sewage take place and cannot be avoided. In the paper a new hydrodynamic sewer network modelling approach will be presented, which includes - besides precipitation - hydrographs of groundwater and surface water as essential boundary conditions. The concept of the modelling approach and the models to describe the infiltration, inflow and exfiltration fluxes are described. The model application to the sewerage system of the City of Dresden during a flood event with complex conditions shows that the processes of infiltration, exfiltration and surface water inflows can be described with a higher reliability and accuracy, showing that surface water inflow causes a pronounced system reaction. Further, according to the simulation results, a high sensitivity of exfiltration rates on the in-sewer water levels and a relatively low influence of the dynamic conditions on the infiltration rates were found.
机译:下水道系统与地下水和地表水紧密相连。由于下水道系统中的泄漏和规则的开孔(例如有时带有反向压力条件的组合式下水道溢流结构),地下水渗入和地表水流入以及污水的渗出是无法避免的。在本文中,将提出一种新的水力下水道网络建模方法,该方法除了降水以外,还包括地下水和地表水的水位图作为基本边界条件。描述了建模方法的概念和描述渗透,流入和渗透通量的模型。在具有复杂条件的洪水事件中,对德累斯顿市污水处理系统的模型应用表明,渗入,渗出和地表水流入的过程可以用更高的可靠性和准确性来描述,表明地表水的流入导致了明显的系统反应。此外,根据模拟结果,发现渗出速率对污水中水位的敏感性高,并且动态条件对渗入速率的影响相对较低。

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