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Design of self-cleansing sanitary sewer systems with the use of flushing devices

机译:使用冲洗装置设计自洁式下水道系统

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摘要

Many European countries tend to shift from constructing combined sewer systems to separate ones, in order to optimise wastewater treatment efficiency and reduce CSO impact on surface waters. An economic design minimises maintenance requirements by aiming at self-cleansing pipes. However, providing the necessary slopes for self-cleansing sanitary sewer pipes often is unfeasible in flat regions, resulting in an increased risk of loss of hydraulic capacity or blocking. To reduce these risks, flushing tanks can be installed in the sewer system. Where most other researchers contribute to a better understanding of the hydraulics of flushing, this paper rather tries to formulate a methodology to design and test flushing devices in sanitary sewer systems using standards and hydrodynamic simulations. Therefore, several aspects that require consideration when incorporating flushing devices into a sanitary sewer system are discussed. For instance, when flushing sanitary sewers the increase in discharge has to be explicitly considered. A Belgian case study is used to investigate the suitability of the developed methodology. Although the pipe slopes in the methodology are derived assuming uniform flow, the simulation results comply with it. Furthermore, pressurisation of the conduits due to multiple flushing waves remains within acceptable limits.
机译:为了优化废水处理效率并减少CSO对地表水的影响,许多欧洲国家倾向于从建造组合式下水道系统转向分离式下水道系统。经济的设计针对自清洁管道,从而最大限度地减少了维护要求。然而,在平坦区域中为自清洁卫生污水管提供必要的坡度通常是不可行的,从而导致水力损失或阻塞的风险增加。为了降低这些风险,可以在下水道系统中安装冲洗水箱。在大多数其他研究人员为更好地理解冲洗水力做出贡献的地方,本文宁愿尝试制定一种使用标准和流体动力学模拟方法设计和测试卫生污水系统中冲洗装置的方法。因此,讨论了将冲洗装置结合到下水道系统中时需要考虑的几个方面。例如,在冲洗下水道时,必须明确考虑排放量的增加。使用比利时的案例研究来研究所开发方法的适用性。尽管该方法中的管道坡度是在假定均匀流量的情况下得出的,但仿真结果符合该要求。此外,由于多次冲洗波而导致的导管的压力保持在可接受的范围内。

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