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Dimensionless Approach for the Design of Flushing Gates in Sewer Channels

机译:下水道冲水闸门设计的无量纲方法

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The various hydraulic and environmental problems related to the accumulation of solids have recently drawn increasingly attention to deposits in the management of sewer systems. Among the mechanical and hydraulic devices used for deposit removal, hydraulic flushing gates have proved to be a cost-effective solution and have been adopted in several sewer networks. This paper reports the results of an investigation on the scouring performance of flushing waves produced by hydraulic flushing gates. A numerical model based on the De Saint Venant-Exner equations in dimensionless form was validated by using data derived from laboratory experiments and was then utilized in this investigation. Simulations were carried out considering various values of the dimensionless parameters involved in the analysis, in order to obtain indications for the design and positioning of flushing devices in sewer channels. The problem of optimal flushing frequency was also investigated.
机译:最近,与固体堆积有关的各种水力和环境问题已越来越引起人们对下水道系统管理中沉积物的关注。在用于清除沉积物的机械和液压装置中,水力冲洗闸门已被证明是一种经济高效的解决方案,并已在多个下水道网络中采用。本文报告了对水力冲洗闸门产生的冲洗波的冲刷性能的调查结果。通过使用来自实验室实验的数据验证了基于De Saint Venant-Exner方程的无量纲形式的数值模型,然后将其用于本研究。考虑到分析中涉及的无量纲参数的各种值进行了模拟,以便获得有关下水道中冲洗设备的设计和位置的指示。还研究了最佳冲洗频率的问题。

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