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Experimental analysis of the hydrass flushing gate and laboratory validation of flush propagation modelling

机译:水龙头冲洗门的实验分析和冲洗传播模型的实验室验证

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摘要

Periodical cleansing operations prove necessary inside sewer systems in order to reduce hydraulic and environmental problems owing to the accumulation of deposits on the bottom of channels. For this objective, new effective hydraulic devices based on the scouring effects of flushing waves have been recently set up and adopted in many sewer systems. In this paper, the results of an experimental and numerical investigation on the hydraulic operation of the Hydrass flushing gate are reported. The experimental analysis has been carried out using a laboratory channel and a reduced scale model of the gate, in order to characterise the flushing waves generated by the device. The numerical analysis has been performed using a mathematical model specifically developed for the simulation of flushing waves inside sewer channels. The comparison of numerical results and experimental data has allowed evaluation of the applicability under unsteady flow conditions of the outflow relations determined for the Hydrass gate in a previous investigation under steady flow conditions.
机译:事实证明,在下水道系统中需要定期进行清洁操作,以减少由于通道底部沉积物堆积而造成的水力和环境问题。为了这个目标,最近已经建立了基于冲洗波的冲刷作用的新型有效液压装置,并已在许多下水道系统中采用。本文报道了对Hydrass冲水闸的水力操作进行实验和数值研究的结果。为了分析设备产生的冲洗波,已经使用实验室通道和缩小比例的闸门模型进行了实验分析。使用专门开发用于模拟下水道内冲洗波的数学模型进行了数值分析。数值结果和实验数据的比较允许在先前的研究中在稳态流动条件下对在非稳态流动条件下为Hydrass门确定的流出关系确定的适用性进行评估。

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