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Irrigation sedimentation tanks in the bed of the pumping station inlet channels

机译:泵站入口通道床中的灌溉沉积罐

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The article analyzes the dynamics of channel processes in the irrigation pumping station inlet channels. The field studies of hydraulic and alluvial sediment regimes in the supply channels of pumping stations are analyzed and summarized. The studies of supply channel water flow under conditions of extremely high turbidity of the flow and variability of the morphometric characteristics of the channel are presented. The conditions under which the Saint-Venant equations satisfactorily describe the channel flows in the bed of the supply channels are given. Saint-Venant's twodimensional equations were numerically implemented using an explicit finite-difference scheme. In addition, the results of calculations of the flow field in the supply channels are presented. According to the results of numerical studies, the width of the sedimentation tank was taken to be equal to the design width of the channel, and the speed of water flow in it was 0.25 m/s. The length of the sedimentation tank, ensuring the retention of sediments of the finest fraction (0.05 mm in diameter), was 1042 m. The siltation time of the sedimentation tank can be reduced by 15…20% and amount to about 15 months, considering the unevenness of the velocity distribution diagram in the horizontal plane and the trapezoidal crosssection of the clarifier. Nevertheless, the arrangement of two parallel chambers of the sedimentation tanks makes it possible to be stable for a sufficiently long time.
机译:本文分析了灌溉泵站入口通道中通道过程的动态。分析并综述了泵站供应通道中液压和冲积沉积物的现场研究。提出了在流量极高浊度的条件下供应通道水流的研究和通道的不同形态特征的可变性。给出了圣文鸣方程令人满意地描述供应通道床中的通道流的条件。使用明确的有限差分方案进行数值执行圣文尼提的二维方程。另外,呈现了供电通道中的流场的计算结果。根据数值研究的结果,沉淀槽的宽度被采用等于通道的设计宽度,并且其流动速度为0.25米/秒。沉淀罐的长度,确保保持最优点(直径为0.05mm)的沉积物,为1042米。考虑到水平平面中的速度分布图和澄清器的梯形横截面,可以将沉积罐的淤积时间减少15 ... 20%和约15个月。然而,沉淀槽的两个平行腔室的布置使得可以足够长的时间稳定。

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