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The evaluation of a density current experiment as a verification tool of a secondary clarifier model

机译:作为二次澄清池模型验证工具的密度电流实验评估

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The prediction of the spatial and temporal flow regime is important for the efficient design and operation of the settling tank. The impact of the gravity current has been investigated by the temperature difference or artificial glass particles. This experimental study is designed to obtain the steady state of stratified flow with the consideration of the heavy density flow. Two different approaches were performed at lab scale considering the hydraulic similarity. One is the investigation of a heavy density current of saline water intrusion. The characteristics of the internal hydraulics are monitored using Particle Image Velocimetry (PIV). As a result of the saline intrusion, the internal flow established a continual density stratification of 3-layers in steady state. The other is the movement of activated sludge from a sewage treatment plant. The video image is captured to analyze the behavior of activated sludge in the settling tank. The experiments with various inlet baffle conditions suggest that the hydraulic characteristics of the two experiments are significantly different. As the distance between the baffle and inlet point was decreased, significant strength of saline density currents in the bottom layer was observed. However, the strength of the velocity in the bottom density currents appeared to be the opposite in the case of the activated sludge. The reason for the slower density current in the bottom layer is associated with the compressibility of activated sludge characteristics. [References: 9]
机译:空间和时间流态的预测对于沉降池的有效设计和操作很重要。重力电流的影响已通过温差或人造玻璃颗粒进行了研究。该实验研究旨在获得考虑重密度流的分层流的稳态。考虑到水力相似性,在实验室规模下执行了两种不同的方法。一种是研究盐水侵入的高密度电流。内部液压系统的特性使用粒子图像测速(PIV)进行监控。由于盐水的侵入,内部流动在稳定状态下建立了3层的连续密度分层。另一个是来自污水处理厂的活性污泥的运动。捕获视频图像以分析沉淀池中活性污泥的行为。在各种进口挡板条件下进行的实验表明,这两个实验的水力特性明显不同。随着挡板和入口点之间的距离减小,在底层中观察到了明显的盐水密度电流强度。但是,在活性污泥的情况下,底部密度流中的速度强度似乎相反。底层中密度电流较慢的原因与活性污泥特性的可压缩性有关。 [参考:9]

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