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Pumping of dewatered sludge: Slipping or flowing behavior?

机译:脱水污泥的泵送:打滑还是流动?

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The current design of dewatered sludge pumping devices is based on material flowing properties assuming it is a non-Newtonian highly viscous fluid. From rheological analysis, we first clearly established that current rheological models are no longer valid for this purpose. By using parallel-plates geometry, it was shown that the apparent behavior is dependent on the gap between the plates: results are less representative of sludge intrinsic properties that of the interface interactions between sludge and rotating surfaces. By reproducing dewatered sludge pipe flow at lab-scale, it was highlighted that sludge does not flow but slips along the wall of the pipe. The existence of a thin lubrication layer is suspected and the behavior law to be considered is a slippery law, similar to a Norton-Hoff model. (C) 2016 Elsevier B.V. All rights reserved.
机译:脱水污泥泵送设备的当前设计基于物料流动特性,假设它是非牛顿高粘性流体。通过流变分析,我们首先明确地确定了当前的流变模型不再对此有效。通过使用平行板的几何形状,表明表观行为取决于板之间的间隙:结果较少代表污泥的内在特性,而不能代表污泥和旋转表面之间的界面相互作用。通过在实验室规模上再生脱水污泥管道的流量,可以看出污泥不会流动,而是沿着管道壁滑动。怀疑存在薄的润滑层,与Norton-Hoff模型类似,要考虑的行为定律是滑定律。 (C)2016 Elsevier B.V.保留所有权利。

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