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Verification and Application of Design Model for Settling Slurry Transport in Pipes

机译:管道泥浆输送沉降设计模型的验证与应用

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The application of most empirical correlations for hydraulic gradient of settling slurry are generally limited to the experimental region in which four different flow patterns can be observed: stationary bed flow, saltation flow, heterogeneous flow, and pseudo-homogeneous flow. Therefore, the reliable design model independent on not only the flow regimes but also pipe diameter is imperative for pipeline engineers.By using the condition factor introduced by Sato et al., which represents the situation of solids movement in a pipe and calculated from the concentration profiles, an equation was derived for hydraulic gradient of settling slurry flow in horizontal circular pipes. With the slurry database, it was also assured that the equation was valid for practical pipeline design under the condition of settling slurry flow. Hence, the effect of pipe diameter and concentration on the Specific Energy Consumption and pipeline design procedure were discussed based on the analytical results.
机译:对于沉降浆液的水力梯度,大多数经验相关性的应用通常仅限于可以观察到四种不同流型的实验区域:固定床流,盐分流,非均质流和拟均质流。因此,对于管道工程师来说,不仅要考虑流态而且要考虑管径的可靠设计模型是必不可少的。通过使用Sato等人介绍的条件因子,该条件因子代表了管道中固体的运动情况并根据浓度计算得出根据剖面图,导出了用于沉降水平圆形管道中泥浆流的水力梯度的方程式。通过泥浆数据库,还可以确保该方程对于在泥浆流沉降的条件下的实际管道设计有效。因此,基于分析结果,讨论了管径和浓度对单位能耗和管道设计程序的影响。

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