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Modelling approaches for pipe inclination effect on deposition limit velocity of settling slurry flow

机译:管道倾斜效应的建模方法对沉降浆料流动的沉积极限速度

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The deposition velocity is an important operation parameter in hydraulic transport of solid particles in pipelines. It represents flow velocity at which transported particles start to settle out at the bottom of the pipe and are no longer transported. A number of predictive models has been developed to determine this threshold velocity for slurry flows of different solids fractions (fractions of different grain size and density). Most of the models consider flow in a horizontal pipe only, modelling approaches for inclined flows are extremely scarce due partially to a lack of experimental information about the effect of pipe inclination on the slurry flow pattern and behaviour. We survey different approaches to modelling of particle deposition in flowing slurry and discuss mechanisms on which deposition-limit models are based. Furthermore, we analyse possibilities to incorporate the effect of flow inclination into the predictive models and select the most appropriate ones based on their ability to modify the modelled deposition mechanisms to conditions associated with the flow inclination. A usefulness of the selected modelling approaches and their modifications are demonstrated by comparing model predictions with experimental results for inclined slurry flows from our own laboratory and from the literature.
机译:沉积速度是管道中固体颗粒的液压传输中的重要操作参数。它表示输送粒子开始沉降在管道底部并且不再运输的流速。已经开发了许多预测模型来确定不同固体馏分的浆料流(不同晶粒尺寸和密度的级分)的浆料流动的该阈值速度。大多数模型仅考虑在水平管道中的流动,倾斜流动的建模方法由于缺乏关于管道倾斜对浆料流动模式和行为的影响而缺乏的实验信息。我们调查了流动浆料中粒子沉积建模的不同方法,并讨论了沉积限制模型的机制。此外,我们分析了将流量倾斜效果的可能性分析到预测模型中,并基于它们将建模的沉积机构修改为与流动倾斜相关的条件来选择最合适的能力。通过将模型预测与来自我们自己的实验室和文献的倾斜浆料流动的实验结果进行比较,证明了所选建模方法的有用性及其修改。

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