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首页> 外文期刊>The Open Petroleum Engineering Journal >Research and Simulation on Solids-Conveyance Law of the Shale Shaker
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Research and Simulation on Solids-Conveyance Law of the Shale Shaker

机译:页岩振动筛固体输送规律的研究与仿真

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摘要

This work presents a numerical study on the solid particles conveyance behavior of a shale shaker used in oil production. The particle flow is simulated by discrete element method based on Soft-Sphere model and Hertz-Mindlin contact model. Two important factors, conveyance velocity and filter ratio, are selected to describe the working performance of shale shaker. The influences on that of three important working parameters, vibration frequency, excitation directions, screen slope, are studied. The results show that conveyance velocity is approximately linearly related to the three factors. In addition, particle size has a great influence on conveyance velocity as well. Filter ratio decreases with the increase in vibration frequency, while the two other factors have little influence on it. So appropriately increasing vibration frequency on the premise of satisfying the structural strength of shale shaker can not only increase movement speed, but also reduce the filtering ratio.
机译:这项工作提出了对石油生产中使用的泥浆振动筛固体颗粒输送行为的数值研究。基于Soft-Sphere模型和Hertz-Mindlin接触模型,采用离散元法模拟了颗粒流。选择两个重要因素,即输送速度和过滤比来描述泥浆振动筛的工作性能。研究了三个重要工作参数对振动频率,激励方向,屏幕斜率的影响。结果表明,输送速度与三个因素大致成线性关系。另外,粒径对输送速度也有很大的影响。滤波比随振动频率的增加而减小,而其他两个因素对其影响很小。因此,在满足页岩振动筛结构强度的前提下,适当增加振动频率,不仅可以提高运动速度,而且可以降低过滤率。

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