首页> 外文期刊>Brazilian journal of chemical engineering >PREDICTION OF COAL SLURRY PIPELINE TRANSPORTATION GRADING REDUCTION AND ITS INFLUENCE ON PIPE TRANSPORTATION PARAMETERS
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PREDICTION OF COAL SLURRY PIPELINE TRANSPORTATION GRADING REDUCTION AND ITS INFLUENCE ON PIPE TRANSPORTATION PARAMETERS

机译:煤泥管道输送分级降低的预测及其对管道输送参数的影响

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Coal slurry pipe, being a new type of energy transportation mode, changes of the particle composition and the effect on other parameters are worth studying. Comparison of ring tube test measured data and batch grinding model simulation data shows that batch grinding model can predict the coal particle gradation to a certain extent. The effect of collision and wear of overcurrent components in the centrifugal pump, friction and collision between particles and piping and piping accessories, and initial particle size distribution during hydraulic conveying were also investigated by laboratory studies. Meanwhile, the effect of particle composition change on slurry viscosity, hydraulic resistance and minimum resistance critical velocity was studied based on the experimental data. The experimental and theoretical analysis indicates that the change of slurry particle composition can lead to the change of viscosity, resistance and minimum resistance critical velocity of the slurry. Moreover, based on the previous studies, the calculation model of minimum resistance critical velocity of coal slurry is proposed.
机译:煤泥管道作为一种新型的能量传输方式,其颗粒组成的变化以及对其他参数的影响值得研究。环管试验实测数据与批量磨削模型仿真数据的比较表明,批量磨削模型可以在一定程度上预测煤粉的级配。还通过实验室研究研究了离心泵中过流部件的碰撞和磨损,颗粒与管道和管道配件之间的摩擦和碰撞以及液压输送过程中初始粒度分布的影响。同时,根据实验数据,研究了颗粒组成的变化对泥浆粘度,水力阻力和最小阻力临界速度的影响。实验和理论分析表明,浆料颗粒组成的变化可导致浆料粘度,电阻和最小电阻临界速度的变化。在此基础上,提出了煤泥最小阻力临界速度的计算模型。

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