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Resistance Characteristics of Pressure Letdown in Dense-Phase Pneumatic Conveying

机译:密相气力输送中的泄压阻力特性

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In order to investigate the flow behavior of pressure letdown in dense-phase pneumatic conveying at high pressure, experiments using pulverized coal were carried out at a conveying facility with pressures up to 3.0 MPa. The effects of the pressure letdown structure, operation parameter and particle size on the flow characteristics of the pressure letdown were studied. Empirical correlation of pressure drop through the pressure letdown was derived using the Barth additional theory and experimental results. The results show that the solid loading ratio and gas velocity have a stronger effect on the pressure drop through the pressure letdown. The flow characteristics of gas-solid two-phase flow across the different sections of the pressure letdown were characterized and examined. Pressure drops rise with increasing particle size or pipe diameter ratio at similar operating parameters. The empirical model of the pressure drop through the pressure letdown was derived and the predicted values agree well with experimental results, with relative deviations less than +/- 10%. The flow characteristics of the pressure letdown offer the theoretical support for design, control and operation of dense-phase pneumatic conveying at high pressure.
机译:为了研究高压下密相气力输送中压力降低的流动行为,在压力高达3.0 MPa的输送设备上进行了粉煤试验。研究了泄压结构,操作参数和粒径对泄压流动特性的影响。使用Barth附加理论和实验结果得出了通过压力降低而产生的压力降的经验相关性。结果表明,固含量比和气体流速对通过降压的压降影响更大。表征并检查了气固两相流通过降压装置不同部分的流动特性。在相似的操作参数下,压降会随着粒径或管道直径比的增加而增加。得出了通过泄压的压降的经验模型,预测值与实验结果非常吻合,相对偏差小于+/- 10%。泄压的流动特性为高压下的密相气力输送的设计,控制和操作提供了理论支持。

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