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Experimental Study on Sand Transport Characteristics in Horizontal and Inclined Two-Phase Solid-Liquid Pipe Flow

机译:水平和倾斜两相固液管流中输沙特性的实验研究

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An experimental investigation on the hydraulic transport of sand particles in pipelines is presented in both horizontal and 30 degrees upward inclined orientations. The pipe, with an internal diameter of 0.0254 m, had sand transported in various water superficial velocities at low and high sand concentrations [0.1%-10% volume-to-volume ratio (v/v)]. Sand particles were polydisperse (144-250 mu m) with a d(95) of 210 mu m. The minimum transport condition (MTC) was determined by means of video recordings and pressure gradient (PG) measurements. MTC and PG were observed to increase with increase in sand concentration and mixture velocity. At high sand concentrations, there was a decline in PG with decrease in flow velocity until a minimum is reached around the MTC. The MTC at which this occurs is different in the two pipe orientations. Based on a previously reported dimensionless relationship, a correlation was derived now including the effect of pipe inclination using extensive literature data in addition to the current. The effect of key flow, geometric, and particle parameters were adequately captured in the improved closure relationship for sand minimum transport conditions in pipes. (C) 2019 American Society of Civil Engineers.
机译:在水平方向和向上30度倾斜的方向上进行了管道中砂粒水力输送的实验研究。内径为0.0254 m的管道在低和高沙浓度[0.1%-10%体积体积比(v / v)]下以各种水表层速度运输了沙子。沙粒呈d(95)为210微米的多分散性(144-250微米)。通过视频记录和压力梯度(PG)测量确定最小运输条件(MTC)。观察到MTC和PG随着砂浓度和混合速度的增加而增加。在高砂浓度下,PG随流速降低而下降,直到在MTC附近达到最小值。发生这种情况的MTC在两个管道方向上都不同。基于以前报告的无量纲关系,现在可以使用大量文献数据得出相关性,其中包括管道倾斜的影响。对于管道中最小的沙子运输条件,在改善的封闭关系中可以充分捕获关键流,几何参数和颗粒参数的影响。 (C)2019美国土木工程师学会。

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