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Sand suspension deposition in horizontal low-concentration slurry pipe flows

机译:水平低浓度泥浆管流中的悬浮砂沉积

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Detailed observations in a slurry transparent horizontal loop of the sand transport deposition regime, ranging from fully suspended particles to bed motion as a train of dunes, are reported. Deposition, or scouring, is known as a deleterious sand transport regime in view of pipeline erosion. The two velocity thresholds limiting the deposition regime: the critical sand-carrying velocity threshold or deposition threshold below which particles begin to deposit, and the minimum conveying velocity threshold, below which particles cannot be suspended anymore and self-organize into dunes, span about 20% of the bulk velocity such that detection of the beginning of the deposition provides a margin of safety before accumulation risks. Observed moving, snaking structures are likely to be the actors of the reckoned erosion on pipelines bottom in this scouring regime. From a digital treatment of the videos of the deposited particles, the deposition regime presents a salient characteristic: a consistent increase in the number of detected entities as the bulk velocity decreases down to a brutal trend inversion once all particles are eventually deposited and self-organise and hide into dunes. The findings are, in a first approximation, independent of the sand size and concentration, for the cases considered, and provide a basis for the design of monitoring methods for systematic detection of the deposition regime.
机译:据报道,在泥浆透明的水平循环中,沙的运移沉积方式有详细的观察结果,从完全悬浮的颗粒到沙丘运动的床层运动。考虑到管道腐蚀,沉积或冲刷被称为有害的砂运输方式。限制沉积方式的两个速度阈值:临界沙运速度阈值或沉积阈值(低于该阈值开始沉积颗粒)和最小输送速度阈值(低于该阈值,颗粒不再悬浮并自组织为沙丘),跨度约为20堆积速度的%,使得对沉积开始的检测提供了在积累风险之前的安全裕度。在这种冲刷状态下,观察到的移动,弯曲的结构很可能是管道底部腐蚀的原因。通过对沉积颗粒的视频进行数字处理,沉积机制呈现出显着的特征:一旦最终所有颗粒都沉积并自组织,随着体速度降低到残酷的趋势反转,检测到的实体数量将持续增加。躲进沙丘对于所考虑的情况,这些发现大致上与沙子的大小和浓度无关,并且为设计用于系统检测沉积状态的监测方法提供了基础。

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