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Jamming/flowing transition of non-Brownian particles suspended in a iso-density fluid flowing in a 2D rectangular duct

机译:悬浮在二维矩形管道中的等密度流体中的非布朗粒子的干扰/流动转变

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We present the results of an experimental study on the jamming/flowing transition. A suspension of neutrally buoyant large particles flows in an horizontal rectangular duct, where an artificial restriction triggers jamming. We show that the avalanche distribution size is exponential, that is memoryless. We further demonstrate that the avalanche size diverges when the restriction size approaches a critical value and that this divergence is well described by a power law. The parameters (critical opening size and divergence velocity) are compared to literature values and show a strong similarity with others systems. Another result of this paper is the study of the influence of the particle morphology. We show that, for a moderate restriction size, the dead-zone formed right upstream of the restriction is larger for angular particles but, paradoxically, that the avalanche size is larger for polyhedra compared to spheres by at least one order of magnitude.
机译:我们提出了关于堵塞/流动过渡的实验研究结果。中性浮力大颗粒的悬浮液在水平矩形管道中流动,在此处人工限制会触发堵塞。我们显示雪崩分布的大小是指数的,即无记忆。我们进一步证明,当限制大小接近临界值时,雪崩大小会发散,并且幂律很好地描述了这种发散。将参数(临界开口尺寸和发散速度)与文献值进行比较,并显示出与其他系统的强烈相似性。本文的另一个结果是研究粒子形态的影响。我们表明,对于适度的限制尺寸,角形粒子正好在限制的上游形成的死区更大,但是,矛盾的是,与球形相比,多面体的雪崩尺寸要大至少一个数量级。

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