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Dynamics of Single Rising Bubbles in Neutrally Buoyant Liquid-Solid Suspensions

机译:中性浮力液体悬浮液中单个上升气泡的动力学

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摘要

We experimentally investigate the effect of particles on the dynamics of a gas bubble rising in a liquid-solid suspension while the particles are equally sized and neutrally buoyant. Using the Stokes number as a universal scale, we show that when a bubble rises through a suspension characterized by a low Stokes number (in our case, small particles), it will hardly collide with the particles and will experience the suspension as a pseudoclear liquid. On the other hand, when the Stokes number is high (large particles), the high particle inertia leads to direct collisions with the bubble. In that case, Newton’s collision rule applies, and direct exchange of momentum and energy between the bubble and the particles occurs. We present a simple theory that describes the underlying mechanism determining the terminal bubble velocity.
机译:我们通过实验研究了颗粒对液固悬浮液中气泡上升动力学的影响,同时颗粒大小均等且具有中性浮力。使用斯托克斯数作为通用标度,我们表明,当气泡通过以斯托克斯数低(在我们的情况下为小颗粒)为特征的悬浮液上升时,它几乎不会与颗粒发生碰撞,并且会以伪透明液体的形式经历悬浮液。另一方面,当斯托克斯数高(大粒子)时,高粒子惯性导致与气泡的直接碰撞。在这种情况下,牛顿的碰撞规则适用,气泡和粒子之间直接进行动量和能量交换。我们提出一个简单的理论,描述确定最终气泡速度的潜在机制。

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