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Solids distribution and rising velocity of buoyant solid particles in a vessel stirred with multiple impellers

机译:多个叶轮搅拌的容器中固体分布和浮力固体颗粒的上升速度

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The distribution of buoyant solid particles in agitated suspensions has been studied. The investigation was carried out in a baffled vessel characterised by an aspect ratio equal to four and stirred with four radial impellers. Dilute suspensions of single-sized spherical particles of expanded polystyrene (density equal to 90.7 kg/m(3)) in water were used. Solid concentration was measured with a non-intrusive optical technique. Measurements were performed along the axis of the reactor to obtain steady-state vertical profiles (that increase from the vessel base to the top) as well as at fixed elevations to determine their transient after a pulse of solids injected at the bottom. Both the steady-state profiles and the transient concentration curves were interpreted in terms of the axial dispersion model with sedimentation. By data treatment the rising velocity in the agitated system could be determined, which proved to be significantly smaller than the rising velocity in a still liquid. The ratio of these two velocities is in reasonable agreement with a correlation of the ratio of the settling velocities for heavy particles with the ratio of the Kolmogorov microscale to particle diameter established in the past. (c) 2008 Elsevier Ltd. All rights reserved.
机译:已经研究了浮性固体颗粒在搅拌悬浮液中的分布。研究是在特征在于长宽比等于4的带挡板的容器中进行的,并用四个径向叶轮搅拌。使用膨胀的聚苯乙烯单密度球形颗粒(密度等于90.7 kg / m(3))在水中的稀悬液。用非侵入式光学技术测量固体浓度。沿着反应器的轴进行测量以获得稳态的垂直轮廓(从容器底部到顶部的垂直轮廓)以及在固定的高度处确定在底部注入固体脉冲后的瞬态。稳态分布图和瞬态浓度曲线均根据具有沉降的轴向扩散模型进行了解释。通过数据处理,可以确定搅拌系统中的上升速度,事实证明该速度明显小于静止液体中的上升速度。这两个速度的比率与重颗粒沉降速度的比率与过去确定的Kolmogorov微米级与粒径的比率之间的相关性合理地一致。 (c)2008 Elsevier Ltd.保留所有权利。

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