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On the separation of a suspension in a tube centrifuge: critical comments on theoretical models and experimental verifications

机译:关于管式离心机中悬浮液的分离:对理论模型和实验验证的批评

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We consider the batch centrifugal separation of a suspension of "heavy" particles in a cylindrical tube which rotates about an axis perpendicular to the axis of the tube. The theoretical analysis by means of a kinematic approximation covers two models: (1) the "one-dimensional", which assumes that the particles settle along lines parallel to the sidewalls of the tube and sediment on the outer wall, and (2) the "two-dimensional", which assumes that the particles settle along the centrifugal-field lines and sediment on both sidewalls and outer wall. A comparison shows that both models produce similarly simple formulas for the motion of the interface and the volume fraction as functions of time. However, the "two-dimensional" model is recommended for use because its results and insights are more reliable from both mathematical and physical considerations, and provide a more acceptable interpretation to recent experimental data,.
机译:我们考虑圆柱形管中“重”颗粒悬浮液的分批离心分离,该圆柱形管绕垂直于管轴线的轴线旋转。通过运动学近似的理论分析涵盖两个模型:(1)“一维”,它假定颗粒沿着平行于管子侧壁的线沉降,并沉积在外壁上,(2) “二维”,它假定粒子沿离心力场沉降,并在侧壁和外壁上沉积。比较表明,两个模型针对界面的运动和体积分数随时间的变化产生了相似的简单公式。但是,建议使用“二维”模型,因为从数学和物理方面考虑,其结果和见解都更可靠,并且可以为最近的实验数据提供更可接受的解释。

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