Effect of rotation direction of helical-ribbon agitator on circulation of high viscous batch

J. Skočilas, Mehmet Ayas, B. Skocilasova, T. Jirout
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引用次数: 1

Abstract

The article deals with the investigation of the homogenization process of high viscous liquid in a mixing tank. High viscous liquids are characterized by a high value of dynamics viscosity above value 10 Pa.s usually caused by Non- Newtonian behavior. There are lot of aspects that have a positive or negative effect on the homogenization efficiency, e.g. type of impellers, shape of vessel or spatial arrangement of the inserts in the vessel. The direction of the rotation of the proper impellers also affects the efficiency of the homogenization process. Correct high viscous liquid flow in mixing tank must be ensured by several specific types of impellers. The vertical direction of the liquid loop is recommended for homogenization process in cylindrical vessels. The simulations of the homogenization process of high viscous liquid in the cylindrical vessel have been performed. Two types of impellers were used. The axial pumping impellers were placed near the axis of vessel. The double-helical ribbon impeller ensured the liquid vertical movement near the wall. It has been found that the direction of the impeller rotation has a crucial effect on the homogenization effect, as expected. Simulations have been performed in ANSYS Fluent software. The liquid flow fields generated by clockwise (CW) and counter-clockwise (CCW) direction of the impeller’s rotation were investigated and compared.The article deals with the investigation of the homogenization process of high viscous liquid in a mixing tank. High viscous liquids are characterized by a high value of dynamics viscosity above value 10 Pa.s usually caused by Non- Newtonian behavior. There are lot of aspects that have a positive or negative effect on the homogenization efficiency, e.g. type of impellers, shape of vessel or spatial arrangement of the inserts in the vessel. The direction of the rotation of the proper impellers also affects the efficiency of the homogenization process. Correct high viscous liquid flow in mixing tank must be ensured by several specific types of impellers. The vertical direction of the liquid loop is recommended for homogenization process in cylindrical vessels. The simulations of the homogenization process of high viscous liquid in the cylindrical vessel have been performed. Two types of impellers were used. The axial pumping impellers were placed near the axis of vessel. The double-helical ribbon impeller e...
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螺旋带式搅拌器旋转方向对高粘性物料循环的影响
本文研究了高粘性液体在混合槽内的均匀化过程。高粘性液体的特点是其动态粘度值在10pa以上。通常是由非牛顿行为引起的。有许多方面对均质效率有积极或消极的影响,例如,叶轮的类型,容器的形状或容器内刀片的空间排列。适当的叶轮旋转方向也影响均匀化过程的效率。正确的高粘性液体在混合槽内流动必须通过几种特定类型的叶轮来保证。对于圆柱形容器中的均质过程,建议采用垂直方向的液体回路。对高粘性液体在圆柱形容器内的均匀化过程进行了模拟。使用了两种类型的叶轮。轴向泵叶轮布置在靠近容器轴的位置。双螺旋带状叶轮保证了液体在壁面附近的垂直运动。结果表明,叶轮的旋转方向对均匀化效果有至关重要的影响。在ANSYS Fluent软件中进行了仿真。对叶轮顺时针方向和逆时针方向旋转时产生的液体流场进行了研究和比较。本文研究了高粘性液体在混合槽内的均匀化过程。高粘性液体的特点是其动态粘度值在10pa以上。通常是由非牛顿行为引起的。有许多方面对均质效率有积极或消极的影响,例如,叶轮的类型,容器的形状或容器内刀片的空间排列。适当的叶轮旋转方向也影响均匀化过程的效率。正确的高粘性液体在混合槽内流动必须通过几种特定类型的叶轮来保证。对于圆柱形容器中的均质过程,建议采用垂直方向的液体回路。对高粘性液体在圆柱形容器内的均匀化过程进行了模拟。使用了两种类型的叶轮。轴向泵叶轮布置在靠近容器轴的位置。双螺旋带式叶轮…
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