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Surface vortex formation and free surface deformation in an unbaffled vessel stirred by on-axis and eccentric impellers

机译:在轴上和偏心叶轮搅拌的未粘合血管中的表面涡旋形成和自由表面变形

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摘要

The present study investigated the mechanism of surface vortex formation and free surface deformation in an unbaffled stirred vessel with on-axis and eccentric impellers having four paddle blades. To shed light on the mechanism of surface vortex formation and free surface deformation, we conducted experiments and numerical simulation in an unbaffled cylindrical stirred vessel. The surface vortex was found to be small in the eccentrically stirred vessel due to a vertical flow caused by the interaction between the discharged flow and sidewall. In the case of on-axis impeller, low-pressure zones at the rear faces of blades pulled the free surface, that causes the air entrainment. These phenomena could be seen in both the experimental observation and numerical simulation. The three types of transient free surface deformation were observed: local vortex formation due to the low-pressure zone mentioned above, entire rotation of free-surface elevation due to the macro-instabilities, and local elevation and deflection due to trailing vortices.
机译:本研究研究了具有具有四个桨叶叶片的轴上和偏心叶片的未置字的搅拌容器中的表面涡旋形成和自由表面变形的机理。在表面涡旋形成和自由表面变形的机制上阐明,我们在不合成的圆柱搅拌容器中进行了实验和数值模拟。由于由排出的流动和侧壁之间的相互作用引起的垂直流动,在偏心搅拌容器中发现表面涡流是小的。在轴上叶轮的情况下,叶片后面的低压区域拉动自由表面,使空气夹带。这些现象可以在实验观察和数值模拟中看到。观察到三种类型的自由表面变形:由于上述低压区引起的局部涡旋形成,由于宏观稳定性,自由表面升高的整个旋转,以及由于尾部涡流引起的局部高度和偏转。

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