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DNS investigation of the dynamical behaviour of trailing vortices in unbaffled stirred vessels at transitional Reynolds numbers

机译:过渡雷诺数下无挡板搅拌容器中尾涡的动力学行为的DNs研究

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摘要

Flow in an unbaffled stirred vessel agitated by a four-bladed radial impeller is investigated by using direct numerical simulations at Re = 320 and 1600. We observe fluctuations in the power consumption with a peak frequency at ca. three times the impeller rotational speed for both Reynolds numbers. It is discovered that these fluctuations are associated with a periodic event in the wake of the blades, which involves alternating growth and decay of the upper and lower cores of the trailing vortex pair as well as up-and-down swinging motion of the radial jet. Moreover, the phase relation between the wakes of the different blades is examined in detail. Further studies using fractal-shaped blades show that the exact blade shape does not have a strong influence on this phenomenon. However, the wake interaction between the blades, hence the number of blades, has a direct influence on the unsteadiness of trailing vortices.
机译:通过在Re = 320和1600处使用直接数值模拟,研究了由四叶片径向叶轮搅动的无挡板搅拌容器中的流量。我们观察到功率消耗的波动,峰值频率为ca。两个雷诺数的叶轮转速均为三倍。发现这些波动与叶片尾流中的周期性事件有关,周期性事件涉及尾涡对的上下芯的交替生长和衰减以及径向射流的上下摆动运动。 。此外,详细检查了不同叶片的尾流之间的相位关系。使用分形叶片的进一步研究表明,确切的叶片形状对这种现象没有很大的影响。但是,叶片之间的尾流相互作用,进而是叶片的数量,直接影响尾随涡流的不稳定性。

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