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VIBRATION DURING CENTRIFUCATION

机译:离心过程中的振动

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摘要

Vibration is of concern in many experiments. For example, low-frequency acceleration influences buoyancy-driven convection. If there are two fluid phases present, vibration can cause oscillation of the interface between them, thereby pumping the adjacent fluids. High frequency vibrations can be transmitted through the container walls to cause streaming of the fluid and, in addition, move second-phase particles relative to the fluid. There are several sources of vibration in centrifuges. Here, we are concerned with the experiment package on large centrifuges operating in the open atmosphere. We offer as an example our experience on the Clarkson centrifuge HIRE. A tube furnace was placed in a box, 30.5 cm X 30.5 cm X 25.4 cm, that was attached by a hinge to the centrifuge arm so as to maintain the net acceleration vector approximately aligned with the axis of the furnace. A triaxial accelerometer was placed within this 20 kg package. The attachment hinge was 1.65 m from the center of rotation. At accelerations from 2 to 5 g , vibration was observed mainly at 17 Hz in the direction of rotation, with a maximum amplitude at 5 g. This was most likely due to periodic vortex shedding that became locked-in to the mechanical resonance frequency (17 Hz) of the system.
机译:许多实验中的振动是令人担忧的。例如,低频加速度影响了浮力驱动的对流。如果存在两个流体相位,则振动会导致它们之间的界面振荡,从而泵送相邻的流体。高频振动可以通过容器壁传递以引起流体的流,并且另外,相对于流体移动第二相颗粒。离心区有几个振动源。在这里,我们涉及在公开气氛中运行的大型离心机上的实验包。我们作为我们在Clarkson Centrifuge雇用的经验提供的示例。将管炉置于盒子中,30.5cm×30.5cm×25.4cm,其通过铰链连接到离心机臂,以便将净加速度向量与炉子的轴线保持一致。将三轴加速度计置于20kg封装中。附件铰链距离旋转中心1.65米。在2至5g的加速度下,主要在旋转方向上以17Hz观察到振动,最大振幅为5g。这很可能是由于定期涡旋脱落,即被锁定到系统的机械谐振频率(17 Hz)。

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