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首页> 外文期刊>Journal of Low Temperature Physics >Breakdown of Potential Flow to Turbulence Around a Sphere Oscillating in Superfluid He Above the Critical Velocity
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Breakdown of Potential Flow to Turbulence Around a Sphere Oscillating in Superfluid He Above the Critical Velocity

机译:超过临界速度以上的超流体He振荡的球体周围湍流的势流分解

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摘要

The onset of turbulent flow around an oscillating sphere in superfluid He is known to occur at a critical velocity where is the circulation quantum and is the oscillation frequency. But it is also well known that initially in a first up-sweep of the oscillation amplitude, can be considerably exceeded before the transition occurs, thus leading to a strong hysteresis in the velocity sweeps. The velocity amplitude where the transition finally occurs is related to the density of the remanent vortices in the superfluid. Moreover, at temperatures below ca. 0.5 K and in a small interval of velocity amplitudes between and a velocity that is about 2 % larger, the flow pattern is found to be unstable, switching intermittently between potential flow and turbulence. From time series recorded at constant temperature and driving force, the distribution of the excess velocities is obtained and from that the failure rate. Below 0.1 K we also can determine the distribution of the lifetimes of the phases of potential flow. Finally, the frequency dependence of these results is discussed.
机译:众所周知,在超流体He中围绕振荡球的湍流的开始以临界速度发生,该临界速度是循环量子,并且是振荡频率。但是也众所周知,在过渡发生之前,在振荡振幅的第一次向上扫描中可能会被大大超过,从而导致速度扫描中的强磁滞现象。过渡最终发生的速度幅度与超流体中剩余涡旋的密度有关。而且,在低于约200℃的温度下。在0.5 K的速度幅值和大约2%的速度之间的小间隔内,发现流动模式不稳定,在潜在的流动和湍流之间间歇地切换。根据在恒定温度和驱动力下记录的时间序列,可以得出超速的分布,并由此得出故障率。低于0.1 K,我们还可以确定势流相的寿命分布。最后,讨论了这些结果的频率依赖性。

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