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Effect of fluctuations on mean-field dynamos

机译:波动对平均场发电机的影响

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We discuss the effect of different types of fluctuations on dynamos generated in the limit of scale separation. We first recall that the magnetic field observed in the VKS (von Karman flow of liquid sodium) experiment is not the one that would be generated by the mean flow alone and that smaller scale turbulent fluctuations therefore play an important role. We then consider how velocity fluctuations affect the dynamo threshold in the framework of mean-field magnetohydrodynamics. We show that the detrimental effect of turbulent fluctuations observed with many flows disappears in the case of helical flows with scale separation. We also find that fluctuations of the electrical conductivity of the fluid, for instance related to temperature fluctuations in convective flows, provide an efficient mechanism for dynamo action. Finally, we conclude by describing an experimental configuration that could be used to test the validity of mean-field magnetohydrodynamics in strongly turbulent flows.
机译:我们讨论了不同类型波动对规模分离极限产生的发电机的影响。 我们首先召回VK中观察到的磁场(液体钠)实验中观察到的磁场不是单独的平均流动产生的磁场,因此较小的湍流波动因此起着重要作用。 然后,我们考虑速度波动如何影响平均场磁力流体动力学框架中的发电机阈值。 我们表明,随着许多流动观察到的湍流波动的不利影响在具有比例分离的螺旋流动的情况下消失了。 我们还发现,流体的电导率波动,例如与对流流中的温度波动相关,提供了发电机动作的有效机制。 最后,我们通过描述可用于测试强烈湍流流动的平均场磁流动动力学的有效性的实验配置来得出结论。

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