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Nonlinear shear-current dynamo and magnetic helicity transport in sheared turbulence

机译:剪切湍流中的非线性剪切电流发电机和磁螺旋传输

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摘要

The nonlinear mean-field dynamo due to a shear-current effect in a nonhelical homogeneous turbulence with a mean velocity shear is discussed. The transport of magnetic helicity as a dynamical nonlinearity is taken into account. The shear-current effect is associated with the W x J term in the mean electromotive force, where W is the mean vorticity due to the large-scale shear motions and J is the mean electric current. This effect causes the generation of large-scale magnetic field in a turbulence with large hydrodynamic and magnetic Reynolds numbers. The dynamo action due to the shear-current effect depends on the spatial scaling of the correlation time tau(k) of the background turbulence, where k is the wave number. For Kolmogorov scaling, tau(k) alpha k(-2/3), the dynamo instability occurs, while when tau(k) alpha k(-2) (small hydrodynamic and magnetic Reynolds numbers) there is no the dynamo, action in a sheared nonhelical turbulence. The magnetic helicity flux strongly affects the magnetic field dynamics in the nonlinear stage of the dynamo action. Numerical solutions of the nonlinear mean-field dynamo equations which take into account the shear-current effect, show that if the magnetic helicity flux is not small, the saturated level of the mean magnetic field is of the order of the equipartition field determined by the turbulent kinetic energy. Turbulence with a large-scale velocity shear is a universal feature in astrophysics, and the obtained results can be important for elucidation of origin of the large-scale magnetic fields in astrophysical sheared turbulence.
机译:讨论了在平均速度剪切的非螺旋均匀湍流中,由于剪切电流作用而产生的非线性平均场发电机。考虑将磁螺旋传输作为动态非线性。剪切电流效应与平均电动势中的W x J项相关,其中W是由于大规模剪切运动引起的平均涡度,而J是平均电流。该效应导致在具有大的流体动力学和雷诺数的湍流中产生大范围的磁场。由于剪切电流作用而产生的发电机作用取决于背景湍流的相关时间tau(k)的空间比例,其中k是波数。对于Kolmogorov标度,tau(k)alpha k(-2/3)会发生发电机不稳定性,而当tau(k)alpha k(-2)(较小的水动力和磁雷诺数)时,则没有发电机剪切的非螺旋湍流在发电机作用的非线性阶段,磁螺旋通量强烈影响磁场动力学。考虑剪切电流效应的非线性平均场发电机方程的数值解表明,如果磁螺旋通量不小,则平均磁场的饱和水平约为由等式确定的等分场。湍动能。大尺度速度剪切湍流是天体物理学的普遍特征,所获得的结果对于阐明天体物理剪切湍流中大范围磁场的起源可能具有重要意义。

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