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Spatial decay bounds for time dependent magnetohydrodynamic geophysical flow

机译:时间相关的磁流体动力学地球物理流的空间衰减范围

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摘要

This article is concerned with spatial decay bounds for the time dependent magnetohydrodynamic geophysical flow in an infinite pipe when homogeneous lateral surface boundary conditions are applied. Assuming that the entrance velocity and magnetic field data are small enough and the fluid flow converges to laminar flow as the distance down the pipe tends to infinity, we derive a second order differential inequality that leads to an exponential decay estimate for the ``energy'' associated with the velocity and magnetic field represented by the difference between the entrance flow and fully developed laminar flow. We also show how to establish the explicit decay bounds for the total energy.
机译:本文关注的是,当应用均匀侧面边界条件时,无限管中随时间变化的磁流体动力学地球物理流的空间衰减范围。假设入口速度和磁场数据足够小,并且随着沿管道的距离趋于无穷大,流体流收敛为层流,我们得出了二阶微分不等式,从而导致“能量”的指数衰减估计与入口流和完全展开的层流之间的差异所代表的速度和磁场有关。我们还展示了如何建立总能量的显式衰减范围。

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