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Solitary waves in shallow water hydrodynamics and magnetohydrodynamics in rotating spherical coordinates

机译:浅水流体动力学和磁力学动力学在旋转球形坐标中的孤独波

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In a recent paper ( London, Geophys. Astrophys. Fluid Dyn. 2017, vol. 111, pp. 115-130, referred to as L1), we considered a perfect electrically conducting rotating fluid in the presence of an ambient toroidal magnetic field, governed by the shallow water magnetohydrodynamic ( MHD) equations in a modified equatorial ss plane approximation. In conjunction with a WKB type approximation, we used a multiple scale asymptotic scheme, previously developed by Boyd ( J. Phys. Oceanogr. 1980, vol. 10, pp. 1699-1717) for equatorial solitary hydrodynamic waves, and found solitary MHD waves. In this paper, as in L1, we apply a WKB type approximation in order to extend the results of L1 from the modified ss-plane to the full spherical geometry. We have included differential rotation in the analysis in order to make the results more relevant to the solar case. In addition, we consider the case of hydrodynamic waves on the rotating sphere in the presence of a differential rotation intended to roughly model the varying large scale currents in the oceans and atmosphere. In the hydrodynamic case, we find the usual equatorial solitary waves as found by Boyd, as well as waves in bands away from the equator for sufficiently strong currents. In the MHD case, we find basically the same equatorial waves found in L1. L1 also found non-equatorial modes; no such modes are found in the full spherical geometry.
机译:在最近的一篇论文中(伦敦,地球症。Astrophys。液体Dyn。2017,Vol.111,PP 115-130,称为L1),我们认为在环境环形磁场存在下的完美导电旋转流体,在修改的赤道SS平面近似下由浅水磁流体动力学(MHD)方程管辖。与WKB类型近似相结合,我们使用了以前由Boyd(J. Physo.eanco.280,Vol.10,PP。1699-1717)用于赤道孤独流体动力波的多种刻度渐近方案,并发现孤立的MHD波。在本文中,如在L1中,我们应用WKB类型近似,以便将L1的结果从修改的SS平面扩展到完全球形几何形状。我们在分析中包括差异旋转,以使结果与太阳能箱更相关。另外,我们考虑在差动旋转存在下旋转球体上的流体动力波的情况,旨在大致模拟海洋和大气中不同的大规模电流。在流体动力学情况下,我们发现由Boyd发现的通常的赤道孤立波,以及远离赤道的波浪中的波浪用于足够强烈的电流。在MHD案例中,我们发现基本上存在于L1中的相同赤道波。 L1还发现非赤道模式;在全球形几何形状中没有发现这种模式。

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