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Solar differential rotation and meridional flow: The role of a subadiabatic tachocline for the Taylor-Proudman balance

机译:太阳差旋转和子午流:亚绝绝速线对泰勒-普罗德曼平衡的作用

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摘要

We present a simple model for the solar differential rotation and meridional circulation based on a mean field parameterization of the Reynolds stresses that drive the differential rotation. We include the subadiabatic part of the tachocline and show that this, in conjunction with turbulent heat conductivity within the convection zone and overshoot region, provides the key physics to break the Taylor-Proudman constraint, which dictates differential rotation with contour lines parallel to the axis of rotation in case of an isentropic stratification. We show that differential rotation with contour lines inclined by 10 - 30 degrees with respect to the axis of rotation is a robust result of the model, which does not depend on the details of the Reynolds stress and the assumed viscosity, as long as the Reynolds stress transports angular momentum toward the equator. The meridional flow is more sensitive with respect to the details of the assumed Reynolds stress, but a flow cell, equatorward at the base of the convection zone and poleward in the upper half of the convection zone, is the preferred flow pattern.
机译:我们基于驱动差速旋转的雷诺应力的平均场参数化,提出了一个太阳差速旋转和子午环流的简单模型。我们包括了速降线的绝热部分,并表明这与对流区和超调区内的湍流热导率相结合,为打破泰勒-普鲁德曼约束提供了关键的物理条件,泰勒-普鲁德曼约束指示了平行于轴的等高线的微分旋转等熵分层情况下的旋转角度。我们显示轮廓线相对于旋转轴倾斜10-30度的微分旋转是该模型的可靠结果,只要雷诺数不依赖于雷诺应力和假定粘度的细节即可应力将角动量移向赤道。子午流对假定的雷诺应力的细节更为敏感,但是在对流区底部赤道,对流区上半部向极流的流通池是首选的流动方式。

著录项

  • 作者

    Rempel, M;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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