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A Two-component Transport Model for Solar Wind Fluctuations: Waves plus Quasi-2D Turbulence

机译:太阳风波动的双组分传输模型:波和准2D湍流

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We present a model for the transport of solar wind fluctuations, based on the assumption that they can be well-represented using two distinct components: a quasi-2D turbulence piece and a wave-like piece. For each component, coupled transport equations for its energy, cross helicity, and characteristic lengthscale(s) are derived, along with an equation for the proton temperature. This energy-containing "two-component" model includes the effects of solar wind expansion and advection, driving by stream shear and pickup ions, and nonlinear cascades. Nonlinear effects are modeled using a recently developed one-point phenomenology for such a two-component model of homogeneous MHD turbulence [1]. Heating due to these nonlinear effects is included in the temperature equation. Numerical solutions are discussed and compared with observations.
机译:我们提出了一种用于运输太阳风波动的型号,基于使用两个不同的组分可以良好代表的假设:准2D湍流件和波状件。对于每个组件,导出用于其能量,交叉螺旋和特征长度的耦合传输方程,以及质子温度的等式。这种含能的“双组分”模型包括太阳能膨胀和平流的影响,通过流剪切和拾取离子和非线性级联行驶。利用最近开发的单点现象学建模非线性效应,用于这种双组分模型的均匀MHD湍流[1]。由于这些非线性效应引起的加热包括在温度方程中。与观察结果讨论和比较了数值解。

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