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THREE-DIMENSIONAL MAGNETOHYDRODYNAMIC MODELING OF THE SOLAR WIND INCLUDING PICKUP PROTONS AND TURBULENCE TRANSPORT

机译:包含拾取质子和湍流传输的风的三维磁流体动力学模型

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摘要

To study the effects of interstellar pickup protons and turbulence on the structure and dynamics of the solar wind, we have developed a fully three-dimensional magnetohydrodynamic solar wind model that treats interstellar pickup protons as a separate fluid and incorporates the transport of turbulence and turbulent heating. The governing system of equations combines the mean-field equations for the solar wind plasma, magnetic field, and pickup protons and the turbulence transport equations for the turbulent energy, normalized cross-helicity, and correlation length. The model equations account for photoionization of interstellar hydrogen atoms and their charge exchange with solar wind protons, energy transfer from pickup protons to solar wind protons, and plasma heating by turbulent dissipation. Separate mass and energy equations are used for the solar wind and pickup protons, though a single momentum equation is employed under the assumption that the pickup protons are comoving with the solar wind protons. We compute the global structure of the solar wind plasma, magnetic field, and turbulence in the region from 0.3 to 100?AU for a source magnetic dipole on the Sun tilted by 0°-90° and compare our results with Voyager?2 observations. The results computed with and without pickup protons are superposed to evaluate quantitatively the deceleration and heating effects of pickup protons, the overall compression of the magnetic field in the outer heliosphere caused by deceleration, and the weakening of corotating interaction regions by the thermal pressure of pickup protons.
机译:为了研究星际拾取质子和湍流对太阳风的结构和动力学的影响,我们开发了一个完整的三维磁流体动力太阳风模型,该模型将星际拾取质子视为单独的流体,并结合了湍流和湍流加热。方程的控制系统结合了太阳风等离子体,磁场和质子的平均场方程以及湍流能量,归一化的交叉螺旋度和相关长度的湍流输运方程。模型方程式解释了星际氢原子的光电离以及它们与太阳风质子的电荷交换,能量从拾取质子到太阳风质子的转移以及通过湍流耗散引起的等离子体加热。尽管在假定质子与太阳风质子共同运动的假设下使用了单个动量方程式,但太阳风和质子质子分别使用了质量和能量方程。对于在0°-90°倾斜的太阳上的源磁偶极子,我们计算了0.3至100?AU范围内的太阳风等离子体,磁场和湍流的整体结构,并将我们的结果与Voyager?2的观测结果进行了比较。叠加有或没有质子质子的计算结果,可以定量地评估质子质子的减速和加热效果,由减速引起的外太阳圈磁场的整体压缩以及质子质子的热压力对同向相互作用区域的削弱。质子

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