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Energy Balance in the Corona over the 22-Year Solar Cycle

机译:22年太阳周期中电晕的能量平衡

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摘要

Wheatland and Litvinenko (2001) presented a model for dynamical energy balance in the flaring solar corona which predicts a time lag between flare occurrence and the supply of energy to the corona (`driving'). They also suggested that an observed net lag between flare numbers and sunspot numbers over cycles 21 and 22 might provide support for the model. Temmer, Veronig, and Hanslmeier (2003) examined data for five individual solar cycles (19–23) and confirmed a lag between flare and sunspot numbers for odd solar cycles, but found no lag for even cycles. Following the suggestion of Temmer, Veronig, and Hanslmeier, the energy balance model is here extended to incorporate 22-year driving consistent with the phenomenological Gnevyshev—Ohl rule. The model is found to exhibit a greater lag for the smaller (even) cycles, in contradiction with the findings of Temmer, Veronig, and Hanslmeier. A modification to the model is investigated in which the flaring rate is proportional to the free energy and to the driving rate for small driving rates, but is proportional only to the free energy for large driving rates. The modified model can in principle account for the observations.
机译:惠特兰和利特维年科(Wheatland and Litvinenko)(2001)提出了一个在耀斑的日冕中动态能量平衡的模型,该模型预测了耀斑发生与日冕能量供应之间的时滞(“驱动”)。他们还建议,在第21和22个周期内观察到的耀斑数和黑子数之间的净滞后可能为模型提供支持。 Temmer,Veronig和Hanslmeier(2003)检查了五个太阳周期(19-23)的数据,并确认了奇数太阳周期的耀斑和黑子数之间存在滞后,但偶数周期没有滞后。根据Temmer,Veronig和Hanslmeier的建议,此处扩展了能量平衡模型,以纳入符合现象学Gnevyshev-Ohl规则的22年驾驶。发现该模型在较小的(偶数)周期中表现出更大的滞后性,这与Temmer,Veronig和Hanslmeier的发现相矛盾。研究了对模型的一种修改,其中扩口率与自由能和小驱动率下的驱动率成比例,但仅与大功率下的自由能成比例。修改后的模型原则上可以解释观察结果。

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  • 来源
    《Solar Physics 》 |2004年第2期| 265-277| 共13页
  • 作者单位

    Institute for the Study of Earth Oceans and Space University of New Hampshire;

    School of Physics University of Sydney;

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  • 正文语种 eng
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