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On improvement to the Shock Propagation Model (SPM) applied to interplanetary shock transit time forecasting

机译:在改善激波传播模型(SPM)应用于行星际激波交通时间预测

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This paper investigates methods to improve the predictions of Shock Arrival Time (SAT) of the original Shock Propagation Model (SPM). According to the classical blast wave theory adopted in the SPM, the shock propagating speed is determined by the total energy of the original explosion together with the background solar wind speed. Noting that there exists an intrinsic limit to the transit times computed by the SPM predictions for a specified ambient solar wind, we present a statistical analysis on the forecasting capability of the SPM using this intrinsic property. Two facts about SPM are found: (1) the error in shock energy estimation is not the only cause of the prediction errors and we should not expect that the accuracy of SPM to be improved drastically by an exact shock energy input; and (2) there are systematic differences in prediction results both for the strong shocks propagating into a slow ambient solar wind and for the weak shocks into a fast medium. Statistical analyses indicate the physical details of shock propagation and thus clearly point out directions of the future improvement of the SPM. A simple modification is presented here, which shows that there is room for improvement of SPM and thus that the original SPM is worthy of further development.
机译:探讨改善的方法预测冲击到达时间(坐)最初的冲击(SPM)传播模型。经典冲击波理论了SPM,是由激波传播速度总能量的爆炸结合背景太阳风速度。注意的是,存在一种内在的限制SPM的转运时间的计算预测太阳风在特定环境,我们提出一个统计分析预测使用这个内在能力的SPM财产。冲击能量误差估计不是唯一的预测错误的原因,我们不应预计,SPM的准确性有待改善彻底的确切冲击能量输入;(2)有系统性的差异预测结果为强劲的冲击传播环境太阳风和缓慢疲软的冲击到快速介质。统计分析表明物理激波传播,因此清晰的细节指出未来改进的方向SPM。这表明,仍有改进的空间SPM,因此,原SPM值得的进一步发展。

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