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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >An operational method for shock arrival time prediction by one-dimensional CESE-HD solar. wind model
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An operational method for shock arrival time prediction by one-dimensional CESE-HD solar. wind model

机译:一个操作冲击到达时间的方法预测由一维CESE-HD太阳能。模型

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摘要

With the purpose of operational real-time forecasting for arrival times of flare/coronal mass ejection associated shocks in the vicinity of the Earth, a one-dimensional hydrodynamic (HD) shock propagation model is established by a novel numerical scheme, the space-time conservation element and solution element (CESE) method. The required observational data inputs to this new one-dimensional CESE-HD model are the low coronal radio Type II drift speed, the duration estimation, and the background solar wind speed for a solar eruptive event. Applying this model to 137 solar events during the period of February 1997 to August 2002, it is found that our model could be practically equivalent to the STOA, ISPM, HAFv.2, and SPM models in forecasting the shock arrival time. The absolute error in the transit time from our model is not larger than those of the other four models for the same set of events. These results may demonstrate the potential capability of our model in terms of improving real-time forecasting because the CESE method can be extended to three-dimensional magnetohydrodynamics (3D-MHD) from the solar photosphere to any heliospheric position.
机译:与实时操作的目的预测到达时间的耀斑/冠状相关质量喷射冲击在附近地球的一维水动力(高清)激波传播模型建立了一个小说数值方案,时空守恒元素和元素(CESE)方法的解决方案。观测数据输入这个新要求一维CESE-HD模型低日冕无线电II型漂移速度,持续时间估计,和背景太阳风速度太阳喷发事件。137年太阳能事件2月期间1997年到2002年8月,发现我们的模型可以几乎相当于柱廊,国际植检,HAFv。冲击到达时间。运输时间从我们的模型并不比同一组的其他四个模型的事件。我们的模型的潜在能力提高实时预测,因为CESE方法可以扩展到三维磁流体动力学(3 d-mhd)来自太阳光球层任何日球的位置。

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