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ElEvoHI: A NOVEL CME PREDICTION TOOL FOR HELIOSPHERIC IMAGING COMBINING AN ELLIPTICAL FRONT WITH DRAG-BASED MODEL FITTING

机译:11.一种新型CME预测工具,用于椭圆形前线与基于拖曳模型配件的椭圆形成像

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摘要

In this study, we present a new method for forecasting arrival times and speeds of coronal mass ejections (CMEs) at any location in the inner heliosphere. This new approach enables the adoption of a highly flexible geometrical shape for the CME front with an adjustable CME angular width and an adjustable radius of curvature of its leading edge, i.e., the assumed geometry is elliptical. Using, as input, Solar TErrestrial RElations Observatory (STEREO) heliospheric imager (HI) observations, a new elliptic conversion (ElCon) method is introduced and combined with the use of drag-based model (DBM) fitting to quantify the deceleration or acceleration experienced by CMEs during propagation. The result is then used as input for the Ellipse Evolution Model (ElEvo). Together, ElCon, DBM fitting, and ElEvo form the novel ElEvoHI forecasting utility. To demonstrate the applicability of ElEvoHI, we forecast the arrival times and speeds of 21 CMEs remotely observed from STEREO/HI and compare them to in situ arrival times and speeds at 1 AU. Compared to the commonly used STEREO/HI fitting techniques (Fixed-phi, Harmonic Mean, and Self-similar Expansion fitting), ElEvoHI improves the arrival time forecast by about 2 to +/- 6.5 hr and the arrival speed forecast by approximate to 250 to +/- 53 km s(-1), depending on the ellipse aspect ratio assumed. In particular, the remarkable improvement of the arrival speed prediction is potentially beneficial for predicting geomagnetic storm strength at Earth.
机译:在本研究中,我们提出了一种预测内部光际在任何位置的冠状大量喷射(CMES)的到达时间和速度的新方法。这种新方法使得能够采用CME前面的高度柔性的几何形状,其具有可调节的CME角度宽度和其前缘的可调节曲率半径,即假设的几何形状是椭圆形的。使用,作为输入,太阳能关系天文台(立体声)光敏体成像仪(HI)观察,引入了一种新的椭圆转换(ELCON)方法并结合使用拖拉的模型(DBM)拟合来量化经历的减速或加速度在传播期间通过CMES。然后将结果用作椭圆形进化模型的输入(11)。在一起,Elcon,DBM拟合和超一步形成了新的Elevohi预测效用。为了证明Ithohi的适用性,我们预测了从立体声/招收远程观察到的21 CME的到达时间和速度,并将它们与1 AU的原位到达时间和速度进行比较。与常用的立体声/致拟合技术(固定PHI,谐波平均值和自我相似的膨胀拟合)相比,Elevohi将到达时间预测提高了约2至+/- 6.5小时和到达速度预测,通过近似为250到+/- 53 km s(-1),具体取决于椭圆宽高比。特别地,到达速度预测的显着改善可能是有利于预测地球地磁风暴强度的影响。

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