首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Predicting the geoeffective properties of coronal mass ejections: current status, open issues and path forward
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Predicting the geoeffective properties of coronal mass ejections: current status, open issues and path forward

机译:预测冠状大规模喷射的地逸细特性:当前状态,开放问题和前进路径

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Much progress has been made in the study of coronal mass ejections (CMEs), the main drivers of terrestrial space weather thanks to the deployment of several missions in the last decade. The flow of energy required to power solar eruptions is beginning to be understood. The initiation of CMEs is routinely observed with cadences of tens of seconds with arc-second resolution. Their inner heliospheric evolution can now be imaged and followed routinely. Yet relatively little progress has been made in predicting the geoeffectiveness of a particular CME. Why is that? What are the issues holding back progress in medium-term forecasting of space weather? To answer these questions, we review, here, the measurements, status and open issues on the main CME geoeffective parameters; namely, their entrained magnetic field strength and configuration, their Earth arrival time and speed, and their mass (momentum). We offer strategies for improving the accuracy of the measurements and their forecasting in the near and mid-term future. To spark further discussion, we incorporate our suggestions into a top-level draft action plan that includes suggestions for sensor deployment, technology development and modelling/theory improvements.
机译:冠状大规模喷射(CMES)研究,陆地空间的主要驱动因素在过去十年中的几个任务部署的情况下,已经取得了很大进展。开始理解电太阳爆发所需的能量流动。用几十秒的节奏常规观察CME的启动,具有电弧第二分辨率。现在可以常规地成像和常规的内心光轴演化。然而,在预测特定CME的地质特惠方面取得了相对较小的进展。这是为什么?在中期预测中遏制了空间天气的问题是什么?要回答这些问题,我们在这里审查主CME地质地球合成参数的测量,状态和打开问题;即,它们夹带的磁场强度和配置,其地球到达时间和速度,以及它们的质量(动量)。我们提供提高测量准确性及其在近期和中期未来预测的策略。为了进一步讨论,我们将我们的建议纳入了一个顶级的行动计划,包括传感器部署,技术开发和建模/理论改进的建议。

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