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The statistical analysis of the Geomagnetically Induced Current events occurred in Guangdong, China during the declining phase of solar cycle 23 (2003-2006)

机译:地磁诱导的当前事件的统计分析发生在中国广东,在太阳系23(2003-2006)的下降期间

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We study the interplanetary causes of intense geomagnetic storms (Dst < -100 nT) and the corresponding Geomagnetically Induced Current (GIC) events occurred in Ling'ao nuclear power station, Guangdong during the declining phase of solar cycle 23 (2003-2006). The result shows that sMC (a magnetic cloud with a shock), SH (sheath) and SH+MC (a sheath followed by a magnetic cloud) are the three most common interplanetary structures responsible for the storms which will cause GIC events in this period. As an interplanetary structure, CIR (corotating interaction regions) also plays an important role, however, the CIR-driven storms have a relatively minor effect to the GIC. Among the interplanetary parameters, the solar wind velocity and the southward component of the IMF (interplanetary magnetic field) are more important than solar wind density and the temperature to a geomagnetic storm and GIC.
机译:我们研究了强烈地磁风暴(DST <-100nt)的行踪原因(DST <-100nt)和相应的地磁诱导的电流(GIC)事件发生在广东在太阳系23(2003-2006)下降期间的广东省凌岛核电站。结果表明,SMC(带有冲击的磁性云),SH(护套)和SH + MC(护套接着是磁性云)是负责在此期间导致GIC事件的暴风雨的三个最常见的行星际结构。作为行星际结构,CIR(卡切互动区)也起到重要作用,然而,CIR驱动的风暴对GIC具有相对较小的影响。在行星际参数中,太阳能风速和IMF(行星际磁场)的南部分量比太阳风密度和高温变得更重要,以及地磁风暴和GIC。

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