论文标题

水星对相对论失控电子雪崩的影响

Influence of hydrometeors on relativistic runaway electron avalanches

论文作者

Zemlianskaya, Daria, Stadnichuk, Egor, Svechnikova, Ekaterina

论文摘要

以前,在这一大气物理学领域的所有研究,即相对论失控电子(RREA)的雪崩,均未考虑到雷云中的氢晶格的存在,这可能会严重影响结果及其对实际观察到的自然现象的对应。本文考虑了云中的水星。在这项工作中,考虑了各种浓度的冰颗粒,在Geant4中模拟了RREA的分布。建模表明,无法简化水合者的存在并减少到主要物质的变化。考虑了两种方法 - 体积水星作为单独的建模对象的建模,以及整个物质组件的简单变化(将水添加到相应密度的空气中)。这些方法显示出完全不同的结果。另一方面,当用修饰的材料建模时,通过水文量的卷进行建模显示,雪崩的长度减少了20%,长度仅变化1%。这突然证明了在研究中应考虑水材料,因为它们可以显着改变在实际雷暴条件下雪崩的生长长度。

Previously, all studies in this area of atmospheric physics, namely, avalanches of relativistic runaway electrons (RREA), were carried out without taking into account the presence of hydrometeors in thunderclouds, which could seriously affect the results and their correspondence to actually observed natural phenomena. This article takes into account hydrometeors in clouds. In this work, the distribution of RREA was simulated in GEANT4 was simulated taking into account various concentrations of ice particles. Modeling showed that accounting for the presence of hydrometeors cannot be simplified and reduced to a change in the main substance. Two methods are considered - modeling of volumetric hydrometeors as separate modeling objects and as a simple change in the components of a whole substance (adding water to air with a corresponding density). These methods show completely different results. Modeling by volumes of hydrometeors shows a decrease in the length of the avalanche by 20 %, on the other hand, when modeling with a modified material, the length changed only by 1 %. This suddenly proves that hydrometeors should be taken into account in research, as they can significantly change the growth length of an avalanche in real thunderstorm condition.

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