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ON THE RELATIONSHIP BETWEEN PMSE STRENGTH AND PARTICLE PRECIPITATION

机译:论PMSE强度与粒子沉淀的关系

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We have studied the relationship between particle precipitation and PMSE strength on days where we observe PMSE layers both with the EISCAT VHF and UHF radars. The UHF observations of the ionization and its variation, above the PMSE layer, is used as a measure of precipitation. Variations of the precipitation is compared with variations of the PMSE strengths observed with both radars. Although many cases apparently show a clear connection between precipitation and PMSE, where an increased precipitation leads to a strengthening of the PMSE, our findings confirm that there is no general and simple proportionality between the two. For the weakest PMSE there appears to be no correlation between precipitation and PMSE strength. For PMSEs around average strength of our observations there appears to be a weak positive correlation, which can be predicted by a time-dependent dust cloud charge model. On some occasions an increased precipitation can, apparently, initially lead to an increase of PMSE strength which at some point starts to decline even if the precipitation continue to increase. This feature can also be seen in the results from the statistical analysis, however the number of occurrences is too low to conclude with significance and the time-dependent charge model described here does not reproduce such features. We have studied to what degree models for the PMSE scattering can explain the various cases of reaction of PMSE to changes in precipitation.
机译:我们研究了粒子降水和PMSE强度之间的关系,我们观察到PMSE层,既与eISCAT VHF和UHF雷达。 PMSE层上方的电离和其变化的UHF观察用作沉淀的量度。将沉淀的变化与两个雷达观察到的PMSE强度的变化进行了比较。虽然许多情况显然在降水和PMSE之间显而易见,但是增加了降水导致加强PMSE,我们的研究结果证实两者之间没有一般性和简单的比例。对于最弱的PMSE,降水和PMSE强度之间似乎没有相关性。对于我们观察的平均力量周围的PMSE,似乎是一种弱的正相关性,这可以通过时间依赖的粉尘云电荷模型来预测。在某些情况下,显然可以提高降水量,最初导致PMSE强度的增加,即使降水继续增加,在某些时候也会开始下降。在统计分析的结果中也可以看出该特征,但是出现的次数太低,不能以重要性结论,并且这里描述的时间依赖电荷模型不会再现这些特征。我们研究了PMSE散射的程度模型可以解释PMSE对沉淀变化的各种案例。

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