This means that in winter the ionospheric D-region is more easily influenced by meteorological processes generated in tro-po-and lower stratosphere. 这似乎表明,冬天电离层D区更容易受来自对流层和低平流层中某些过程的影响。
The global distribution of the ionization in the ionospheric D-region by galactic cosmic ray 银河宇宙线在电离层D层中电离的全球分布
The effect of thunderstorm cloud quasi-electrostatic ( qe) field on the nighttime ionospheric D-region 雷暴云准静电场对夜间电离层D区的影响
Robust control for uncertain T-S systems with D-region pole constraints 不确定T-S模型的D-域极点约束鲁棒控制
The ionization of solar cosmic ray in the ionospheric D-region 太阳宇宙线在电离层D层中的电离
Nitric Oxide Determination from Ionospheric Effects of Solar Flare in the Low-latitude Upper D-region 利用太阳耀斑的电离层效应确定低纬度D层顶一氧化氮浓度
Variations of the Electron Density and the Effective Electron Loss Rate in the Ionospheric D-region 电离层D区域电子浓度和电子有效损耗率随时间的变化
The analysis shows that there are appreciable increases of electron density both in the ionospheric D-region and the F-region and the latter is the main part of the sharp TEC increases. 分析的结果表明,大太阳耀斑期间不仅D层的电子浓度大大增加,而且F层的电子浓度也显著增加,后者是这次总含量剧增的主要部分。
Based on the oxonium ion chemistry, the NO density profiles in the low-latitude ( 28 ° 38'N) upper D-region during a large solar flare are estimated. 通过氧鎓离子化学计算了一次强太阳耀斑扰动期间低纬度(28°38′N)D层顶NO浓度。