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1.
研究了1995年10月24日日食过程中,我国低纬地区广州和海口的F2层临界频率f0F2的高干扰重心频率ICF变化过程,鉴于多次日 处低纬的两地f0F2的日食变化形态不完全一样,以及多次日食期间同一地方f0F2变化形态不完全一样,ICF也并不像预想的那样降低,因而对于低纬电离层,动力学过程可能要比直接与太阳辐射有关的光化学过程起更为重要的作用。  相似文献   

2.
利用人工神经网络预测电离层f0F2月中值   总被引:1,自引:0,他引:1       下载免费PDF全文
提出了利用人工神经网络技术预测电离层临界频率月中值的方案。在利用人工神经网络技术研究电离层月中值隔月变化规律的基础上,考虑足够的周年和黑子周期变化的数据训练网络,使f0F2月中值预测值与实测数据比较平均误差为0.34MHz预测精度有了较大改进,最后采用分形学的基本理论得到电离层f0F2月中值的分数维为3,选用3个输入量,分别预测高,低年f0F2月中值,与实测数据比较平均误差为0.3MHz。  相似文献   

3.
利用人工神经网络预测电离层f_0F_2月中值   总被引:1,自引:1,他引:0       下载免费PDF全文
提出了利用人工神经网络技术预测电离层临界频率月中值的方案.在利用人工神经网络技术研究电离层月中值隔月变化规律的基础上,考虑足够的周年和黑子周期变化的数据训练网络,使 f0F2月中值预测值与实测数据比较平均误差为 0.34MHz,预测精度有了较大改进.最后采用分形学的基本理论得到电离层 f0F2月中值的分数维为 3,选用 3个输入量,分别预测高、低年 f0F2月中值,与实测数据比较平均误差为 0.3MHz.  相似文献   

4.
中性风对夜间低纬电离层参量的影响   总被引:5,自引:3,他引:2       下载免费PDF全文
利用一个改进的二维低纬电离层理论模式研究夜间中性风对低纬电离层多量的作用.模式计算结果表明:夜间中性风对低纬F层的影响与纬度、地方时有关.夜间低纬F层峰值电子浓度和峰高及其随时间的变化受中性风的影响与传统观点有所差异.低纬F层参量不只依赖于中性风的方向、强度,还与中性风场空间分布及时间变化率有关.中性风对低纬F层的影响值得重新认识.  相似文献   

5.
本文采用IGRF(1980)模型进行了哨声模三维射线跟踪计算, 研究了夜间哨声通过低纬电离层传播的射线与波法的特征.着重讨论了形成非导管哨声可透射路径的条件、射线的聚焦效应及射线的低纬截止.数值计算得到路径终纬度截止约在倾角纬度10.7°N.   相似文献   

6.
利用二维低纬电离层-等离子体层时变理论模式,模拟太阳活动高年春分条件下垂直漂移和中性风强度改变对低纬F区电离层参量的影响.模式在所考察的磁子午面内求解等离子体输运方程,给出离子浓度和速度随纬度、高度、地方时的变化.模式计算结果显示,调整垂直漂移和中性风强度对低纬F区电离层电子浓度的影响与电离层所处磁纬、垂直漂移和中性风作用时段等有关,呈现出一些新特点.结果对分析不同条件下垂直漂移和中性风对低纬F区电离层影响具有一定的指导意义.   相似文献   

7.
利用卫星和地面台站的历史数据, 研究了中低纬电离层f0F2 对强行星际磁场南向翻转的响应. 结果表明, 行星际磁场南向翻转能引起电离层扰动式响应, 响应特性与纬度、季节和翻转时刻的地方时有关. 在中纬, 发生在夏分季和夜间的翻转能造成较强的电离层负响应, 其幅度随纬度的降低而变弱, 在恢复过程中存在不规则振荡; 在低纬, 南向翻转引起的电离层响应在夏分季较强, 在冬季则较弱, 且易被淹没在电离层自身的扰动中. 分析指出电离层最大负响应与翻转后南向磁场极大值之间有着较好的线性关系.   相似文献   

8.
广州电离层观测站位于磁赤道附近(地磁经纬度:183.0°E,11.5°N).根据对18个站电离层资料的分析,广州站位于f_0F_2极大值双驼峰现象北侧的位置;在太阳活动高年期间,f_0F_2极大值在夜间仍然保持存在;另外,电离层骚扰发生的次数多于国内各电离层观测站发生的次数.这些特性都是F_2层赤道异常现象.  相似文献   

9.
夜间f0F2存在季节异常现象   总被引:2,自引:1,他引:2  
本文用1975.12—1986.12我国9个电离层站的资料分析得出,在一定的纬度和太阳活动条件下,夜间f_0F_2存在季节异常现象.夜间季节异常现象具有两个明显的特点:只有低纬才具有夜间季节异常特征;太阳活动高年夜间季节异常的程度增加.夜间季节异常是白天f_0F_2季节异常现象的延续,夏半球至冬半球的大气流动造成的中性气体浓度比(O/O_2和O/N_2)的季节变化,是形成f_0F_2季节异常的根本原因.并初步分析了夜间季节异常的低纬局限性及随太阳活动变化的成因.  相似文献   

10.
利用第24太阳活动周中国多个地区GNSS电离层闪烁监测站数据,统计分析中国中低纬地区电离层闪烁特性.结果显示:电离层闪烁主要发生在春秋分及夜间20:00—02:00LT时段;在28°N以南地区,纬度越低电离层闪烁强度和发生概率越高;电离层闪烁发生概率与太阳活动呈正相关,太阳活动上升年电离层闪烁发生概率高于下降年;不同强度地磁活动条件下,电离层闪烁均可能发生,且与地磁活动强度整体呈负相关.通过研究电离层闪烁统计特性,可以为电离层闪烁机理的深入研究、预报及工程应用提供参考.   相似文献   

11.
The total electron content (TEC) derived from the global positioning system (GPS) and the F2-layer peak electron density obtained from Digisonde data have been used to study the diurnal, seasonal and solar activity variations of the ionospheric equivalent slab thickness (τ) over three European stations located at Pruhonice (50.0°N, 15.0°E), Ebro (40.8°N, 0.5°E) and El Arenosillo (37.1°N, 353.3°E). The diurnal variation of the τ is characterized by daytime values lower than nighttime ones for all seasons at low solar activity while daytime values larger than nighttime characterizes the diurnal variation for summer at high solar activity. A double peak is noticeable at dusk and at dawn, better expressed for winter at low solar activity. The seasonal variations of τ depend on local time and solar activity, the daytime values of τ increases from winter to summer whereas nighttime values of τ show the opposite. The effect of the solar activity on τ depends on local time and season, there being very sensitive for winter nighttime values of τ. The results of this study are compared with those presented by other authors.  相似文献   

12.
2009年7月22日日全食期间电离层参量的变化   总被引:1,自引:2,他引:1  
利用多个电离层垂测站的数据和IGS-TEC数据资料, 结合日地空间环境指数, 分析了2009年7月22日日全食期间中国地区电离层参量(反射回波最低频率fmin及f0F2和TEC)的变化特征. 结果表明, 日食发生后fmin迅速降低, 日食结束后fmin迅速恢复到正常水平; 在食甚时刻附近, f0F2和TEC出现明显的降低, 显示了明显的光食效应. 日食结束后5~6 h, f0F2和TEC出现不同程度的正扰动, 在驼峰区更明显; 日食结束后9~10 h, f0F2和TEC出现较显著的负扰动. 由于此次日食发生时伴随着中等强度的磁暴和低纬电场穿透等空间天气事件, 给此次日食电离层效应的深入分析带来很大困难.   相似文献   

13.
台风影响电离层F2区的一种可能机制   总被引:4,自引:1,他引:3  
在台风期间,特别是台风登陆前后,强烈的海气、陆气相互作用会增强低层大气中的湍流活动,并可能导致大气湍流层顶的抬升.这种抬升会改变高层大气结构,从而影响高层大气中的光化学过程,最终造成对电离层的影响.在台风活动抬升了湍流层顶的前提下,利用一个一维电离层物理模型,模拟了日本中纬地区(45°N,142°E)电离层F2区的响应.模拟结果很好地定性解释了如下观测事实,台风期间,电离层f0F2会下降,对给定频率电波的反射面会抬升;同时还表明以上过程会导致hmF2上升,这表明台风期间湍流层顶的抬升可能是台风影响电离层F2区的一种十分有效的机制.   相似文献   

14.
15.
IRI-90及其与中国电离层资料f_0F_2的比较   总被引:1,自引:0,他引:1  
本文介绍了国际参考电离层IRI-90版中新增的内容,比较了它与IRI-86的主要差别。与我国电离层临频数据的统计分析表明,新版本对我国地区的适用程度有了改进。  相似文献   

16.
Monthly median values of foF2, hmF2 and M(3000)F2 parameters, with quarter-hourly time interval resolution for the diurnal variation, obtained with DPS4 digisonde at Hainan (19.5°N, 109.1°E; Geomagnetic coordinates: 178.95°E, 8.1°N) are used to investigate the low-latitude ionospheric variations and comparisons with the International Reference Ionosphere (IRI) model predictions. The data used for the present study covers the period from February 2002 to April 2007, which is characterized by a wide range of solar activity, ranging from high solar activity (2002) to low solar activity (2007). The results show that (1) Generally, IRI predictions follow well the diurnal and seasonal variation patterns of the experimental values of foF2, especially in the summer of 2002. However, there are systematic deviation between experimental values and IRI predictions with either CCIR or URSI coefficients. Generally IRI model greatly underestimate the values of foF2 from about noon to sunrise of next day, especially in the afternoon, and slightly overestimate them from sunrise to about noon. It seems that there are bigger deviations between IRI Model predictions and the experimental observations for the moderate solar activity. (2) Generally the IRI-predicted hmF2 values using CCIR M(3000)F2 option shows a poor agreement with the experimental results, but there is a relatively good agreement in summer at low solar activity. The deviation between the IRI-predicted hmF2 using CCIR M(3000)F2 and observed hmF2 is bigger from noon to sunset and around sunrise especially at high solar activity. The occurrence time of hmF2 peak (about 1200 LT) of the IRI model predictions is earlier than that of observations (around 1500 LT). The agreement between the IRI hmF2 obtained with the measured M(3000)F2 and the observed hmF2 is very good except that IRI overestimates slightly hmF2 in the daytime in summer at high solar activity and underestimates it in the nighttime with lower values near sunrise at low solar activity.  相似文献   

17.
利用神经网络预报电离层f0F2   总被引:6,自引:3,他引:3  
由中国武汉电离层台站和澳大利亚Hobart台站的电离层F2层临界频率(f0F2)的资料,利用三层前向反馈神经网络(BP网络),提出一种提前24h预测f0F2的方法,该方法以前5天观测的f0F2数据拟合的5个系数以及太阳活动参数作为输入,以当天24 h的f0F2作为输出对网络进行训练,训练好的网络可以实现对f0F2提前24 h的预报.预测结果显示,利用神经网络预测的f0F2与实际观测结果变化趋势较一致,并且比IRI的计算结果更加准确.误差分析表明,在南半球Hobart(-42.9°,147.3°)台站比中国武汉站(30.4°,114.3°)的结果要好,在低年比高年要好,在冬夏季节比春秋季节稍好.本文说明利用神经网络对电离层参量进行预报是一种切实可行的方法.  相似文献   

18.
In this study, predictions of the E-CHAIM ionospheric model are compared with measurements by the incoherent scatter radars RISR at Resolute Bay, Canada, in the northern polar cap. Reasonable coverage was available for all seasons except winter for which no conclusions were drawn. It is shown that ratios of the model-to measured electron densities are close to unity in the central part of the F layer, around its peak. This is particularly evident for summer daytime. Distributions of the ratios are wider for other seasons indicating larger number of cases when the model underestimates or overestimates. E-CHAIM underestimates the electron density at ionospheric topside and bottomside by ~ 10–20 %. At the bottomside, the underestimations are strongest in summer and equinoctial nighttime. At the topside, the underestimations are strongest in autumn nighttime. Model overestimations are noticeable in the middle part of the F layer during dawn hours in autumn. Overall, the model tends to not predict highest-observed peak electron densities and the largest-observed heights of the peak.  相似文献   

19.
In this paper, we present our recent work on developing an updated global model of the ionospheric F2 peak height hmF2 parameter by combining data from the Constellation Observing System for Meteorology, Ionosphere and Climate (COSMIC/FORMOSAT-3) radio occultation (RO) measurements and from the extended global ionosonde stations. In particular, 10 Chinese ionosonde stations’ data are newly introduced into this study. The modeling technique used is based on a two-layer empirical orthogonal function (EOF) expansion. Global distributions of hmF2 maps calculated using the newly constructed global model and the one provided by the International Reference Ionosphere model (IRI-ITU-R) are compared with the global distributions of hmF2 obtained by the COSMIC RO measurements and quantitative statistical analysis of the differences between the model results and those of the COSMIC RO measurements is made for the low (2008) and high (2012) solar activity years. The obtained average root-mean-square differences (RMSEs) for our model are 27.7 km (11.1%) and 31.0 km (9.8%), respectively for the years 2008 and 2012, whereas those for the IRI-ITU-R model are 39.9 km (16.9%) and 35.0 km (11.6%), respectively. Comparison of the results calculated both by our model and the IRI-ITU-R model with the digisonde observation is also made. The comparisons show that the newly constructed global hmF2 model can reproduce reasonably well the observations and perform better than IRI-ITU-R model.  相似文献   

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