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首页> 外文期刊>Advances in space research >F-region ionospheric parameters observed in the equatorial and low latitude regions during medium solar activity in the Brazilian sector and comparison with the IRI-2007 model results
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F-region ionospheric parameters observed in the equatorial and low latitude regions during medium solar activity in the Brazilian sector and comparison with the IRI-2007 model results

机译:巴西地区中等太阳活动期间在赤道和低纬度地区观测到的F区电离层参数,并与IRI-2007模型结果进行了比较

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摘要

The ionospheric sounding observations using the Canadian Advanced Digital Ionosondes (CADIs) operational at Palmas (PAL; 10.2°S, 48.2°W; dip latitude 6.6°S; a near-equatorial station), and Sao Jose dos Campos (SJC, 23.2°S, 45.9°W; dip latitude 17.6°S; a low-latitude station located under the southern crest of the equatorial ionospheric anomaly), Brazil, are analyzed during the different seasons viz., winter (June and July 2003), spring (September and October 2003), summer (December 2003 and January 2004), and fall (March and April 2004). The period used has medium solar activity (sunspot number between 77.4 and 39.3). The seasonal mean variations (using only geomagnet-ically quiet days) of the ionospheric parameters foF2 (critical frequency of the F-region), hpF2 (virtual height at 0.834 foF2; considered to be close to hmF2 (peak height of the F-region)), and h'F (minimum virtual height of the F-region) are calculated and compared between PAL and SJC. The prominent differences between PAL and SJC are as follows: h'F variations show strong post-sunset enhancement at PAL during the seasons of spring, summer, and fall; hpF2 variations show pre-sunrise uplifting of the F-layer at both stations during all the seasons and the hpF2 values during the daytime are lower at SJC compared with PAL during all the seasons; the foF2 variations show mid-day bite-out at PAL during all the seasons and SJC shows strong equatorial ionospheric anomaly during summer and fall seasons. Also, the seasonal variations of the ionospheric parameters foF2 and hpF2 (with ± 1 standard deviation) observed at PAL and SJC are compared with the IRI-2007 model results of foF2 and hmF2. In addition, variations of the foF2 and hpF2 observed at SJC are compared with the IRI-2001 model results of foF2 and hmF2. It should be pointed out that the ionospheric parameter hpF2 is much easier to obtain using computer program developed at UNIVAP compared with hmF2 (using POLAN program). During the daytime due to underlying ionization hpF2 estimated is higher (approximately 50 km) than the true peak height hmF2. During the nighttime hpF2 is fairly close to hmF2. The comparison between the foF2 variations observed at PAL and SJC with the IRI-2007 model results shows a fairly good agreement during all the seasons. However, the comparison between the hpF2 variations observed at PAL and SJC with the hmF2 variations with the IRI-2007 model results shows: (1) a fairly good agreement during the nighttime in all the seasons; (2) the model results do not show the pre-sunrise uplifting of the F-layer at PAL and SJC in any season; (3) the model results do not show the post-sunset uplifting of the F-layer at PAL; (4) considering that, in general, hpF2 is higher than hmF2 during the daytime by about 50 km, the model results are in good agreement at PAL and SJC during all the seasons except summer at SJC, when large discrepancies in the observed hpF2 and modeled hmF2 are observed. Also, it has been observed that, in general, hmF2 values for SJC calculated using IRI-2001 are higher than IRI-2007 during the daytime in winter, summer, and fall. However, hmF2 values for SJC calculated using IRI-2001, are lower than IRI-2007 during the nighttime in spring.
机译:使用在帕尔马斯(PAL; 10.2°S,48.2°W;倾角6.6°S;近赤道站)和圣若泽杜斯坎普斯(SJC,23.2°)运行的加拿大高级数字离子探空仪(CADI)进行电离层测深观测南半球,南纬45.9°;北纬17.6°;位于赤道电离层异常南峰下方的低纬度站),在冬季,冬季(2003年6月和2003年7月),春季( 2003年9月和2003年10月),夏季(2003年12月和2004年1月)和秋季(2004年3月和2004年4月)。所使用的时期具有中等太阳活动(太阳黑子数在77.4和39.3之间)。电离层参数foF2(F区的临界频率),hpF2(0.834 foF2处的虚拟高度;被认为接近hmF2(F区的峰值高度)的季节性平均变化(仅使用地磁安静的日子) )),然后计算h'F(F区域的最小虚拟高度)并在PAL和SJC之间进行比较。 PAL和SJC之间的显着差异如下:h'F的变化表明PAL在春季,夏季和秋季的日落后有明显的增强。 hpF2的变化表明,在所有季节中,两个站上两个站的F层都在日出前隆升,而在SJC中,白天的hpF2值低于所有季节中的PAL; foF2的变化表明在所有季节中PAL的午间叮咬,而SJC在夏季和秋季均显示出强烈的赤道电离层异常。另外,将在PAL和SJC观测到的电离层参数foF2和hpF2的季节性变化(具有±1标准偏差)与foF2和hmF2的IRI-2007模型结果进行了比较。此外,将在SJC观察到的foF2和hpF2的变化与foF2和hmF2的IRI-2001模型结果进行了比较。应当指出,与hmF2(使用POLAN程序)相比,使用在UNIVAP开发的计算机程序更容易获得电离层参数hpF2。在白天,由于潜在的电离作用,估计的hpF2比真实的峰高hmF2高(约50 km)。在夜间,hpF2非常接近hmF2。在PAL和SJC观察到的foF2变化与IRI-2007模型结果之间的比较表明,在所有季节中,foF2的变化都相当不错。但是,在PAL和SJC处观察到的hpF2变异与hmF2变异与IRI-2007模型结果之间的比较表明:(1)在所有季节的夜间都有相当好的一致性; (2)模型结果未显示任何季节PAL和SJC的F层升升前; (3)模型结果未显示PAL日落后F层的隆升; (4)考虑到通常hpF2在白天比hmF2高出约50 km,除夏季在SJC以外的其他所有季节,PAL和SJC的模型结果都吻合良好,这是因为夏季观测到的hpF2和观察到模拟的hmF2。而且,已经观察到,通常,在冬季,夏季和秋季的白天,使用IRI-2001计算的SJC的hmF2值高于IRI-2007。但是,在春季的夜间,使用IRI-2001计算的SJC的hmF2值低于IRI-2007。

著录项

  • 来源
    《Advances in space research》 |2011年第4期|p.718-728|共11页
  • 作者单位

    Universidade do Vale do Paraiba (UNIVAP)IIP&D, Avenida Shishima Hifumi, 2911. Urbanova, Sao Jose dos Campos, SP, Brazil;

    Universidade do Vale do Paraiba (UNIVAP)IIP&D, Avenida Shishima Hifumi, 2911. Urbanova, Sao Jose dos Campos, SP, Brazil,Avenida Shishima Hifumi, 2911, Urbanova, 12244-000 Sao Jose dos Campos, SP, Brazil;

    Universidade do Vale do Paraiba (UNIVAP)IIP&D, Avenida Shishima Hifumi, 2911. Urbanova, Sao Jose dos Campos, SP, Brazil;

    Universidade do Vale do Paraiba (UNIVAP)IIP&D, Avenida Shishima Hifumi, 2911. Urbanova, Sao Jose dos Campos, SP, Brazil;

    Universidade do Vale do Paraiba (UNIVAP)IIP&D, Avenida Shishima Hifumi, 2911. Urbanova, Sao Jose dos Campos, SP, Brazil;

    Universidade do Vale do Paraiba (UNIVAP)IIP&D, Avenida Shishima Hifumi, 2911. Urbanova, Sao Jose dos Campos, SP, Brazil;

    Centro Univ. Lulerano de Palmas (CEULP), Universidade Luterana do Brasil (ULBRA), Palmas, TO, Brazil;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ionosphere; f-region; international reference ionosphere-2007;

    机译:电离层f区国际参考电离层-2007;

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