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Ionospheric anomalous disturbance during the tropospheric strong convective weather

机译:对流层强对流天气中的电离层异常扰动

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摘要

Based on TBB data from Chinese FY-2 geostationary satellite, NCEP Reanalysis data and GPS-TEC data provided by IGS, by using sliding mean method, ionospheric anomalous disturbance during a typical convective weather was investigated. Results show that this severe convective weather was caused by a high-altitude cold eddy and a strong squall line. The ionospheric total electron content increased abnormally when convection occurred. The maximum increase of tested point was more than 6 TECU mainly at 8-12 UT of the day, and the peak time of the day lagged about 2 h than usual. Ionospheric anomalous region reached about 20 longitudes and 10 latitudes, and anomalous center was on the west side of the convective cloud, which may be related to the topographic effect of the Tibetan Plateau. Series of Case Studies further determine that convective weather can influence the ionospheric state. Furthermore, tropospheric vertical velocity was also analyzed to discuss the possible mechanisms of troposphere-ionosphere coupling. (C) 2015 Elsevier Ltd. All rights reserved.
机译:基于中国风云二号对地静止卫星的TBB数据,NCEP再分析数据和IGS提供的GPS-TEC数据,采用滑动平均法,研究了典型对流天气中的电离层异常扰动。结果表明,这种强对流天气是由高空冷涡和强线引起的。对流时,电离层总电子含量异常增加。主要在一天的8-12 UT,测试点的最大增加超过6 TECU,一天的高峰时间比平时滞后2小时。电离层异常区达到约20个经度和10个纬度,并且异常中心位于对流云的西侧,这可能与青藏高原的地形效应有关。一系列案例研究进一步确定了对流天气会影响电离层状态。此外,还对流层垂直速度进行了分析,以探讨对流层-电离层耦合的可能机理。 (C)2015 Elsevier Ltd.保留所有权利。

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