National Repository of Grey Literature 4 records found  Search took 0.00 seconds. 
The effect of high long-lasting solar/geomagnetic activity on pressure fields in the winter northern lower atmosphere
Bochníček, Josef ; Davídkovová, Hana ; Hejda, Pavel ; Huth, Radan
The effect of high long-lasting solar/geomagnetic activity on stratospheric and tropospheric pressure distributions was investigated in the winter Northern Hemisphere. The analysis concerns winter period (December 1 – March 30) in 1952-2003. Solar activity is characterized by 30 day means of R number, geomagnetic activity by 30 day means of daily sum of Kp index. Stratospheric and tropospheric pressure distributions are described by 30 day mean anomalies in geopotential height (GPH) at 50 hPa/500 hPa. GPH anomalies are computed as the difference between the long-term 30 day averages (covering 33 year period, 1970-2003) and actual 30 day averages. Data are taken from the NCEP/NCAR reanalysis
Seismic swarm at the Hronov-Poříčí Fault in January 2008
Málek, Jiří ; Stejskal, Vladimír ; Zedník, Jan
In January 2008 the small-aperture seismic array Ostaš in East Bohemia registered 189 microearthquakes, forming seismic swarm. Basic information about this swarm is given in the paper.
Association between Solar Proton Events and pressure decreases in the cold periods of the northern troposphere
Bochníček, Josef ; Davídkovová, Hana ; Hejda, Pavel ; Huth, Radan
Veretenko and Thejll's (JASTP, 2004) study of the relation between the increase of solar energetic proton flux and the changes in the northern troposphere pressure and temperature during cold perios (October-March) of years 1980-1989 has shown that increased SEP flux used to be associated, with delay 1-3 days, with the pressure decrease in the region between Greenland and Iceland. Our contribution extended the studies over years 1990-2003. The results obtained are in good agreement with the phenomenon described by Veretenko and Thejll.
The influence of geomagnetic activity on the course of stratospheric warming
Davídkovová, Hana ; Bochníček, Josef ; Hejda, Pavel ; Huth, Radan
The temperature of the winter polar lower stratosphere is affected except the solar activity and atmospheric circulation by the geomagnetic activity as well. Plausible physical mechanism for its effect was described by Arnold and Robinson. According to this paper, warming in the lower thermosphere caused by geomagnetic activity produces the reduction of blending mid and high latitude air masses. In consequence of this reduction the temperature of solar insulated region (polar lower stratosphere)decreases. The aim of this work is to verify functionality of such mechanism.

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