European cloud-to-ground lightning characteristics
D. R. Poelman, Wolfgang Schulz, Gerhard Diendorfer, M. Bernardi
Abstract
D. R. Poelman, Wolfgang Schulz, Gerhard Diendorfer, M. Bernardi
Abstract
Cloud-to-ground (CG) lightning data from the European Cooperation for Lightning Detection (EUCLID) network over the period 2006-2012 are explored. Mean CG flash densities vary over the European continent, with the highest density of about 7 km-2yr-1found at the triple point between Austria, Italy and Slovenia. The majority of lightning activity takes place between May and September, accounting for 85% of the total observed CG activity. Furthermore, the thunderstorm season reaches its highest activity in July, while the diurnal cycle peaks around 1500 UTC. A difference between CG flashes over land and sea becomes apparent when looking at the peak current estimates. It is found that flashes with higher peak currents occur in greater numbers over sea than over land.
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Cloud-to-ground (CG) lightning data from the European Cooperation for Lightning Detection (EUCLID) network over the period 2006-2012 are explored. Mean CG flash densities vary over the European continent, with the highest density of about 7 km-2yr-1found at the triple point between Austria, Italy and Slovenia. The majority of lightning activity takes place between May and September, accounting for 85% of the total observed CG activity. Furthermore, the thunderstorm season reaches its highest activity in July, while the diurnal cycle peaks around 1500 UTC. A difference between CG flashes over land and sea becomes apparent when looking at the peak current estimates. It is found that flashes with higher peak currents occur in greater numbers over sea than over land.
Key concepts: Lightning (connector), Thunderstorm, Meteorology, Lightning detection, Peak current, Atmospheric electricity, Environmental science, Atmospheric sciences