Hurricane Gabrielle's Impact on Spain as an Extratropical Storm
Hurricane Gabrielle's remnants are impacting Spain as an extratropical storm, causing notable weather changes.
- • Hurricane Gabrielle transitions into an extratropical storm affecting Spain
- • Significant rainfall and potential flooding expected in northern regions
- • Meteorologists warn of a swift temperature drop and hazardous conditions
- • Spanish Meteorological Agency actively monitoring the situation
Key details
The remnants of Hurricane Gabrielle are set to impact Spain, transitioning into an extratropical storm that is expected to arrive imminently. According to RTVE, the storm will contribute to significant weather changes across the Iberian Peninsula, particularly affecting areas in the north and northwest.
National Geographic reports that while the remnants of hurricanes usually bring heavy rainfall and strong winds, Gabrielle's transformation will manifest in a unique way, distinct from typical expectations of hurricane remnants. The storm is predicted to create atmospheric instability, leading to substantial rainfall and potential flooding in certain regions.
Meteorologists have noted that the extratropical storm will trigger a marked drop in temperatures across Spain, with some areas experiencing autumn-like conditions uncharacteristic for late September. The convergence of Gabrielle's atmospheric conditions with existing weather patterns could also intensify the storm's effects, posing risks for coastal regions prone to flooding.
As Gabrielle continues its journey across Europe, the Spanish Meteorological Agency (AEMET) is maintaining close monitoring, advising residents to prepare for abrupt weather changes. There are warnings of strong winds and heavy rain, particularly along the northern coasts, which could lead to hazardous conditions.
In summary, as of September 25, 2025, Spain braces for the effects of the extratropical storm deriving from Hurricane Gabrielle, with expectations of significant atmospheric changes and adverse weather conditions.