Here is my theory how the major incident - a so called blackout -...

Here’s a comparison between a typical nuclear plant and a standard wind turbine:
5/n
9/n Source: Various
1. Very low inertia
Spain & Portugal were operating with 65+% levels of solar generation (>55%) and wind. Synchronous inertia across the peninsula was therefore low and far below historical averages, making the system vulnerable.
2. High northbound power transfers
Due to hot weather in France and Italy and abundant cheap Iberian solar, transmission corridors from Spain northward were heavily loaded, operating close to their stability thresholds. This left little room to export sudden shocks.
3. Initiating fault
A disturbance occurred on a major 400kV transmission line (likely between Spain and France). Possible causes include wind-driven line galloping, a lightning flashover, a wildfire affecting infrastructure, or simple equipment failure. Critically, two circuits opened nearly simultaneously.
4. Inter-area oscillation
With low spinning mass (due to solar & wind dominance), frequency oscillations between Iberia and continental Europe became unstable instead of being dampened. The frequency separation between the two areas grew rapidly — reported divergences exceeded 200 mHz.
5. Wide-area separation
Automatic grid protections activated. Under-frequency relays triggered widespread generation and load tripping. Several synchronous condensers and smaller plants disconnected. The Iberian Peninsula effectively “islanded” itself electrically from the main European grid.
6. Collapse in parts of Spain
PV inverters (solar farms) disconnected quickly due to fast frequency changes, and further generators tripped off due to extreme rate-of-change-of-frequency (RoCoF). Large regions blacked out, requiring black-start operations to gradually restore power.
10/n
Entso-e will have to establish a full report of this major incident in the coming weeks at which time we hopefully know more.
11/11 End/thx














