Long landing rollout — ITY1264

LIRF · 16L

2026-04-18 10:09 UTC· LIRN LIRU· A20N

ITY1264 was operating from LIRN to LIRU on 2026-04-18. SkyMeter detected a long landing rollout at Leonardo da Vinci–Fiumicino Airport (LIRF) on runway 16L at 10:09 UTC. Trace data at the event: 3 ft AGL, 17 kt GS, 0 fpm vertical. Approach stability score: 60/100. Scores in this band occur on roughly 10-15% of approaches at this runway, with multiple gates outside the per-runway envelope. METAR at the time reported 13 kt wind, 12 kt crosswind component, 9,994 m visibility. A long landing rollout is detected when ground deceleration after touchdown is below the per-runway P10 envelope. It is an observational measure of rollout efficiency, not a runway-exit incident. Detection algorithm and known limitations: see SkyMeter methodology.

Pilot review data

  • Runway 16L
  • 3 ft AGL at event
  • 17 kt ground speed
  • 0 fpm vertical
  • Approach stability 60/100
  • 13 kt wind
  • 12 kt crosswind component
  • 9,994 m visibility
  • LIRF 211250Z 27009KT 240V300 CAVOK 29/16 Q1018 NOSIG

Flight context

  • ITY1264
  • A20N
  • LIRN → LIRU
  • 2026-04-18 10:09 UTC
  • LIRF runway 16L

All events on this flight

Long landing rollout 10:09:10 UTC · LIRF runway 16L · 3 ft AGL · 17 kt GS
Long landing rollout 10:09:10 UTC · LIRU runway 16 · 3 ft AGL · 17 kt GS
Diversion 10:09:11 UTC · LIRU runway 16 · 54 ft AGL · 120 kt GS

Automated analysis. Events shown on this page (such as go-around, unstable approach, or runway events) are heuristic classifications produced by algorithms from publicly broadcast ADS-B data. They are intended to surface flights of interest for further review — they are not findings of fact, and they do not determine pilot fault, regulatory compliance, or the cause of any occurrence. Coverage gaps and sensor noise can affect accuracy. Only the relevant civil aviation authority or accident investigation body can make official determinations. How we detect events · Dispute or correct this data

SkyMeter · trace data observed via ADS-B· LIRF