Overall Trends
Total, fatal, and serious accidents in the selected range.
Search investigations, review source evidence, monitor watched reports, and trace long-term patterns from one calm, data-first workspace.
Fast key and full-text search with live filters, watches, and precise metadata.
Use quotes for exact phrase matches (for example "fuel selector valve").
Track fatal and non-fatal accident patterns across Part 91, Part 135, and Part 121 operations.
Major cases, deep-report coverage, and investigation media across decades of NTSB history.
Move quickly by aircraft, airport, operator, and time with indexes built for research, not wandering.
NTSB Reports is an independent research and search tool for public aviation accident and incident records. It brings NTSB aviation reports, structured fields, docket files, extracted figures, photos, videos, and update history into one searchable interface.
The goal is practical safety education: make it faster to find relevant investigations, compare similar events, review factual records, and understand the evidence behind probable-cause and preliminary reports.
The investigative work and source records belong to the National Transportation Safety Board and the published investigation record. This site is not affiliated with or endorsed by the NTSB.
Coaling, CA
The pilot reported that during flight, the engine started missing, then lost 10 inches of manifold pressure. He immediately positioned the mixture to full rich, switched fuel tanks and started the fuel boost pump, but the engine continued to worsen. Shortly after that, the oil pressure went to zero and the engine quit. The pilot received radar vectors through clouds toward the nearest airport, but he was unable to glide that far. Subsequently, the plane crash landed in an open field. A teardown of the engine revealed that the #5 piston had sustained pre-ignition/detonation burn through of the ring belt structure between the lower spark plug and exhaust valve positions. The #5 connecting rod had overheated to bearing destruction. Either the crankpin end of the rod or the release cap had ruptured the case. The fuel pump idle adjustment and aneroid had been set to high pressure (lean) and the fuel control needle valve had been adjusted to high flow. These settings would cause preignition/detonation.
THE PILOT REPORTED THAT DURING FLIGHT, THE ENGINE STARTED MISSING, THEN LOST 10 INCHES OF MANIFOLD PRESSURE. HE IMMEDIATELY POSITIONED THE MIXTURE TO FULL RICH, SWITCHED FUEL TANKS AND STARTED THE FUEL BOOST PUMP, BUT THE ENGINE CONTINUED TO WORSEN. SHORTLY AFTER THAT, THE OIL PRESSURE WENT TO ZERO AND THE ENGINE QUIT. THE PILOT RECEIVED RADAR VECTORS THROUGH CLOUDS TOWARD THE NEAREST AIRPORT, BUT HE WAS UNABLE TO GLIDE THAT FAR. SUBSEQUENTLY, THE PLANE CRASH LANDED IN AN OPEN FIELD. A TEARDOWN OF THE ENGINE REVEALED THAT THE #5 PISTON HAD SUSTAINED PRE- IGNITION/DETONATION BURN THROUGH OF THE RING BELT STRUCTURE BETWEEN THE LOWER SPARK PLUG AND EXHAUST VALVE POSITIONS. THE #5 CONNECTING ROD HAD OVERHEATED TO BEARING DESTRUCTION. EITHER THE CRANKPIN END OF THE ROD OR THE RELEASE CAP HAD RUPTURED THE CASE. THE FUEL PUMP IDLE ADJUSTMENT AND ANEROID HAD BEEN SET TO HIGH PRESSURE (LEAN) AND THE FUEL CONTROL NEEDLE VALVE HAD BEEN ADJUSTED TO HIGH FLOW. THESE SETTING WOULD CAUSE PREIGNITION/DETONATION.