NTSB CAROL · Event
Event WPR14LA329
Registry · N88EW
FAA Aircraft Registry record.
Make / Model
CHRISTEN INDUSTRIES INC PITTS S-2B
Year of manufacture
1985 · 29 years old at event
Engine
LYCOMING AEIO-540 SER (260 hp)
Seats / Engines
2 seats · 1 engine
Last airworthiness date
19850506
ADS-B equipped
Yes — Mode-S AC1BF5
Registrant of record
AVIAT AIRCRAFT INC
Source: FAA Aircraft Registry (releasable master file).
Aircraft involved
Probable cause & findings
The total loss of engine power due to fuel exhaustion. Contributing to the accident was the pilot’s inadequate fuel planning.
Factual narrative
On August 5, 2014, about 1115 Pacific daylight time, a Christian Industries Inc. Pitts-S2B, N88EW, was substantially damaged during a forced landing near the Oceanside Municipal Airport (OKB), Oceanside, California. The airplane was registered to and operated by the pilot under the provisions of Title 14 Code of Federal Regulations Part 91. The airline transport rated pilot and his passenger were not injured. Visual meteorological conditions prevailed and no flight plan was filed for the personal flight. The local flight originated from the Mc Clellan-Palomar Airport (CRQ), Carlsbad, California, about 1047.In a written statement, dated August 6, 2014, the pilot reported to the National Transportation Safety Board (NTSB) investigator-in-charge (IIC), that prior to takeoff; he noted that he had three-quarters of a tank of fuel onboard the airplane, which he felt was enough fuel for a 30 minute flight plus visual flight rules reserve fuel requirements. The pilot departed and flew to an area to conduct spin practice and noted that the fuel gauge still indicated three-quarters of a tank of fuel. After performing several spins for about 15 minutes, he leveled off noticed that the fuel sight gauge was full of fuel and no air bubble was observed. The pilot added that this was not unusual following aerobatic maneuvers. The pilot proceeded to fly towards CRQ. The pilot stated that at this time, the engine began to run rough. The pilot verified the oil pressure and the fuel sight gauge, which indicated below one-half a tank of fuel. He added that the fuel level in the sight gauge varied depending on throttle position. The pilot further stated that he decided to divert to OKB and shortly after, the engine lost power. As the pilot neared OKB, he performed a left circling approach to runway 24, however, realized he was too high as he turned onto base leg for the runway. The pilot then performed a left side slip to increase the rate of descent and did not feel he was in a safe position to land. The pilot stated that he decided to perform a right 270-degree turn. The pilot said that during the turn, he realized he would not be able to make it to the runway and initiated a forced landing to an open field. Subsequently, the airplane landed hard and nosed over in an open field about 200 yards from the approach end of runway 24. During a telephone conversation with the pilot on August 5, 2014, the pilot reported that prior to takeoff; he noted that he had three-quarters of a tank of fuel onboard the airplane and departed to perform aerobatics/spin practice nearby. The pilot stated that following the completion of a few aerobatic maneuvers, he remained at a higher altitude because the engine was running rough and shortly after, he noticed that the fuel sight gauge bubble had disappeared from view. The pilot further stated that as the engine continued to run erratic, he diverted to Oceanside followed by the engine losing power. The pilot added that while the engine was running erratic, the oil pressure appeared lower than normal. When asked where the three-quarters of a tank of fuel went, the pilot replied that there must have been a leak in the system that caused the engine to run out of fuel. Examination of the airplane by a Federal Aviation Administration (FAA) inspector revealed that both wings and fuselage were structurally damaged. Prior to movement of the airplane, the FAA inspector removed the main fuel tank fuel cap and observed approximately one to two cups of liquid expel from the tank. The airplane was recovered to a secure location for further examination. Examination of the recovered airframe and the Lycoming AEIO-540-D4A5 engine revealed that the upper and lower wings were removed to facilitate transport of the wreckage. Wreckage recovery personnel reported that no fuel was observed within the upper wing header tank prior to removal of the upper wing. About 1 or 2 ounces of fuel was removed from the fuel line that extends from the fuel metering unit to the engine driven fuel pump. The liquid was bright blue in color and free of debris. About 2 to 3 ounces of liquid, yellow in color was removed from the fuel selector valve strainer. About 1 ounce of liquid was removed from the fuel transfer valve drain. All liquid removed tested negative for water when using water finding paste. All of the fuel lines remained attached and secure to their respective attach points. No evidence of any fuel leaks was observed. Prior to an engine run, the airplane was placed in a near level attitude. About 5 Gallons of fuel was added to the main fuel tank and the fuel gauge displayed about 1/4 of a tank once the fuel was added. About 5 more gallons of fuel was added to the fuel tank and the gauge indicated about 1/2 of a tank. The engine was primed using the airframe boost pump and subsequently started. Due to propeller damage, the engine was run at an idle power setting for about 5 minutes uneventfully before it was shut down using the mixture lever. No mechanical anomalies were noted during the examination of the engine or airframe that would have precluded normal operation. The pilot reported that, following spin practice in a local practice area, he leveled the airplane and noticed that the bubble within the fuel sight gauge was not visible. As the pilot began to return to the departure airport, the engine began to run rough. The pilot immediately diverted to a nearby airport, and, shortly after diverting, the engine lost power. The pilot performed a left circling approach to the runway; however, he realized he was too high as he turned onto the base leg of the traffic pattern. The pilot then performed a left sideslip to increase the rate of descent. He did not think that he was in a safe position to land and performed a right 270-degree turn. The pilot stated that, during the turn, he realized the airplane would not be able to reach the runway, and he initiated a forced landing to an open field. Subsequently, the airplane landed hard and nosed over. The pilot reported that before the flight he thought that he had three-quarters of a tank of fuel onboard the airplane, which he thought was sufficient for a 30-minute flight plus visual flight rules reserve fuel requirements. Postaccident examination of the airplane revealed that when the main fuel tank fuel cap was removed, about 1 to 2 cups of liquid drained from the fuel tank. The engine was test run while installed on the airframe without incident. In addition, the fuel indicating system was found to function normally and no leaks were observed within the fuel system. Further examination of the airplane revealed no preexisting mechanical anomalies that would have precluded normal operation. Source: NTSB Aviation Accident Database Retrieved: 2026-02-12
NTSB Findings
Hierarchical cause / factor breakdown from the FAA bulk avdata database. Each finding tagged C (Cause) or F (Factor).
- C Aircraft-Fluids/misc hardware-Fluids-Fuel-Fluid level - C
- F Personnel issues-Task performance-Planning/preparation-Fuel planning-Pilot - F
Verbatim from NTSB's published report. Source file
NTSB_2014_WPR14LA329.txt.
Findings + structured fields enriched from FAA avall.mdb.
Full investigation docket on
data.ntsb.gov ↗.
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Related research
What the literature says.
Academic papers and agency reports matching this event's aircraft type or causal vocabulary (stall, fuel exhaustion). Sourced from NASA NTRS, NTSB Safety Studies, FAA CAMI, AOPA Air Safety Institute, Embry-Riddle Scholarly Commons, arXiv, and the Semantic Scholar academic graph.
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Variation of Critical Crystallization Pressure for the Formation of Square Ice in Graphene Nanocapillaries
Two-dimensional square ice in graphene nanocapillaries at room temperature is a fascinating phenomenon and has been confirmed experimentally.
- arXiv 2023 · arXiv preprint
Polycrystallinity enhances stress build-up around ice
Damage caused by freezing wet, porous materials is a widespread problem, but is hard to predict or control. Here, we show that polycrystallinity makes a great difference to the stress build-up process…
- arXiv 2022 · arXiv preprint
Enhanced Prediction of Three-dimensional Finite Iced Wing Separated Flow Near Stall
Icing on three-dimensional wings causes severe flow separation near stall. Standard improved delayed detached eddy simulation (IDDES) is unable to correctly predict the separating reattaching flow due…
- Embry-Riddle Scholarly Commons 2021 · Journal article (JAAER)
Analysis on the Negative Emotional, Physiological, and Cognitive Responses Elicited from of the Activation of a Stall Alarm
Failing to identify an aerodynamic stall can lead to the inability of an aircraft to sustain flight. To warn pilots of an impending or fully-developed stall, many aircraft have safety devices installe…
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