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Accidents · NTSB GAA17CA237 · Final report

Brantly B 2B accident near Earl Park, Indiana, April 18, 2017

On April 18, 2017 at about 3:30 pm local time, a 1964 Brantly B 2B (helicopter), registered N2198U, was substantially damaged in an accident during takeoff near Earl Park, Indiana (Rheude airport). It was a personal flight under general aviation rules (Part 91). No one was hurt; 1 person was on board or involved. The weather was visual conditions (good weather).

The NTSB's probable cause their words, unchanged

The pilot’s failure to recognize that he was operating in the weathercock stability flight regime of loss of tail rotor effectiveness, which resulted in a loss of directional control during the execution of a right pedal turn.

Source: NTSB aviation accident database, copy made October 5, 2026. Docket and reports at the NTSB.

What the record shows

Date
April 18, 2017 · about 3:30 pm local time
Place
Earl Park, Indiana · Rheude · map
Type
Accident
Injuries
No one was hurt; 1 person was on board or involved.
Weather
visual conditions (good weather)
Aircraft
Brantly B 2B, built 1964 · all B 2Bs on the register
Registration
N2198U · no longer on the register · serial 409
Damage
Substantial damage
Flight
Personal flight · general aviation rules (Part 91)

The NTSB's narrative final · quoted from the NTSB record

The pilot in the helicopter reported that, after 30 minutes of "hover pattern work," he decided to depart the practice area. He reported that the wind at the time of the accident was from 150° between 5 and 15 knots with 30-knot wind gusts. The pilot exited the practice area. He made a right pedal turn at 25 to 30 ft above ground level to return to the practice area. About 120° after beginning the right pedal turn, he felt a high wind gust, and the helicopter began to rotate to the right, "which I could not terminate through the controls." The helicopter descended, struck the ground, and rolled onto its left side. The helicopter sustained substantial damage to the main rotor drive system and the tail rotor drive system. According to the Federal Aviation Administration Helicopter Flying Handbook (FAA-8083-21A), The Helicopter Instructors Flying Handbook (FAA-8083-4), and Advisory Circular (AC) 90-95 Unanticipated Rapid Right Yaw,         Loss of Tail Rotor Effectiveness (LTE) is a critical; low-speed aerodynamic flight characteristic which can result in an uncommanded rapid yaw rate which does not subside of its own accord and, if not corrected, can result in the loss of aircraft control. According to FAA-8083-21A, Chapter 11-20, paragraph 2:         Weathercock Stability (120–240°)         In this region, the helicopter attempts to weathervane, or weathercock, its nose into the relative wind. Unless a resisting pedal input is made, the helicopter starts a slow, uncommanded turn either to the right or left, depending upon the wind direction. If the pilot allows a right yaw rate to develop and the tail of the helicopter moves into this region, the yaw rate can accelerate rapidly. In order to avoid the onset of LTE in this downwind condition, it is imperative to maintain positive control of the yaw rate and devote full attention to flying the helicopter.         Weathercock stability is defined as a region of loss of tail rotor effectiveness (120 degree - 240 degree tailwind) that will weathervane the helicopter, and if not prevented will result in a loss of helicopter control about the horizontal axis. The handbook further states:         Pilots who put themselves in situations where the combinations above occur should know that they are likely to encounter LTE. The key is to not put the helicopter in a compromising condition but if it does happen being educated enough to recognize the onset of LTE and be prepared to quickly react to it before the helicopter cannot be controlled. According to AC 90-95, Section 10. a. 1-2 (page 8), Recommended Recovery Techniques:         a. If a sudden unanticipated right yaw occurs, the pilot should perform the following:         (1) Apply full left pedal. Simultaneously, move cyclic forward to increase speed. If altitude permits, reduce power.         (2) As recovery is affected, adjust controls for normal forward flight.         b. Collective pitch reduction will aid in arresting the yaw rate but may cause an increase in the rate of descent. Any large, rapid increase in collective to prevent ground or obstacle contact may further increase the yaw rate and decrease rotor rpm. Per the National Transportation Safety Board Pilot Aircraft Accident Report, the pilot reported that he should have exited the practice area to the west with an immediate left turn to the south, allowed the helicopter to establish translational lift, and increased airspeed and altitude before making a turn to return to the practice area. "My initial plan was flawed from the outset, in retrospect." The pilot reported that there were no preaccident mechanical malfunctions or failures with the helicopter that would have precluded normal operation.

The complete narrative as the NTSB published it. The NTSB's docket holds the report as a PDF and any photographs, statements and other documents from the investigation.

The factual record from the NTSB's investigation tables, in plain English

What happened, in order

  1. Loss of tail rotor effectiveness during takeoff defining event
  2. Loss of control in flight during takeoff
  3. Collision with terrain or object (not controlled flight into terrain) during takeoff

The NTSB's findings

  • cause Personnel issues › Action/decision › Info processing/decision › Identification/recognition › Pilot
  • cause Personnel issues › Task performance › Planning/preparation › Flight planning/navigation › Pilot
  • cause Personnel issues › Task performance › Use of equip/info › Aircraft control › Pilot
  • cause Aircraft › Aircraft oper/perf/capability › Performance/control parameters › Directional control › Not attained/maintained
  • Environmental issues › Conditions/weather/phenomena › Wind › Gusts › Effect on operation

Pilot

  • Certificate: private
  • Ratings: rotorcraft: helicopter
  • Flight time: 119.1 hours in all; 10.1 in this make and model; 84.1 as pilot in command
  • Last flight review: October 18, 1995
  • Medical certificate: Class 3 (without waivers/limitations)
  • Seat: rgt
  • Injury: no injuries

The aircraft

  • Airframe total time: 1,269.2 hours
  • Last inspection: annual inspection, May 2, 2015
  • Maximum gross weight: 1,670 lb
  • Seats: 2
  • Landing gear: fixed
  • Engine: Lycoming IVO760 (piston); 1,269 hours total

The flight

  • Departed from: II08 Earl Park IN at 3:00 pm
  • Destination: II08 Earl Park IN
  • Flight plan: VFR

Weather at the time

  • Light: daylight
  • Wind: from 130° at 14 knots, gusting 17
  • Visibility: 10 statute miles
  • Sky: clear
  • Temperature: 66°F (19°C), dew point 39°F (4°C)
  • Altimeter: 30.18 inHg
  • Observation at 3:15 pm from KRZL, 20 miles away

Injuries

FatalSeriousMinorNone
Flight crew1

Documents from the investigation the NTSB's docket: the evidence folder behind the report

The docket, the folder of records gathered during an investigation (maintenance records, photographs, witness statements, examinations), has not been read from the NTSB for this case yet; the list appears here once it has. Open the docket at the NTSB.

Other NTSB records under N2198U the same tail number, which may have belonged to a different aircraft at the time

1995-04-19CHI95LA130 · accident near Winfield, KS · substantial damage · no injuries

Everything on this page comes from the NTSB's public records. The narrative, probable cause and findings are the NTSB's own words; the coded tables behind the report are written out in plain English, with pilots' ages, home towns and medical details left out. The documents and photographs are the NTSB's docket, shown as the NTSB released them. This site's own text never names anyone involved. A preliminary report can change; the final report usually follows one to two years later, and the page is refreshed when it does.