Gulfstream MEMORANDUM
Gulfstream MEMORANDUM
A OENEHAL DYNAMICS COMPANY
Date: June 25, 2015
To: James White Check Boxes as
Appropriate
Action
Information Only
Reply Requested
cc: Steve Forman, Michele Nierenberg, John Maxon, Paul Conti. Scott Kendall,
Michael Clune, Alex Cameron, Justin Janzen
From: Charles Roberts, II
Subject: A/C 1085 Cabin Vibration Investigation
Attachments: High Speed Vibration and Cabin Noise Data Job #AC-15-076
MV-I5-077
Introduction
The owner of CV s/n 1085 has been experiencing high levels of low frequency vibration during
the climb and cruise phase of flight. The customer scheduled a "drop in" visit to the GAC
Brunswick Service Center on 06/19/2015 to perform a maintenance flight to identify the source
of the vibration.
Summary
Accelerometers were placed on the pilot inboard seat track, the copilot inboard seat track, the
Window 2 left outboard seat track, and the Window 2 right outboard seat track. A microphone
was placed at the Window 2 center position. Engine vibration data was acquired from the left
and right broadband outputs located in the forward left and right radio racks. A normal taxi and
take-off was executed. Data was recorded during a normal climb up to 45000 feet.
Results
Analysis of the recorded data showed a 1/2 harmonic on the left engine's Ni spool during climb
through 36000 feet. The frequency of the 1/2 harmonic was 61.7 Hz with a vibration level of 0.16
in/s and a sound pressure level of 71.9 dB (Figures 1 & 2). The vibration was also measured on
the Window 2 left and right outboard seat tracks (Figure 3). When the left engine was
decelerated to idle, the 1/2 NI harmonic went away. During climb, the left engine's NI vibration
levels were as high as 0.14 in/s and the right engine's Ni vibration levels were as high as 0.20
in/s.
Recommendation
To mitigate the felt vibration during climb to 45000 feet, it is recommended to perform a 180°
clocking of the left engine fan followed by a fan trim-balance on both engines. The fan trim-
balance should achieve NI vibration levels no greater than 0.10 in/s from MCT to idle on both
engines.
Job #AC-15-076 GAO Acoustics/Vibration
FS-AN-15-077 6/25/2015
EFTA01198313
Gulfstream MEMORANDUM
A CIENEHAL DYNAMICS COMPANY
NOTE: Performing Vibration Surveys and Fan Trim Balancing in windy conditions can produce
inaccurate vibration measurements that may lead to erroneous balancing solutions. If these
actions must be performed in windy conditions, then the aircraft should be pointed nose-into-the-
wind to minimize the effects.
Data Acquisition
The engine vibration was recorded using the EVM broadband B-n-C outputs located in the upper
left and right radio racks. Engine vibration was measured with the primary and secondary
accelerometers located on the engine's fan case. The primary and secondary accelerometers were
oriented in the in-service position in the radial direction.
The engine accelerometers measure acceleration, which is integrated by the on-board signal
conditioning unit, to obtain velocity. Thus, the measured output form the maintenance port is
velocity, not acceleration.
Data Reduction
The recorded data was processed using the ArtemiS Clasic software package which was
developed by Head Acoustics. This software package provides a spectrogram and a peak hold
spectrum plot of the acoustic and vibration data.
Job #AC-15-076 GAO Acoustics/Vibration
FS-AN-15-077 6/25/2015
EFTA01198314
Left Engine Vibration During Climb Up To 45000 feet
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EFTA01198315
Sound Pressure Level at Window 2 Center
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EFTA01198316
Vibration Measured on Seat Tracks
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Ch 3 Pilot Inboard Seat Track
Ch 4 Co-Pilot Inboard Seat Track
Ch 5 Window 2 Left Outboard Seat Track
Ch 6 Window 2 Right Outboard Seat Track a(g
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Figure 3 GulfstirAm
EFTA01198317
📷 Images in this document (5 detected)
AI-generated factual descriptions of embedded images (llava:13b). These are searchable across the corpus.
[Image 1] The image appears to be a slide from a presentation, specifically labeled "Figure 2." It features a graph with a time axis on the horizontal and a frequency axis on the vertical. The graph displays a series of sound pressure levels measured at different locations around a window, labeled as "Window 2 center," "Window 2 left," "Window 2 right," "Window 1 center," and "Window 1 left."
The graph sho
[Image 2] The image is a slide from a presentation, specifically labeled as "Figure 1." It features a graph with various lines and annotations, which appears to be related to the topic of left engine vibration during climb up to 44000 feet. The graph includes annotations such as "N1," "N2," "N3," "N4," and "N5," which likely refer to different engine vibration measurements or modes. The slide also includes
[Image 3] The image shows a document with text, which appears to be a memo or a report from Gulfstream. The document is dated June 25, 2015, and is addressed to James White. The title of the document is "MEMORANDUM." The text discusses an investigation into a cabin vibration issue on a Gulfstream aircraft. It mentions that the investigation was conducted by a team of experts and that the results of the inve
[Image 4] The image is a slide from a presentation, specifically titled "Vibration Measurement on Seat Tracks." It appears to be a graph or chart with multiple lines and labels, indicating different types of measurements or data sets. The slide is numbered "Figure 3" and includes a logo in the bottom right corner that reads "Gulfstream." The slide is informational, likely part of a technical or engineering
[Image 5] The image shows a document with text, which appears to be a memo or a notice from Gulfstream. The document is titled "MEMORANDUM" and includes a header with the Gulfstream logo. The text discusses a software issue and provides instructions for data collection and handling. It mentions a specific software package and includes a section titled "Data Reflection." The document is dated and signed by a