Research on Transfer Characteristics of Engine Vibration Load to Cabin Seat

Aeroengine is one of the main vibration sources that affect the passenger comfort. The contribution of engine vibration to the vibration response of seat will provide basic data for the design of airliner vibration comfort and engine vibration isolation installation. Firstly, the dynamical model of...

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Format: Article
Language:zho
Published: The Northwestern Polytechnical University 2020-12-01
Series:Xibei Gongye Daxue Xuebao
Subjects:
Online Access:https://www.jnwpu.org/articles/jnwpu/full_html/2020/06/jnwpu2020386p1163/jnwpu2020386p1163.html
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spelling doaj-0496017f2ee349299b88d9f81b0bb25e2021-05-02T19:25:20ZzhoThe Northwestern Polytechnical UniversityXibei Gongye Daxue Xuebao1000-27582609-71252020-12-013861163117010.1051/jnwpu/20203861163jnwpu2020386p1163Research on Transfer Characteristics of Engine Vibration Load to Cabin Seat0123School of Aeronautics, Northwestern Polytechnical UniversitySchool of Aeronautics, Northwestern Polytechnical UniversitySchool of Aeronautics, Northwestern Polytechnical UniversitySchool of Aeronautics, Northwestern Polytechnical UniversityAeroengine is one of the main vibration sources that affect the passenger comfort. The contribution of engine vibration to the vibration response of seat will provide basic data for the design of airliner vibration comfort and engine vibration isolation installation. Firstly, the dynamical model of middle fuselage compartment with double-beam wing was established. Then, based on the typical vibration load spectrum of the engine, the acceleration responses of the key nodes of the wing beam and the seat connection points were analyzed, and the main path of engine vibration transmission to seats was identified. Finally, using operational transfer path analysis (OTPA) method, the contribution of engine front and rear mount point vibration to the vertical acceleration response of the seats was compared, and the three-dimensional information of wing structure vibration transmission was explored. The results show that the fundamental frequency component of low-pressure rotor of engine vibration has the greatest impact on the seat vertical response under takeoff and cruise conditions, the contribution rate of the front mount point vibration is about 71% and 67% respectively. However, the fundamental and its 3/2 times frequency components of high-pressure rotor have relatively large impact on the seats vertical response under flight idle state, and the contribution rate of engine front mount point vibration is about 45% and 60% respectively. In addition, the engine vibration is mainly transmitted from the wing front beam to the seat vertical response. The vertical direction of the wing beam and the rotation direction around the fuselage are also the main direction of vibration transmission.https://www.jnwpu.org/articles/jnwpu/full_html/2020/06/jnwpu2020386p1163/jnwpu2020386p1163.htmlengine vibrationotpavibration isolationvibration contributionload transmission
collection DOAJ
language zho
format Article
sources DOAJ
title Research on Transfer Characteristics of Engine Vibration Load to Cabin Seat
spellingShingle Research on Transfer Characteristics of Engine Vibration Load to Cabin Seat
Xibei Gongye Daxue Xuebao
engine vibration
otpa
vibration isolation
vibration contribution
load transmission
title_short Research on Transfer Characteristics of Engine Vibration Load to Cabin Seat
title_full Research on Transfer Characteristics of Engine Vibration Load to Cabin Seat
title_fullStr Research on Transfer Characteristics of Engine Vibration Load to Cabin Seat
title_full_unstemmed Research on Transfer Characteristics of Engine Vibration Load to Cabin Seat
title_sort research on transfer characteristics of engine vibration load to cabin seat
publisher The Northwestern Polytechnical University
series Xibei Gongye Daxue Xuebao
issn 1000-2758
2609-7125
publishDate 2020-12-01
description Aeroengine is one of the main vibration sources that affect the passenger comfort. The contribution of engine vibration to the vibration response of seat will provide basic data for the design of airliner vibration comfort and engine vibration isolation installation. Firstly, the dynamical model of middle fuselage compartment with double-beam wing was established. Then, based on the typical vibration load spectrum of the engine, the acceleration responses of the key nodes of the wing beam and the seat connection points were analyzed, and the main path of engine vibration transmission to seats was identified. Finally, using operational transfer path analysis (OTPA) method, the contribution of engine front and rear mount point vibration to the vertical acceleration response of the seats was compared, and the three-dimensional information of wing structure vibration transmission was explored. The results show that the fundamental frequency component of low-pressure rotor of engine vibration has the greatest impact on the seat vertical response under takeoff and cruise conditions, the contribution rate of the front mount point vibration is about 71% and 67% respectively. However, the fundamental and its 3/2 times frequency components of high-pressure rotor have relatively large impact on the seats vertical response under flight idle state, and the contribution rate of engine front mount point vibration is about 45% and 60% respectively. In addition, the engine vibration is mainly transmitted from the wing front beam to the seat vertical response. The vertical direction of the wing beam and the rotation direction around the fuselage are also the main direction of vibration transmission.
topic engine vibration
otpa
vibration isolation
vibration contribution
load transmission
url https://www.jnwpu.org/articles/jnwpu/full_html/2020/06/jnwpu2020386p1163/jnwpu2020386p1163.html
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