Numerical calculation and analysis of aero-acoustic characteristics of tilt rotor in different tilt angles

The numerical calculation model for the aero-acoustic analysis of a tilt rotor was established by combining the free wake method and the FW-H (Ffowcs Williams-Hawkings) equation. The numerical method was validated by using the tilt rotor′s aero-acoustic test results. The aero-acoustic characteristic...

Full description

Bibliographic Details
Published in:Xibei Gongye Daxue Xuebao
Main Authors: YUAN Mingchuan, SUN Huixun, LI Zhibin, NIU Qingfeng, FAN Feng
Format: Article
Language:Chinese
Published: EDP Sciences 2024-04-01
Subjects:
Online Access:https://www.jnwpu.org/articles/jnwpu/full_html/2024/02/jnwpu2024422p205/jnwpu2024422p205.html
_version_ 1850757768338735104
author YUAN Mingchuan
SUN Huixun
LI Zhibin
NIU Qingfeng
FAN Feng
author_facet YUAN Mingchuan
SUN Huixun
LI Zhibin
NIU Qingfeng
FAN Feng
author_sort YUAN Mingchuan
collection DOAJ
container_title Xibei Gongye Daxue Xuebao
description The numerical calculation model for the aero-acoustic analysis of a tilt rotor was established by combining the free wake method and the FW-H (Ffowcs Williams-Hawkings) equation. The numerical method was validated by using the tilt rotor′s aero-acoustic test results. The aero-acoustic characteristics of dual tilt rotors that take into account the force and moment trim of an aircraft in its typical transition path were calculated. The unsteady air load of a rotor blade and its noise data in different observational positions were acquired. The acoustic directivity and sound pressure level of the tilt rotor in its different tilt angles were analysed. The results show that: the acoustic directivity characteristics of an isolate tilt rotor and dual tilt rotors were quite different due to the superposition and offset during noise radiation; the sound pressure level first increases and then decreases along with the rotor′s tilt angle; the maximum sound pressure level occurs at the tilt angle of 30 degree; the acoustic directivity and sound pressure level in different tilt angles vary due to multiple factors such as the Mach number at the rotor tip, air load and rotor orientation.
format Article
id doaj-art-7c7a6fdfdccc435ca74e677f11cecf35
institution Directory of Open Access Journals
issn 1000-2758
2609-7125
language zho
publishDate 2024-04-01
publisher EDP Sciences
record_format Article
spelling doaj-art-7c7a6fdfdccc435ca74e677f11cecf352025-08-19T22:34:53ZzhoEDP SciencesXibei Gongye Daxue Xuebao1000-27582609-71252024-04-0142220521310.1051/jnwpu/20244220205jnwpu2024422p205Numerical calculation and analysis of aero-acoustic characteristics of tilt rotor in different tilt anglesYUAN Mingchuan0SUN Huixun1LI Zhibin2NIU Qingfeng3FAN Feng4National Key Laboratory of Helicopter Aeromechanics, China Helicopter Research and Development InstituteNational Key Laboratory of Helicopter Aeromechanics, China Helicopter Research and Development InstituteNational Key Laboratory of Helicopter Aeromechanics, China Helicopter Research and Development InstituteNational Key Laboratory of Helicopter Aeromechanics, China Helicopter Research and Development InstituteNational Key Laboratory of Helicopter Aeromechanics, China Helicopter Research and Development InstituteThe numerical calculation model for the aero-acoustic analysis of a tilt rotor was established by combining the free wake method and the FW-H (Ffowcs Williams-Hawkings) equation. The numerical method was validated by using the tilt rotor′s aero-acoustic test results. The aero-acoustic characteristics of dual tilt rotors that take into account the force and moment trim of an aircraft in its typical transition path were calculated. The unsteady air load of a rotor blade and its noise data in different observational positions were acquired. The acoustic directivity and sound pressure level of the tilt rotor in its different tilt angles were analysed. The results show that: the acoustic directivity characteristics of an isolate tilt rotor and dual tilt rotors were quite different due to the superposition and offset during noise radiation; the sound pressure level first increases and then decreases along with the rotor′s tilt angle; the maximum sound pressure level occurs at the tilt angle of 30 degree; the acoustic directivity and sound pressure level in different tilt angles vary due to multiple factors such as the Mach number at the rotor tip, air load and rotor orientation.https://www.jnwpu.org/articles/jnwpu/full_html/2024/02/jnwpu2024422p205/jnwpu2024422p205.htmltilt rotoraero-acoustic characteristicstilt anglefree wake methodfw-h equation
spellingShingle YUAN Mingchuan
SUN Huixun
LI Zhibin
NIU Qingfeng
FAN Feng
Numerical calculation and analysis of aero-acoustic characteristics of tilt rotor in different tilt angles
tilt rotor
aero-acoustic characteristics
tilt angle
free wake method
fw-h equation
title Numerical calculation and analysis of aero-acoustic characteristics of tilt rotor in different tilt angles
title_full Numerical calculation and analysis of aero-acoustic characteristics of tilt rotor in different tilt angles
title_fullStr Numerical calculation and analysis of aero-acoustic characteristics of tilt rotor in different tilt angles
title_full_unstemmed Numerical calculation and analysis of aero-acoustic characteristics of tilt rotor in different tilt angles
title_short Numerical calculation and analysis of aero-acoustic characteristics of tilt rotor in different tilt angles
title_sort numerical calculation and analysis of aero acoustic characteristics of tilt rotor in different tilt angles
topic tilt rotor
aero-acoustic characteristics
tilt angle
free wake method
fw-h equation
url https://www.jnwpu.org/articles/jnwpu/full_html/2024/02/jnwpu2024422p205/jnwpu2024422p205.html
work_keys_str_mv AT yuanmingchuan numericalcalculationandanalysisofaeroacousticcharacteristicsoftiltrotorindifferenttiltangles
AT sunhuixun numericalcalculationandanalysisofaeroacousticcharacteristicsoftiltrotorindifferenttiltangles
AT lizhibin numericalcalculationandanalysisofaeroacousticcharacteristicsoftiltrotorindifferenttiltangles
AT niuqingfeng numericalcalculationandanalysisofaeroacousticcharacteristicsoftiltrotorindifferenttiltangles
AT fanfeng numericalcalculationandanalysisofaeroacousticcharacteristicsoftiltrotorindifferenttiltangles