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Numerical method for simulating tire rolling noise by the concept of periodically exciting contact force

Authors
Lee, Han-WoolCho, Jin-RaeJeong, Weui-Bong
Issue Date
Oct-2017
Publisher
KOREAN SOC AUTOMOTIVE ENGINEERS-KSAE
Keywords
Tire rolling noise; Periodically exciting contact force; Stationary tire; Tire body vibration; Normal velocity extraction; Acoustic analysis; Sound pressure and power
Citation
INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY, v.18, no.5, pp.823 - 832
Journal Title
INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY
Volume
18
Number
5
Start Page
823
End Page
832
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/5235
DOI
10.1007/s12239-017-0081-x
ISSN
1229-9138
Abstract
For the numerical simulation of tire rolling noise, an important subject is the extraction of normal velocity data of the tire surface that are essential for the acoustic analysis. In the current study, a concept of periodically exciting contact force is introduced to effectively extract the tire normal velocity data. The ground contact pressure within contact patch that is obtained by the static tire contact analysis is periodically applied to the whole tread surface of stationary tire. The periodically exciting contact forces are sequentially applied with a time delay corresponding to the tire rolling speed. The tire vibration is analyzed by the mode superposition in the frequency domain, and the acoustic analysis is performed by commercial BEM code. The proposed method is illustrated through the numerical experiment of 3-D smooth tire model and verified from the comparison with experiment, and furthermore the acoustical responses are investigated to the tire rolling speed.
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